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*[[Alpha ROCKWELL Hardness]] | *[[Alpha ROCKWELL Hardness]] | ||
*[[Altstädt, Volker]] | *[[Altstädt, Volker]] | ||
*[[Angle Specimen|Angle specimen]] | |||
*Anisotropic Deformation (see [[Deformation]]) | *Anisotropic Deformation (see [[Deformation]]) | ||
*[[Anisotropy]] | *[[Anisotropy]] | ||
| Line 45: | Line 46: | ||
*[[Ball Indentation Hardness]] | *[[Ball Indentation Hardness]] | ||
*Ball Indentation Hardness IRHD (see [[IRHD Hardness]]) | *Ball Indentation Hardness IRHD (see [[IRHD Hardness]]) | ||
*[[Ball or Pin | *[[Ball or Pin Impression Method]] | ||
*BARENBLATT Crack Model (see [[Crack Model according to BARENBLATT]]) | *BARENBLATT Crack Model (see [[Crack Model according to BARENBLATT]]) | ||
*[[Barcol Hardness]] | |||
*[[Barrier Plastics]] | *[[Barrier Plastics]] | ||
*BCS Crack Model (see [[Crack Models]]) | *BCS Crack Model (see [[Crack Models]]) | ||
*[[BEGLEY and LANDES – J-Integral Estimation Method]] | *[[BEGLEY and LANDES – J-Integral Estimation Method]] | ||
| Line 86: | Line 87: | ||
*[[Campus®]] | *[[Campus®]] | ||
*[[Capillary Rheometer]] | *[[Capillary Rheometer]] | ||
*[[Ceramography]] | |||
*Characteristic Values (see [[Material Value]]) | *Characteristic Values (see [[Material Value]]) | ||
*[[Charpy, Georges]] | |||
*Charpy Impact Test (see [[Impact Test]]) | *Charpy Impact Test (see [[Impact Test]]) | ||
*[[Charpy Testing]] | *[[Charpy Testing]] | ||
| Line 93: | Line 96: | ||
*[[CLS-Specimen]] | *[[CLS-Specimen]] | ||
*Cohesive Strength (see [[Fracture]]) | *Cohesive Strength (see [[Fracture]]) | ||
*[[Cohesive Zone Models]] | |||
*Cold Stretching (see [[Tensile Test]]) | *Cold Stretching (see [[Tensile Test]]) | ||
*[[Colour]] | *[[Colour]] | ||
*[[Colour Difference]] | |||
*[[Colour Penetration Test]] | *[[Colour Penetration Test]] | ||
*[[Compact Tension Specimen]] | *[[Compact Tension Specimen]] | ||
| Line 108: | Line 113: | ||
*[[Compression After Impact Test]] | *[[Compression After Impact Test]] | ||
*[[Compression Hardness]] | *[[Compression Hardness]] | ||
*[[ | *[[Compressive Strength]] | ||
*[[Compression Test]] | *[[Compression Test]] | ||
*[[Compression Test Arrangement]] | *[[Compression Test Arrangement]] | ||
*[[Compression Test Compliance]] | *[[Compression Test Compliance]] | ||
*Compressive and Buckling Stiffness (see [[Stiffness]]) | *Compressive and Buckling Stiffness (see [[Stiffness]]) | ||
*Constraint Factor (see [[J-Integral Concept]] and [[Toughness Temperature Dependence]]) | *Constraint Factor (see [[J-Integral Concept]] and [[Toughness Temperature Dependence]]) | ||
| Line 121: | Line 126: | ||
*[[Correspondence Principle]] | *[[Correspondence Principle]] | ||
*[[Crack]] | *[[Crack]] | ||
*[[ | *Crack Formation (see [[Fracture Formation]]) | ||
*Crack Growth (see [[Crack Propagation]]) | *Crack Growth (see [[Crack Propagation]]) | ||
*[[Crack Initiation]] | *[[Crack Initiation]] | ||
| Line 129: | Line 134: | ||
*[[Crack Model according to GRIFFITH]] | *[[Crack Model according to GRIFFITH]] | ||
*[[Crack Model according to IRWIN and Mc CLINTOCK]] | *[[Crack Model according to IRWIN and Mc CLINTOCK]] | ||
*[[Crack Opening]] | *[[Crack Opening]] | ||
*[[Crack Opening Modes]] | *[[Crack Opening Modes]] | ||
*[[Crack Propagation]] | *[[Crack Propagation]] | ||
*[[Crack Propagation Energy]] | *[[Crack Propagation Energy]] | ||
*[[Crack Propagation Stress Corrosion Cracking]] | |||
*[[Crack Resistance (R) Curve]] | *[[Crack Resistance (R) Curve]] | ||
*[[Crack Resistance Curve – Examples]] | *[[Crack Resistance Curve – Examples]] | ||
*[[Crack Resistance Curve – Experimental Methods]] | *[[Crack Resistance Curve – Experimental Methods]] | ||
*[[Crack Resistance Curve – Elastomers Quasistatic]] | *[[Crack Resistance Curve – Elastomers Quasistatic]] | ||
*[[Crack Tip Opening Displacement Concept (CTOD)]] | *[[Crack Tip Opening Displacement Concept (CTOD)]] | ||
*[[Crack Toughness]] | *[[Crack Toughness]] | ||
*[[Craze-Types]] | *[[Craze-Types]] | ||
*Craze (see [[Micromechanics & Nanomechanics]]) | *Craze (see [[Micromechanics & Nanomechanics]]) | ||
*[[Crazing]] | *[[Crazing]] | ||
| Line 146: | Line 152: | ||
*[[Creep Behaviour – Determination]] | *[[Creep Behaviour – Determination]] | ||
*[[Creep Behaviour – Flexural Creep Test]] | *[[Creep Behaviour – Flexural Creep Test]] | ||
*[[Creep Behaviour – Creep Internal Compression Test]] | |||
*[[Creep Behaviour – Creep Compression Test]] | |||
*[[Creep Behaviour – Recovery Test]] | *[[Creep Behaviour – Recovery Test]] | ||
*[[Creep Behaviour – Tensile Creep Test]] | *[[Creep Behaviour – Tensile Creep Test]] | ||
*[[Creep Compression Test]] | *[[Creep Compression Test]] | ||
*[[Creep Current Resistance]] | *[[Creep Current Resistance]] | ||
*Creep | *Creep Modulus (see [[Creep Behaviour – Determination]]) | ||
*Creep Path Formation (see [[Tracking]]) | *Creep Path Formation (see [[Tracking]]) | ||
*[[Creep Plastics]] | *[[Creep Plastics]] | ||
| Line 156: | Line 164: | ||
*[[Crosshead Speed]] | *[[Crosshead Speed]] | ||
*[[Crystallinity]] | *[[Crystallinity]] | ||
*[[Cross-linking Elastomers]] | *[[Cross-linking Elastomers]] | ||
*[[C-shaped Test Specimen]] | *[[C-shaped Test Specimen]] | ||
*[[C-Scan Technique]] | *[[C-Scan Technique]] | ||
| Line 172: | Line 180: | ||
*Defect Density (see [[Tensile Test Event-related Interpretation]]) | *Defect Density (see [[Tensile Test Event-related Interpretation]]) | ||
*[[Deformation]] | *[[Deformation]] | ||
*[[Deformation Mechanisms]] | *[[Deformation Behaviour of Human Cartilage]] | ||
*[[Deformation Mechanisms]] | |||
*[[Deformation Rate]] | *[[Deformation Rate]] | ||
*[[Deformation Velocity]] | *[[Deformation Velocity]] | ||
*[[Degree of Cross-Linking Elastomers]] | *[[Degree of Cross-Linking Elastomers]] | ||
*[[Density]] | *[[Density]] | ||
*[[DENT-Specimen]] (Double Edge-Notched Tension Specimen) | |||
*[[Depth of Field Microscope]] | *[[Depth of Field Microscope]] | ||
*[[Dielectric Loss Factor]] | *[[Dielectric Loss Factor]] | ||
*[[Dielectric Properties]] | *[[Dielectric Properties]] | ||
*[[Differential Scanning Calorimetry (DSC)]] | *[[Differential Scanning Calorimetry (DSC)]] | ||
| Line 190: | Line 200: | ||
*[[Dynamic-mechanical Analysis (DMA) – Bend Loading]] | *[[Dynamic-mechanical Analysis (DMA) – Bend Loading]] | ||
*[[Dynamic-mechanical Analysis (DMA) – Tensile Stress]] | *[[Dynamic-mechanical Analysis (DMA) – Tensile Stress]] | ||
*[[Dynamic-mechanical Analysis (DMA) – Torsional Stress]] | *[[Dynamic-mechanical Analysis (DMA) – Torsional Stress]] | ||
*Dynstat Impact Test (see [[Impact Test]]) | *Dynstat Impact Test (see [[Impact Test]]) | ||
| Line 199: | Line 208: | ||
*[[Effective Crack Length]] | *[[Effective Crack Length]] | ||
*[[Ehrenstein, Gottfried W.]] | *[[Ehrenstein, Gottfried W.]] | ||
*[[Elasticity]] | *[[Elasticity]] | ||
*[[Elastic Modulus]] | *[[Elastic Modulus]] | ||
*[[Elastic Modulus – Examples and Material Values]] | *[[Elastic Modulus – Examples and Material Values]] | ||
| Line 211: | Line 220: | ||
*[[Electronic Instrumentation]] | *[[Electronic Instrumentation]] | ||
*[[Electronic Speckle Pattern Interferometry (ESPI)]] | *[[Electronic Speckle Pattern Interferometry (ESPI)]] | ||
*Electrostatic Discharge (ESD) (see [[Electrical Conductivity]]) | |||
*Elongation at Break (see [[Tensile Strength]]) | *Elongation at Break (see [[Tensile Strength]]) | ||
*[[Elongational Viscosity]] | |||
*[[ELS-Specimen]] | |||
*Emission (see [[Acoustic Emission]]) | *Emission (see [[Acoustic Emission]]) | ||
*[[ENF-Specimen]] (End-Notched Flexure) | *[[ENF-Specimen]] (End-Notched Flexure) | ||
*[[4 End-Notched Flexure Specimen]] | |||
*[[Energy Balance ICIT]] | |||
*[[Energy Dispersive X-Ray Spectroscopy (EDX)]] | *[[Energy Dispersive X-Ray Spectroscopy (EDX)]] | ||
*[[Energy Elasticity]] | *[[Energy Elasticity]] | ||
*Energy Fracture Criterion (see [[Energy Release Rate]]) | |||
*[[Energy Release Rate]] | *[[Energy Release Rate]] | ||
*Entanglements (see [[Polymers & Structure]], [[Entropy Elasticity]] and [[Degree of Cross-Linking Elastomers]]) | *Entanglements (see [[Polymers & Structure]], [[Entropy Elasticity]] and [[Degree of Cross-Linking Elastomers]]) | ||
| Line 226: | Line 241: | ||
*[[Errors]] | *[[Errors]] | ||
*[[Error Limit]] | *[[Error Limit]] | ||
*[[Essential Work of Fracture (EWF)-Concept]] | |||
*EULER's Buckling (see [[Stiffness]]) | *EULER's Buckling (see [[Stiffness]]) | ||
*Exfoliation (see [[Laser Silicate-reinforced Polymers]]) | *Exfoliation (see [[Laser Silicate-reinforced Polymers]]) | ||
| Line 239: | Line 255: | ||
*[[Fatigue Strength]] | *[[Fatigue Strength]] | ||
*[[Fatigue Crack Propagation Elastomers]] | *[[Fatigue Crack Propagation Elastomers]] | ||
*Fibre Formation (see [[Fracture Types]], [[Craze Types]] and [[Fracture Parables]]) | *[[Fibre Agglomeration]] | ||
*Fibre Formation (see [[Fracture Types]], [[Craze-Types]] and [[Fracture Parables]]) | |||
*[[Fibre–Matrix Adhesion]] | *[[Fibre–Matrix Adhesion]] | ||
*[[Fibre-reinforced Plastics]] | *[[Fibre-reinforced Plastics]] | ||
| Line 246: | Line 263: | ||
*Fibre Content (see [[Ashing Method]]) | *Fibre Content (see [[Ashing Method]]) | ||
*Fibrillation (see [[Crazing]], [[Craze-Types]] and [[Multiple Crazing]]) | *Fibrillation (see [[Crazing]], [[Craze-Types]] and [[Multiple Crazing]]) | ||
*Filler (see [[Particle-filled Thermoplastics]]) | *Filler (see [[Particle-filled Thermoplastics]]) | ||
*[[Film Testing]] | *[[Film Testing]] | ||
*[[Fixed-arm Peel Test]] | |||
*[[Flammability]] | |||
*[[Flexural Creep Test]] | *[[Flexural Creep Test]] | ||
*[[Flexural Modulus]] | *[[Flexural Modulus]] | ||
| Line 255: | Line 273: | ||
*FLORY-HUGGINS Interaction Parameter (see [[Degree of Cross-Linking Elastomers]]) | *FLORY-HUGGINS Interaction Parameter (see [[Degree of Cross-Linking Elastomers]]) | ||
*FLORY-REHNER Theory (see [[Degree of Cross-Linking Elastomers]]) | *FLORY-REHNER Theory (see [[Degree of Cross-Linking Elastomers]]) | ||
*Four End-Notched Flexure (4ENF)Specimen (see [[4 ENF-Specimen]]) | |||
*Four Point Bend Test (see [[Bend Test]] and [[Bend Test – Influences]]) | *Four Point Bend Test (see [[Bend Test]] and [[Bend Test – Influences]]) | ||
*[[Fractography]] | |||
*[[Fracture]] | *[[Fracture]] | ||
*[[Fracture Behaviour]] | *[[Fracture Behaviour]] | ||
*[[Fracture Behaviour of Plastics Components]] | *[[Fracture Behaviour of Plastics Components]] | ||
*Fracture Criterion (see [[Energy Release Rate]]) | |||
*Fracture Energy (see [[Fracture Formation]] and [[Fracture]]) | *Fracture Energy (see [[Fracture Formation]] and [[Fracture]]) | ||
*[[Fracture Formation]] | *[[Fracture Formation]] | ||
| Line 271: | Line 291: | ||
*[[Fracture Safety Criterion]] | *[[Fracture Safety Criterion]] | ||
*[[Fracture Surface]] | *[[Fracture Surface]] | ||
*Fracture Time (see [[ICIT – Experimental Conditions]], [[Frequency Responcse Control]] and [[Plastic Hinge Model]]) | |||
*Fracture Toughness (see [[Fracture Mechanics]]) | *Fracture Toughness (see [[Fracture Mechanics]]) | ||
*[[Fracture Types]] | *[[Fracture Types]] | ||
*Free Energy (see [[Surface Energy]] and [[Rubber Elasticity]]) | |||
*[[Free Falling Dart Method]] | *[[Free Falling Dart Method]] | ||
*[[Freezing | *[[Freezing Time]] | ||
*[[Frequency Analysis]] | *[[Frequency Analysis]] | ||
*[[Frequency Response Control]] | *[[Frequency Response Control]] | ||
| Line 288: | Line 310: | ||
*[[Gas Bubbles]] | *[[Gas Bubbles]] | ||
*[[Geometry Criterion]] | *[[Geometry Criterion]] | ||
*[[Geometry Function]] | *[[Geometry Function]] | ||
*Glass Fibre Content (see [[Ashing Method]]) | *Glass Fibre Content (see [[Ashing Method]]) | ||
*[[Glass Fibre Length Distribution – Matrix Resolution]] | |||
*[[Glass Fibre Orientation]] | *[[Glass Fibre Orientation]] | ||
*[[Glass Transition Temperature]] | *[[Glass Transition Temperature]] | ||
| Line 318: | Line 341: | ||
*[[High-speed Tensile Test]] | *[[High-speed Tensile Test]] | ||
*[[HOOKE's Law]] | *[[HOOKE's Law]] | ||
*[[Hole Formation Films]] | *[[Hole Formation Films]] | ||
*[[Hole Formation Plastics]] | *[[Hole Formation Plastics]] | ||
*HRR Crack Model (see [[Crack Models]]) | *HRR Crack Model (see [[Crack Models]]) | ||
| Line 343: | Line 366: | ||
*[[Imaging Ultrasonic Testing]] | *[[Imaging Ultrasonic Testing]] | ||
*[[Impact Loading Free-falling Dart Test]] | *[[Impact Loading Free-falling Dart Test]] | ||
*[[Impact Loading High-Speed Testing]] | *[[Impact Loading High-Speed Testing]] | ||
*[[Impact Loading Pendulum Impact Tester]] | *[[Impact Loading Pendulum Impact Tester]] | ||
*[[Impact Loading Plastics]] | *[[Impact Loading Plastics]] | ||
*[[Impact Test]] | *[[Impact Test]] | ||
*[[Implant Testing]] | |||
*In-situ Peel Test (see [[Peeling Process]]) | *In-situ Peel Test (see [[Peeling Process]]) | ||
*[[In-situ Tensile Test in ESEM with AE]] | *[[In-situ Tensile Test in ESEM with AE]] | ||
*[[In-situ Tensile Test in NMR]] | *[[In-situ Tensile Test in NMR]] | ||
*[[In-situ Ultramicrotomy]] | *[[In-situ Ultramicrotomy]] | ||
*[[Indentation Fracture Mechanics]] | *[[Indentation Fracture Mechanics]] | ||
*[[Indentation Modulus]] | *[[Indentation Modulus]] | ||
*[[Indenter]] | *[[Indenter]] | ||
*Index of Refraction (see [[Refraction Index]]) | *Index of Refraction (see [[Refraction Index]]) | ||
| Line 363: | Line 387: | ||
*[[Instrumented Hardness Measurement – Creep]] | *[[Instrumented Hardness Measurement – Creep]] | ||
*[[Instrumented Hardness Measurement – Indentation Depth Measurement with Modified Contact Foot]] | *[[Instrumented Hardness Measurement – Indentation Depth Measurement with Modified Contact Foot]] | ||
*[[Instrumented Hardness Measurement – Relaxation]] | *[[Instrumented Hardness Measurement – Relaxation]] | ||
*[[Instrumented Hardness Measurement with Tempering]] | *[[Instrumented Hardness Measurement with Tempering]] | ||
*[[Instrumented Hardness Testing – Method & Material Parameters]] | *[[Instrumented Hardness Testing – Method & Material Parameters]] | ||
*[[Instrumented Puncture Impact Test]] | *[[Instrumented Puncture Impact Test]] | ||
*[[Instrumented Scratch Testing]] | *[[Instrumented Scratch Testing]] | ||
*[[Instrumented Tensile Impact Test (ITIT)]] | *[[Instrumented Tensile Impact Test (ITIT)]] | ||
*[[Instrumented Tensile Impact Test (ITIT), Examples]] | *[[Instrumented Tensile Impact Test (ITIT), Examples]] | ||
*[[Insulation Resistance]] | *[[Insulation Resistance]] | ||
*Intercalated Structure (see [[Layer Silicate-reinforced Polymers]]) | *Intercalated Structure (see [[Layer Silicate-reinforced Polymers]]) | ||
*Interface (see [[Phase Boundary Surface]]) | *Interface (see [[Phase Boundary Surface]]) | ||
| Line 384: | Line 408: | ||
{{Mehrspaltige Liste |breite=30em |liste= | {{Mehrspaltige Liste |breite=30em |liste= | ||
*[[J-Compliance Method]] | *[[J-Compliance Method]] | ||
*[[J-Integral Concept]] | *[[J-Integral Concept]] | ||
*[[J-Integral Evaluation Methods (Overview)]] | *[[J-Integral Evaluation Methods (Overview)]] | ||
*J- | *J-Integral Estimation Methods of | ||
::- BEGLEY and LANDES (see [[BEGLEY and LANDES – J-Integral Estimation Method]] (BL)) | ::- BEGLEY and LANDES (see [[BEGLEY and LANDES – J-Integral Estimation Method]] (BL)) | ||
::- RICE, PARIS and MERKLE (see [[RICE, PARIS and MERKLE – J-Integral Estimation Method]] (RPM)) | ::- RICE, PARIS and MERKLE (see [[RICE, PARIS and MERKLE – J-Integral Estimation Method]] (RPM)) | ||
| Line 392: | Line 416: | ||
::- MERKLE and CORTEN (see [[MERKLE and CORTEN – J-Integral Estimation Method]] (MC)) | ::- MERKLE and CORTEN (see [[MERKLE and CORTEN – J-Integral Estimation Method]] (MC)) | ||
::- KANAZAWA (see [[KANAZAWA – J-Integral Estimation Method]] (K)) | ::- KANAZAWA (see [[KANAZAWA – J-Integral Estimation Method]] (K)) | ||
*[[JTJ-Concept]] | *[[JTJ-Concept]] | ||
}} | }} | ||
== K == | == K == | ||
{{Mehrspaltige Liste |breite=30em |liste= | {{Mehrspaltige Liste |breite=30em |liste= | ||
*[[Kausch, Hans-Henning]] | *[[Kausch, Hans-Henning]] | ||
*KIRCHHOFF's Law of Radiation (see [[Thermography]]) | *KIRCHHOFF's Law of Radiation (see [[Thermography]]) | ||
*[[KNOOP Hardness]] | *[[KNOOP Hardness]] | ||
| Line 405: | Line 429: | ||
== L == | == L == | ||
{{Mehrspaltige Liste |breite=30em |liste= | {{Mehrspaltige Liste |breite=30em |liste= | ||
*LAMBERT-BEER's Law (see [[Light Absorption]]) | |||
*Lamb Waves (see [[Ultrasonic Plate Waves Sensors]]) | *Lamb Waves (see [[Ultrasonic Plate Waves Sensors]]) | ||
*[[Laser Angle-Scanner]] | *[[Laser Angle-Scanner]] | ||
*[[Laser Cross-Unit]] | *[[Laser Cross-Unit]] | ||
*[[Laser Doppler-Scanner]] | *[[Laser Doppler-Scanner]] | ||
*[[Laser Double-Scanner]] | *[[Laser Double-Scanner]] | ||
*[[Laser Extensometry]] | *[[Laser Extensometry]] | ||
*[[Laser Extensometry – Local Strain Control]] | *[[Laser Extensometry – Local Strain Control]] | ||
*[[Laser Heterogeneity of Strain Distribution]] | *[[Laser Heterogeneity of Strain Distribution]] | ||
| Line 421: | Line 445: | ||
*[[Laser TMA-Scanner]] | *[[Laser TMA-Scanner]] | ||
*[[Levels of Knowledge in Fracture Mechanics]] | *[[Levels of Knowledge in Fracture Mechanics]] | ||
*[[Lid-opening Test]] | |||
*[[Light Absorption]] | *[[Light Absorption]] | ||
*[[Light | *Light Remission (see [[Remission Light]]) | ||
*[[Light | *Light Transmission (see [[Transmission Light]]) | ||
*Linear-elastic Fracture Mechanics (LEFM) (see [[Fracture Mechanics]]) | *Linear-elastic Fracture Mechanics (LEFM) (see [[Fracture Mechanics]]) | ||
*[[Linear-viscoelastic Behaviour]] | *[[Linear-viscoelastic Behaviour]] | ||
| Line 439: | Line 464: | ||
*[[Manufacturer of Material Testing Machines]] | *[[Manufacturer of Material Testing Machines]] | ||
*[[Martens, Adolf]] | *[[Martens, Adolf]] | ||
*[[Material Parameter]] | |||
*[[Materialography]] | |||
*[[Material Science & Plastics]] | *[[Material Science & Plastics]] | ||
*[[Materials Science]] | *[[Materials Science]] | ||
*[[Materials Technology & Materials Science]] | *[[Materials Technology & Materials Science]] | ||
*[[Material Testing Machine]] | *[[Material Testing Machine]] | ||
| Line 449: | Line 475: | ||
*[[MAXWELL Model]] | *[[MAXWELL Model]] | ||
*[[Measure]] | *[[Measure]] | ||
*[[Measure Deviation]] | |||
*[[Measured Value]] | *[[Measured Value]] | ||
*[[Measured Value Accuracy]] | *[[Measured Value Accuracy]] | ||
*[[Measured Variable]] | *[[Measured Variable]] | ||
*[[Measuring Accuracy]] | *[[Measuring Accuracy]] | ||
*[[Measuring Device Monitoring]] | *[[Measuring Device Monitoring]] | ||
| Line 462: | Line 488: | ||
*[[Menges, Georg]] | *[[Menges, Georg]] | ||
*[[MERKLE and CORTEN – J-Integral Estimation Method]] | *[[MERKLE and CORTEN – J-Integral Estimation Method]] | ||
*[[Metallography]] | |||
*MFR (see [[Melt Mass-Flow Rate]]) | *MFR (see [[Melt Mass-Flow Rate]]) | ||
*[[Michler, Goerg Hannes]] | *[[Michler, Goerg Hannes]] | ||
| Line 472: | Line 499: | ||
*[[Micropores]] | *[[Micropores]] | ||
*[[Microscopic Structure]] | *[[Microscopic Structure]] | ||
*[[Micro-Tensile Tests]] | |||
*[[Microtomy]] | *[[Microtomy]] | ||
*[[Mixed-Mode Crack Propagation]] | *[[Mixed-Mode Crack Propagation]] | ||
*[[MMB-Specimen]] | *[[MMB-Specimen]] | ||
*[[Mobile Hardness Measurement]] | *[[Mobile Hardness Measurement]] | ||
*Modulus of Compressibility (see [[Energy Elasticity]]) | |||
* Modulus of Elasticity (see [[Elastic Modulus]]) | |||
*[[Mohs, Carl Friedrich Christian]] | |||
*Morphology (see [[Microscopic Structure]]) | *Morphology (see [[Microscopic Structure]]) | ||
*Moulded Part (see [[Moulding Compound]]) | *Moulded Part (see [[Moulding Compound]]) | ||
*[[Moulding Compound]] | *[[Moulding Compound]] | ||
*[[Moulding Compound Test]] | *[[Moulding Compound Test]] | ||
*[[MPK-Procedure MPK-ICIT]] | *[[MPK-Procedure MPK-ICIT]] | ||
| Line 495: | Line 523: | ||
{{Mehrspaltige Liste |breite=30em |liste= | {{Mehrspaltige Liste |breite=30em |liste= | ||
*Nanocomposite (see [[Layer Silicate-reinforced Thermoplastics]]) | *Nanocomposite (see [[Layer Silicate-reinforced Thermoplastics]]) | ||
*[[Nanoindentation Testing]] | |||
*[[Nase, Michael]] | |||
*Necking Elongation (see [[Tensile Test Uniform Elongation]]) | *Necking Elongation (see [[Tensile Test Uniform Elongation]]) | ||
*[[Non-destructive Polymer Testing]] | *[[Non-destructive Polymer Testing]] | ||
| Line 515: | Line 545: | ||
*Orientation (see [[Tensile Test Residual Stresses Orientations]]) | *Orientation (see [[Tensile Test Residual Stresses Orientations]]) | ||
*Overview about J-Integral Evaluation Methods (see [[J-Integral Evaluation Methods (Overview)]]) | *Overview about J-Integral Evaluation Methods (see [[J-Integral Evaluation Methods (Overview)]]) | ||
*[[ODCB or MC-DCB-Specimen]] | |||
}} | }} | ||
| Line 536: | Line 567: | ||
*[[Pennsylvania Edge Notch Tensile (PENT) Test]] | *[[Pennsylvania Edge Notch Tensile (PENT) Test]] | ||
*[[Peripheral Fibre Strain]] | *[[Peripheral Fibre Strain]] | ||
*[[Permeation]] | |||
*[[Phase Boundary Surface]] | *[[Phase Boundary Surface]] | ||
*[[Piezoelectric Ceramic]] | *[[Piezoelectric Ceramic]] | ||
| Line 544: | Line 576: | ||
*[[Plane Stress and Strain State]] | *[[Plane Stress and Strain State]] | ||
*[[Plastic Component]] | *[[Plastic Component]] | ||
*[[Plastic Films & Varnishes – Surface Technology]] | |||
*Plastic Deformation (see [[Deformation]]) | *Plastic Deformation (see [[Deformation]]) | ||
*[[Plastic | *[[Plastic Hinge Model]] | ||
*[[Plastics]] | *[[Plastics]] | ||
*[[Plastics – Symbols and Abbreviated Terms]] | *[[Plastics – Symbols and Abbreviated Terms]] | ||
| Line 558: | Line 591: | ||
*[[Polymers & Structure]] | *[[Polymers & Structure]] | ||
*[[Polymer Testing]] | *[[Polymer Testing]] | ||
*[[Pourability]] | |||
*[[Processing Shrinkage]] | *[[Processing Shrinkage]] | ||
* | *Producer Material Testing Machines (see [[Manufacturer Material Testing Machines]]) | ||
*Proof Tracking Index (CTI) (see [[Creep Current Resistance]]) | *Proof Tracking Index (CTI) (see [[Creep Current Resistance]]) | ||
*[[Prosthesis Pull-through Test]] | |||
*[[Pulse-Echo Ultrasonic Technique]] | *[[Pulse-Echo Ultrasonic Technique]] | ||
*[[Puncture Impact Test]] | *[[Puncture Impact Test]] | ||
*[[Pure Shear-Specimen]] | *[[Pure Shear-Specimen]] | ||
*[[Push-Out Test]] | |||
}} | }} | ||
| Line 575: | Line 611: | ||
{{Mehrspaltige Liste |breite=30em |liste= | {{Mehrspaltige Liste |breite=30em |liste= | ||
*[[Radusch, Hans-Joachim]] | *[[Radusch, Hans-Joachim]] | ||
*[[Raster Reflection Method]] | *[[Raster Reflection Method]] | ||
*R-Curve Concept (see [[Crack Resistance (R) Curve]]) | *R-Curve Concept (see [[Crack Resistance (R) Curve]]) | ||
*[[Ramps, Bars and Steps]] | |||
*[[Rebound Resilience Elastomers]] | *[[Rebound Resilience Elastomers]] | ||
*[[Reflection Light]] | *[[Reflection Light]] | ||
| Line 587: | Line 623: | ||
*Refractive Index (see [[Refraction Index]]) | *Refractive Index (see [[Refraction Index]]) | ||
*[[Reincke, Katrin]] | *[[Reincke, Katrin]] | ||
*Relation Factor (see [[Plastic Hinge Model]]) | |||
*[[Relaxation Behaviour Determination]] | *[[Relaxation Behaviour Determination]] | ||
*[[Relaxation Plastics]] | *[[Relaxation Plastics]] | ||
*[[Remission Light]] | |||
*[[Repose Angle]] | |||
*Residual Compressive Strength (see [[Compression After Impact Test]]) | *Residual Compressive Strength (see [[Compression After Impact Test]]) | ||
*Residual Stress ( see [[Tensile Test Residual Stresses Orientations]]) | *Residual Stress ( see [[Tensile Test Residual Stresses Orientations]]) | ||
| Line 597: | Line 636: | ||
*[[RICE, PARIS and MERKLE – J-Integral Estimation Method]] | *[[RICE, PARIS and MERKLE – J-Integral Estimation Method]] | ||
*Rise Time Electronic Measuring Chain (see [[ICIT – Experimental Conditions]]) | *Rise Time Electronic Measuring Chain (see [[ICIT – Experimental Conditions]]) | ||
*[[Rheometry]] | |||
*[[ROCKWELL Hardness]] | *[[ROCKWELL Hardness]] | ||
*[[Roll Ring Test]] | *[[Roll Ring Test]] | ||
*[[Rotational Rheometer]] | |||
*[[Round Specimen]] | *[[Round Specimen]] | ||
*[[Round Robin Test]] | *[[Round Robin Test]] | ||
*[[Rubber Elasticity]] | |||
}} | }} | ||
| Line 607: | Line 649: | ||
*[[Scanning Acoustic Microscopy (SAM)]] | *[[Scanning Acoustic Microscopy (SAM)]] | ||
*[[Scanning Electron Microscopy]] (SEM) | *[[Scanning Electron Microscopy]] (SEM) | ||
*[[SCB | *[[SCB-Specimen]] | ||
*[[Scratch Hardness]] | *[[Scratch Hardness]] | ||
*[[Scratch Resistance]] | *[[Scratch Resistance]] | ||
*[[Sealed | *[[Scratch Test]] | ||
*[[Sealed Seam]] | |||
*Secant Modulus (see [[Flexural Modulus]], [[Elastic Modulus]] and [[Compression Test]]) | *Secant Modulus (see [[Flexural Modulus]], [[Elastic Modulus]] and [[Compression Test]]) | ||
*[[Seidler, Sabine]] | *[[Seidler, Sabine]] | ||
| Line 626: | Line 669: | ||
*Short-beam Bend Test (see [[Interlaminar Shear Strength]]) | *Short-beam Bend Test (see [[Interlaminar Shear Strength]]) | ||
*[[Short-fibre Reinforced Plastics]] | *[[Short-fibre Reinforced Plastics]] | ||
*Shunt Lid Pull-trough Test (see [[Prosthesis Pull-trough Test]]) | |||
*[[Shrink Voids]] | *[[Shrink Voids]] | ||
* | *[[Shrinkage]] | ||
*[[Shrinkage Test]] | *[[Shrinkage Test]] | ||
*Simple Beam Theory (SBT) (see [[Adhesive Joints – Determination of Characteristic Values]]) | *Simple Beam Theory (SBT) (see [[Adhesive Joints – Determination of Characteristic Values]]) | ||
| Line 651: | Line 695: | ||
*[[Specimen for Fracture Mechanics Tests]] | *[[Specimen for Fracture Mechanics Tests]] | ||
*[[Specimen for Laser Sintering]] | *[[Specimen for Laser Sintering]] | ||
*Specimen Shapes | *Specimen Shapes for Fatigue Tests (see [[Test Specimen for Fatigue Tests]]) | ||
*Speed (see [[Velocity]]) | *Speed (see [[Velocity]]) | ||
*[[Spherulitic Structure]] | *[[Spherulitic Structure]] | ||
| Line 679: | Line 723: | ||
*[[Surface Energy]] | *[[Surface Energy]] | ||
*[[Surface Resistance]] | *[[Surface Resistance]] | ||
*[[Surface Technology]] | |||
*[[Surface Tension and Interfacial Tension]] | *[[Surface Tension and Interfacial Tension]] | ||
*[[Surface Testing Technology]] | *[[Surface Testing Technology]] | ||
| Line 689: | Line 734: | ||
*Tangent Modulus (see [[Elastic Modulus]] and [[Shear Modulus]]) | *Tangent Modulus (see [[Elastic Modulus]] and [[Shear Modulus]]) | ||
*[[T-Peel Test]] | *[[T-Peel Test]] | ||
*[[TDCB-Specimen]] (Tapered-Double-Cantilever Beam-specimen) | |||
*[[Tear Test]] | *[[Tear Test]] | ||
*Tearing Energy (see [[Trouser Specimen]]) | *Tearing Energy (see [[Trouser Specimen]]) | ||
*[[Tearing Modulus]] | |||
*[[Temperature Conductivity]] | *[[Temperature Conductivity]] | ||
*[[Temperature-modulated Differential Scanning Calorimetry (TMDSC)]] | *[[Temperature-modulated Differential Scanning Calorimetry (TMDSC)]] | ||
| Line 718: | Line 765: | ||
*[[Test Specimen for Fatigue Tests]] | *[[Test Specimen for Fatigue Tests]] | ||
*[[Test Speed]] | *[[Test Speed]] | ||
*[[Thermal Conductivity]] | *[[Thermal Conductivity]] | ||
*Thermal Diffusivity (see [[Temperature Conductivity]]) | *Thermal Diffusivity (see [[Temperature Conductivity]]) | ||
| Line 727: | Line 773: | ||
*[[Thermography]] | *[[Thermography]] | ||
*[[Thermogravimetric Analysis (TGA)]] | *[[Thermogravimetric Analysis (TGA)]] | ||
*[[Thermomechanical Analysis (TMA) | *[[Thermomechanical Analysis]] (TMA) | ||
*[[Thermoplastic Material]] | *[[Thermoplastic Material]] | ||
*[[Thermosets]] | *[[Thermosets]] | ||
| Line 752: | Line 798: | ||
==U== | ==U== | ||
{{Mehrspaltige Liste |breite=30em |liste= | {{Mehrspaltige Liste |breite=30em |liste= | ||
*UD Tape (see [[Composite Materials Testing]] and [[Multiple Fracture UD Tapes]]) | |||
*[[Ultramicrotomy]] | |||
*[[Ultrasonic Angle Beam Sensors]] | *[[Ultrasonic Angle Beam Sensors]] | ||
*[[Ultrasonic Birefringence]] | *[[Ultrasonic Birefringence]] | ||
*[[Ultrasonic | *[[Ultrasonic Contact Impedance (UCI) Hardness]] | ||
*[[Ultrasonic Composite Sensors]] | *[[Ultrasonic Composite Sensors]] | ||
*[[Ultrasonic Direct Coupling]] | *[[Ultrasonic Direct Coupling]] | ||
| Line 764: | Line 812: | ||
*[[Ultrasonic Modulation]] | *[[Ultrasonic Modulation]] | ||
*[[Ultrasonic Phased Array Sensors]] | *[[Ultrasonic Phased Array Sensors]] | ||
*[[Ultrasonic Plate Waves Sensors]] | |||
*Ultrasonic Pulse-echo Technique (see [[Pulse-Echo Ultrasonic Technique]]) | *Ultrasonic Pulse-echo Technique (see [[Pulse-Echo Ultrasonic Technique]]) | ||
*[[Ultrasonic Runtime Measurement]] | *[[Ultrasonic Runtime Measurement]] | ||
| Line 772: | Line 821: | ||
*[[Ultrasonic Transmission Technique]] | *[[Ultrasonic Transmission Technique]] | ||
*[[Ultrasonic Transmitter(S)-Receiver(E) Sensors]] | *[[Ultrasonic Transmitter(S)-Receiver(E) Sensors]] | ||
*[[Ultrasonic Wall Thickness Measurement]] | *[[Ultrasonic Wall Thickness Measurement]] | ||
*[[Ultrasonic Waves Reflection]] | *[[Ultrasonic Waves Reflection]] | ||
*[[Ultrasonic Weld Inspection]] | *[[Ultrasonic Weld Inspection]] | ||
*[[Ultrasound – Elastic Parameters]] | *[[Ultrasound – Elastic Parameters]] | ||
*[[Ultrasound | *[[Ultrasound-guided Waves]] | ||
*[[Ultrasound Testing]] | *[[Ultrasound Testing]] | ||
*[[Uniaxial Stress State]] | *[[Uniaxial Stress State]] | ||
| Line 790: | Line 838: | ||
*Vacuoles (see [[Shrink Voids]]) | *Vacuoles (see [[Shrink Voids]]) | ||
*Value (see [[Material Value]]) | *Value (see [[Material Value]]) | ||
*Valve Control Test (see [[Lid-opening Test]]) | |||
*[[Valve Movement Test]] | *[[Valve Movement Test]] | ||
*[[Velocity]] | *[[Velocity]] | ||
| Line 804: | Line 853: | ||
*Viscous Deformation (see [[Deformation]]) | *Viscous Deformation (see [[Deformation]]) | ||
*[[Viscosity]] | *[[Viscosity]] | ||
*[[Visual Inspection]] | |||
*[[VOIGT-KELVIN Model]] | |||
*[[Volume Resistance]] | *[[Volume Resistance]] | ||
*[[Volume Swelling Elastomers]] | *[[Volume Swelling Elastomers]] | ||
| Line 813: | Line 864: | ||
{{Mehrspaltige Liste |breite=30em |liste= | {{Mehrspaltige Liste |breite=30em |liste= | ||
*[[Water Absorption]] | *[[Water Absorption]] | ||
*Wavelet Transform (see [[Frequency Analysis]]) | |||
*[[Waves and Arrest Lines]] | *[[Waves and Arrest Lines]] | ||
*Wear (see [[Abrasion Elastomers]]) | *Wear (see [[Abrasion Elastomers]]) | ||
*[[Williams, James Gordon]] | |||
*[[WinICIT-Software]] | *[[WinICIT-Software]] | ||
*[[Weld Line]] | *[[Weld Line]] | ||
* WU & FOWKES method (see [[Surface Tension and Interfacial Tension]]) | * WU & FOWKES method (see [[Surface Tension and Interfacial Tension]]) | ||
* WHEATSTONE's Bridge Circuit (see [[Strain Gauge]], [[Electro-mechanical Force Transducer]], and [[ICIT with AE]]) | |||
}} | }} | ||
Latest revision as of 14:03, 3 September 2026
Welcome to the PSM Wiki-lexicon "Polymer Testing & Diagnostics" from Polymer Service GmbH Merseburg (PSM)!
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| Polymer Service GmbH Merseburg |
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| PSM on Wikipedia: https://de.wikipedia.org/wiki/Polymer Service Merseburg |
A
- ABBE Refractometer
- Abbreviated Terms – Plastics (see Plastics – Symbols and Abbreviated Terms)
- Abrasion Elastomers
- Absorption Light (see Light Absorption)
- Absorption Sound Waves
- Accuracy Class
- Acoustic Emission
- Acoustic Microscopy (see Scanning Acoustic Microscopy (SAM))
- Acoustic Properties
- Acoustic Resonance Analysis (see Resonance Analysis (Acoustic)
- Accreditation and Certification
- ADAM-GIBBS-realition (see Crystallinity)
- Adhesive Energy Release Rate
- Adhesive Joints – Determination of Characteristic Values
- Adhesion Glass Fibre (see Fibre–Matrix Adhesion)
- Adjustment
- Ageing
- Ageing Elastomers
- Air-Ultrasound
- Air-Ultrasound – Device Technology
- Alpha ROCKWELL Hardness
- Altstädt, Volker
- Angle specimen
- Anisotropic Deformation (see Deformation)
- Anisotropy
- A-Scan Technique
- Arcan-Specimen
- Arc-shaped Specimen (see C-shaped Test Specimen)
- Arrest Lines (see Fracture Types, Fractography and Waves and Arrest Lines)
- Ashing Method
- Atomic Force Microscopy (AFM)
B
- Bakelite
- Ball Indentation Hardness
- Ball Indentation Hardness IRHD (see IRHD Hardness)
- Ball or Pin Impression Method
- BARENBLATT Crack Model (see Crack Model according to BARENBLATT)
- Barcol Hardness
- Barrier Plastics
- BCS Crack Model (see Crack Models)
- BEGLEY and LANDES – J-Integral Estimation Method
- Bending Stiffness (see Stiffness and Bend Test Compliance)
- Bend Loading
- Bend Test
- Bend Test and Light Microscopy
- Bend Test and Sound Emission Analysis
- Bend Test Compliance
- Bend Test – Influences
- Bend Test – Shear Stress
- Bend Test – Specimen Preparation
- Bend Test – Specimen Shapes
- Bend Test – Test Influences
- Bend Test – Yield Stress
- Bent Strip Method
- Bierögel, Christian
- Bio-Plastics
- Bio-Plastics – Impact-Modified
- Blowholes (see Shrink Voids)
- Blumenauer, Horst
- Blunting Crack Tip (see Stretch Zone, in-situ Tensile Test in ESEM with AE and Crack Opening)
- BOLTZMANN's Superposition Principle
- Boundary Surface (see Phase Boundary Surface)
- Brittle Fracture Promoting Factors
- Brittle-Tough Transition
- Brittle Fracture (see Fracture Types, Component Failure and Fractography)
- Brittle-Tough Transition Temperature
- B-Scan Technique
- BUCHHOLZ Hardness
- Bulk Density
C
- Calibration
- Campus®
- Capillary Rheometer
- Ceramography
- Characteristic Values (see Material Value)
- Charpy, Georges
- Charpy Impact Test (see Impact Test)
- Charpy Testing
- Clamping Jaws (see Specimen Clamping)
- Clip-on Strain Gauge (see Tensile Test, Path Measurement Technique)
- CLS-Specimen
- Cohesive Strength (see Fracture)
- Cohesive Zone Models
- Cold Stretching (see Tensile Test)
- Colour
- Colour Difference
- Colour Penetration Test
- Compact Tension Specimen
- Compact Tension Shear (CTS) Specimen
- Comparative Tracking Index (CTI) (see Creep Current Resistance)
- Compliance (see Tensile Test Compliance and Specimen Compliance)
- Compliance Method (see J-Compliance Method)
- Component Failure
- Component Testing
- Composite Materials Testing
- Composite Materials Testing – Requirements for Materials Testing Machines
- Composite Probes (see Ultrasonic Composite Sensors)
- Compression After Impact Test
- Compression Hardness
- Compressive Strength
- Compression Test
- Compression Test Arrangement
- Compression Test Compliance
- Compressive and Buckling Stiffness (see Stiffness)
- Constraint Factor (see J-Integral Concept and Toughness Temperature Dependence)
- Constant Tensile Load Method (see Tensile Creep Test)
- Continuous Vibration Test
- Continuum Mechanics
- Conventional Hardness Testing
- Corrected Beam Theory (CBT) (see Adhesive Joints – Determination of Characteristic Values)
- Correspondence Principle
- Crack
- Crack Formation (see Fracture Formation)
- Crack Growth (see Crack Propagation)
- Crack Initiation
- Crack Models
- Crack Model according to BARENBLATT
- Crack Model according to DUGDALE
- Crack Model according to GRIFFITH
- Crack Model according to IRWIN and Mc CLINTOCK
- Crack Opening
- Crack Opening Modes
- Crack Propagation
- Crack Propagation Energy
- Crack Propagation Stress Corrosion Cracking
- Crack Resistance (R) Curve
- Crack Resistance Curve – Examples
- Crack Resistance Curve – Experimental Methods
- Crack Resistance Curve – Elastomers Quasistatic
- Crack Tip Opening Displacement Concept (CTOD)
- Crack Toughness
- Craze-Types
- Craze (see Micromechanics & Nanomechanics)
- Crazing
- CRB-Test (Crack Round Bar Test) (see Full Notch Creep Test (FNCT) and Pennsylvania Edge Notch Tensile (PENT) Test)
- Creep Behaviour – Creep Compression Test
- Creep Behaviour – Determination
- Creep Behaviour – Flexural Creep Test
- Creep Behaviour – Creep Internal Compression Test
- Creep Behaviour – Creep Compression Test
- Creep Behaviour – Recovery Test
- Creep Behaviour – Tensile Creep Test
- Creep Compression Test
- Creep Current Resistance
- Creep Modulus (see Creep Behaviour – Determination)
- Creep Path Formation (see Tracking)
- Creep Plastics
- Crescent Specimen
- Crosshead Speed
- Crystallinity
- Cross-linking Elastomers
- C-shaped Test Specimen
- C-Scan Technique
- CT-Specimen
- CTS-Specimen
- Curing
D
- Damage Analysis (see Failure Analysis – Basics)
- Damage Analysis of Plastic Products (see Failure Analysis Plastics Products, VDI Guideline 3822)
- DCB-Specimen (Double-Cantilever Beam)
- De BROGLIE equation (see Resolution Microscope)
- Defect Density (see Tensile Test Event-related Interpretation)
- Deformation
- Deformation Behaviour of Human Cartilage
- Deformation Mechanisms
- Deformation Rate
- Deformation Velocity
- Degree of Cross-Linking Elastomers
- Density
- DENT-Specimen (Double Edge-Notched Tension Specimen)
- Depth of Field Microscope
- Dielectric Loss Factor
- Dielectric Properties
- Differential Scanning Calorimetry (DSC)
- Dispersion
- Drives Materials Testing Machines
- D-Scan Technique
- Ductility Plastics
- DUGDALE Crack Model (see Crack Model according to DUGDALE)
- Durability Elastomers
- Dynamic-mechanical Analysis (DMA) – General Principles
- Dynamic-mechanical Analysis (DMA) – Bend Loading
- Dynamic-mechanical Analysis (DMA) – Tensile Stress
- Dynamic-mechanical Analysis (DMA) – Torsional Stress
- Dynstat Impact Test (see Impact Test)
E
- Effective Crack Length
- Ehrenstein, Gottfried W.
- Elasticity
- Elastic Modulus
- Elastic Modulus – Examples and Material Values
- Elastic Modulus – Ultrasonic Measurement
- Elastomers
- Elastomer Dispersion Filler
- Electrical Conductivity
- Electrical Strength
- Electro-mechanical Force Transducer
- Electron Microscopy
- Electronic Instrumentation
- Electronic Speckle Pattern Interferometry (ESPI)
- Electrostatic Discharge (ESD) (see Electrical Conductivity)
- Elongation at Break (see Tensile Strength)
- Elongational Viscosity
- ELS-Specimen
- Emission (see Acoustic Emission)
- ENF-Specimen (End-Notched Flexure)
- 4 End-Notched Flexure Specimen
- Energy Balance ICIT
- Energy Dispersive X-Ray Spectroscopy (EDX)
- Energy Elasticity
- Energy Fracture Criterion (see Energy Release Rate)
- Energy Release Rate
- Entanglements (see Polymers & Structure, Entropy Elasticity and Degree of Cross-Linking Elastomers)
- Entropy Elasticity
- Entry Point (see Sink Mark)
- Environmental-SEM (ESEM)
- Environmental Stress Cracking Resistance
- Equivalent Energy Concept – Application Limits
- Equivalent Energy Concept – Basics
- Errors
- Error Limit
- Essential Work of Fracture (EWF)-Concept
- EULER's Buckling (see Stiffness)
- Exfoliation (see Laser Silicate-reinforced Polymers)
- Experimental Compliance Method (ECM) (see Adhesive Joints – Determination of Characteristic Values)
- Extended CTOD Concept
F
- Failure Analysis – Basics
- Failure Analysis Plastics Products, VDI Guideline 3822
- Fatigue
- Fatigue Strength
- Fatigue Crack Propagation Elastomers
- Fibre Agglomeration
- Fibre Formation (see Fracture Types, Craze-Types and Fracture Parables)
- Fibre–Matrix Adhesion
- Fibre-reinforced Plastics
- Fibre-reinforced Plastics Fracture Model
- Fibre Orientation
- Fibre Content (see Ashing Method)
- Fibrillation (see Crazing, Craze-Types and Multiple Crazing)
- Filler (see Particle-filled Thermoplastics)
- Film Testing
- Fixed-arm Peel Test
- Flammability
- Flexural Creep Test
- Flexural Modulus
- Flexural Strength
- Flexural Test (see Bend Test)
- FLORY-HUGGINS Interaction Parameter (see Degree of Cross-Linking Elastomers)
- FLORY-REHNER Theory (see Degree of Cross-Linking Elastomers)
- Four End-Notched Flexure (4ENF)Specimen (see 4 ENF-Specimen)
- Four Point Bend Test (see Bend Test and Bend Test – Influences)
- Fractography
- Fracture
- Fracture Behaviour
- Fracture Behaviour of Plastics Components
- Fracture Criterion (see Energy Release Rate)
- Fracture Energy (see Fracture Formation and Fracture)
- Fracture Formation
- Fracture Mechanical Testing
- Fracture Mechanics
- Fracture Mechanics Test Specimens (see Specimen for Fracture Mechanics Tests)
- Fracture Modes
- Fracture Mirror
- Fracture Parables
- Fracture Process Zone
- Fracture Safety Criterion
- Fracture Surface
- Fracture Time (see ICIT – Experimental Conditions, Frequency Responcse Control and Plastic Hinge Model)
- Fracture Toughness (see Fracture Mechanics)
- Fracture Types
- Free Energy (see Surface Energy and Rubber Elasticity)
- Free Falling Dart Method
- Freezing Time
- Frequency Analysis
- Frequency Response Control
- Friction (see Bend Test – Influences)
- Friction Force
- F-Scan Technique
- FTIR Spectroscopy
- Full Notch Creep Test (FNCT)
G
- Gas Bubbles
- Geometry Criterion
- Geometry Function
- Glass Fibre Content (see Ashing Method)
- Glass Fibre Length Distribution – Matrix Resolution
- Glass Fibre Orientation
- Glass Transition Temperature
- Gloss
- Gloss Measurement
- Glowing Hot-Wire Test
- Goodyear, Charles Nelson
- Grellmann, Wolfgang
- Griffith, Alan Arnold
- GRIFFITH's crack model (see Crack Model according to GRIFFITH)
- GRIFFITH's Criteria
- GRIFFITH's Theory
H
- Hardness
- Hardness Revaluation (see Hardness)
- HAGEN-POISSEUILLE-Equation (see Capillary Rheometer)
- Heat Conductivity (see Thermal Conductivity)
- Heat Distortion Temperature HDT
- Heat Resistance
- HERTZIAN Pressure
- Heterogeneity
- HF-Scan
- High-pressure Capillary Rheometer (see Capillary Rheometer)
- High-speed Tensile Test
- HOOKE's Law
- Hole Formation Films
- Hole Formation Plastics
- HRR Crack Model (see Crack Models)
- HUYGENS' Principle (see Sound Pressure)
- Hybrid Methods of Plastic Diagnostics
- Hybrid Methods, Examples
I
- ICIT (see Instrumented Charpy Impact Test)
- ICIT – Energy Method
- ICIT – Experimental Conditions
- ICIT – Extended Stop-Block Method
- ICIT – Influence of Pendulum Hammer Velocity
- ICIT – Limits of Fracture Mechanics Evaluation
- ICIT – Nonlinear Material Behaviour
- ICIT – Specimen Length Method
- ICIT – Stop Block Method
- ICIT – Support Span Method
- ICIT – Types of Impact Load–Deflection Diagrams
- ICIT with AE
- Immersion Method (see Density)
- Imaging Ultrasonic Testing
- Impact Loading Free-falling Dart Test
- Impact Loading High-Speed Testing
- Impact Loading Pendulum Impact Tester
- Impact Loading Plastics
- Impact Test
- Implant Testing
- In-situ Peel Test (see Peeling Process)
- In-situ Tensile Test in ESEM with AE
- In-situ Tensile Test in NMR
- In-situ Ultramicrotomy
- Indentation Fracture Mechanics
- Indentation Modulus
- Indenter
- Index of Refraction (see Refraction Index)
- Induction Time (see Thermostability PVC)
- Inertial Load
- Initial Crack Length
- Instrumentation (see Electronic Instrumentation)
- Instrumented Adhesion Test
- Instrumented Charpy Impact Test (ICIT)
- Instrumented Hardness Measurement – Creep
- Instrumented Hardness Measurement – Indentation Depth Measurement with Modified Contact Foot
- Instrumented Hardness Measurement – Relaxation
- Instrumented Hardness Measurement with Tempering
- Instrumented Hardness Testing – Method & Material Parameters
- Instrumented Puncture Impact Test
- Instrumented Scratch Testing
- Instrumented Tensile Impact Test (ITIT)
- Instrumented Tensile Impact Test (ITIT), Examples
- Insulation Resistance
- Intercalated Structure (see Layer Silicate-reinforced Polymers)
- Interface (see Phase Boundary Surface)
- Interlaminar Shear Strength
- IRHD Hardness
- IRWIN and Mc CLINTOCK crack model (see Crack Model according to IRWIN and Mc CLINTOCK)
- IRWIN-KIES Equation (see Adhesive Joints – Determination of Characteristic Values)
- ITIT (see Instrumented Tensile Impact Test)
- IZOD Impact Test (see Impact Test)
J
- J-Compliance Method
- J-Integral Concept
- J-Integral Evaluation Methods (Overview)
- J-Integral Estimation Methods of
- - BEGLEY and LANDES (see BEGLEY and LANDES – J-Integral Estimation Method (BL))
- - RICE, PARIS and MERKLE (see RICE, PARIS and MERKLE – J-Integral Estimation Method (RPM))
- - SUMPTER and TURNER (see SUMPTER and TURNER – J-Integral Estimation Method (ST))
- - MERKLE and CORTEN (see MERKLE and CORTEN – J-Integral Estimation Method (MC))
- - KANAZAWA (see KANAZAWA – J-Integral Estimation Method (K))
K
- Kausch, Hans-Henning
- KIRCHHOFF's Law of Radiation (see Thermography)
- KNOOP Hardness
- KANAZAWA – J-Integral Estimation Method
L
- LAMBERT-BEER's Law (see Light Absorption)
- Lamb Waves (see Ultrasonic Plate Waves Sensors)
- Laser Angle-Scanner
- Laser Cross-Unit
- Laser Doppler-Scanner
- Laser Double-Scanner
- Laser Extensometry
- Laser Extensometry – Local Strain Control
- Laser Heterogeneity of Strain Distribution
- Laser Longitudinal–Transverse Scanner
- Laser Multi-Scanner
- Laser Parallel-Scanner
- Layer Silicate-reinforced Polymers
- Laser Sintering Process
- Laser TMA-Scanner
- Levels of Knowledge in Fracture Mechanics
- Lid-opening Test
- Light Absorption
- Light Remission (see Remission Light)
- Light Transmission (see Transmission Light)
- Linear-elastic Fracture Mechanics (LEFM) (see Fracture Mechanics)
- Linear-viscoelastic Behaviour
- Liquid Pycnometer Method (see Density)
- Load Cell (see Elektro-Mechanical Force Transducer and Piezoelectric Force Transducer)
- Load Framework
- Low-pressure Capillary Rheometer (see Capillary Rheometer)
M
- Machine Compliance
- Macrodispersion Degree Elastomers
- Magnification Microscope
- Manufacturer of Material Testing Machines
- Martens, Adolf
- Material Parameter
- Materialography
- Material Science & Plastics
- Materials Science
- Materials Technology & Materials Science
- Material Testing Machine
- Material & Werkstoff
- Material Value
- Materials Testing
- MAXWELL Model
- Measure
- Measure Deviation
- Measured Value
- Measured Value Accuracy
- Measured Variable
- Measuring Accuracy
- Measuring Device Monitoring
- Measuring Uncertainty
- Melt Flow Index (see Melt Mass-Flow Rate and Melt Volume-Flow Rate)
- Melt Mass-Flow Rate
- Melt Temperatur (see Differential Scanning Calorimetry (DSC) and Crystallinity)
- Melt Volume-Flow Rate
- Menges, Georg
- MERKLE and CORTEN – J-Integral Estimation Method
- Metallography
- MFR (see Melt Mass-Flow Rate)
- Michler, Goerg Hannes
- Microcrack (see Crack)
- Micro-Damage Limit
- Microhardness (see Hardness)
- Micro-IRHD (see IRHD Hardness)
- Micromechanics & Nanomechanics
- Microplastic & Nanoplastic
- Micropores
- Microscopic Structure
- Micro-Tensile Tests
- Microtomy
- Mixed-Mode Crack Propagation
- MMB-Specimen
- Mobile Hardness Measurement
- Modulus of Compressibility (see Energy Elasticity)
- Modulus of Elasticity (see Elastic Modulus)
- Mohs, Carl Friedrich Christian
- Morphology (see Microscopic Structure)
- Moulded Part (see Moulding Compound)
- Moulding Compound
- Moulding Compound Test
- MPK-Procedure MPK-ICIT
- MPK-Procedure MPK-ITIT
- MTS (Maximum Tensile Stress) Criterion (see Mixed-Mode Crack Propagation
- Multiaxial Stress State
- Multiple Crazing
- Multiple Fracture UD Tapes
- Multipurpose Test Specimen
N
- Nanocomposite (see Layer Silicate-reinforced Thermoplastics)
- Nanoindentation Testing
- Nase, Michael
- Necking Elongation (see Tensile Test Uniform Elongation)
- Non-destructive Polymer Testing
- Non-destructive Testing (NDT)
- Normative Strain (see Tensile Strength)
- Notch
- Notch Geometry
- Notch Impact Strength (see Notched Impact Test)
- Notch Insertion (see Notching)
- Notch Sensitivity
- Notched Impact Test
- Notched Tensile Impact Test
- Notching
- Nuclear Magnetic Resonance Spectroscopy (NMR Spectroscopy)
O
- Object Raster Method
- Orientation (see Tensile Test Residual Stresses Orientations)
- Overview about J-Integral Evaluation Methods (see J-Integral Evaluation Methods (Overview))
- ODCB or MC-DCB-Specimen
P
- PARIS–ERDOGAN Equation (see Fatigue Crack Propagation Elastomers)
- Parameter (see Material Parameter)
- Particle-filled Thermoplastics
- Peel Angle
- Peel Behaviour – Modelling
- Peel-Cling Test
- Peel-Cling Test Cyclic
- Peel-Cling Test Extented
- Peel Curve (see Peel Force – Fracture Path Diagram)
- Peel Force
- Peel Force – Fracture Path Diagram
- Peeling Process
- Peel Properties of Peel Systems
- Peel Test
- Pendulum Hammer Velocity (see ICIT – Influence of Pendulum Hammer Velocity)
- Pennsylvania Edge Notch Tensile (PENT) Test
- Peripheral Fibre Strain
- Permeation
- Phase Boundary Surface
- Piezoelectric Ceramic
- Piezoelectric Ceramic Transducer
- Piezoelectric Effect (see Piezoelectric Force Transducer and Piezo Ceramics)
- Piezoelectric Force Transducer
- PLANCK's constant (see Resolution Microscope)
- Plane Stress and Strain State
- Plastic Component
- Plastic Films & Varnishes – Surface Technology
- Plastic Deformation (see Deformation)
- Plastic Hinge Model
- Plastics
- Plastics – Symbols and Abbreviated Terms
- Plastic Zone
- Plastography
- Poisson's Ratio
- Polarisation Optical Examination
- Polymer
- Polymer Blend
- Polymer Diagnostic
- Polymer Service GmbH Merseburg
- Polymers & Structure
- Polymer Testing
- Pourability
- Processing Shrinkage
- Producer Material Testing Machines (see Manufacturer Material Testing Machines)
- Proof Tracking Index (CTI) (see Creep Current Resistance)
- Prosthesis Pull-through Test
- Pulse-Echo Ultrasonic Technique
- Puncture Impact Test
- Pure Shear-Specimen
- Push-Out Test
Q
- Quasi-static Test Methods
- Quasi-static Short-term tests (see Elastic Modulus)
R
- Radusch, Hans-Joachim
- Raster Reflection Method
- R-Curve Concept (see Crack Resistance (R) Curve)
- Ramps, Bars and Steps
- Rebound Resilience Elastomers
- Reflection Light
- Reflection Sound Waves (see Ultrasonic Waves Reflection)
- Refraction Index
- Refraction Law (see Refraction Light and Refraction Sound Waves)
- Refraction Light
- Refraction Sound Waves
- Refractive Index (see Refraction Index)
- Reincke, Katrin
- Relation Factor (see Plastic Hinge Model)
- Relaxation Behaviour Determination
- Relaxation Plastics
- Remission Light
- Repose Angle
- Residual Compressive Strength (see Compression After Impact Test)
- Residual Stress ( see Tensile Test Residual Stresses Orientations)
- Resolution Laser Extensometer Device System
- Resolution Material Testing Machine
- Resolution Microscope
- Resonance Analysis (Acoustic)
- RICE, PARIS and MERKLE – J-Integral Estimation Method
- Rise Time Electronic Measuring Chain (see ICIT – Experimental Conditions)
- Rheometry
- ROCKWELL Hardness
- Roll Ring Test
- Rotational Rheometer
- Round Specimen
- Round Robin Test
- Rubber Elasticity
S
- Scanning Acoustic Microscopy (SAM)
- Scanning Electron Microscopy (SEM)
- SCB-Specimen
- Scratch Hardness
- Scratch Resistance
- Scratch Test
- Sealed Seam
- Secant Modulus (see Flexural Modulus, Elastic Modulus and Compression Test)
- Seidler, Sabine
- SENB-Specimen (Single-Edge-Notched-Bend)-specimen
- SENT-Specimen (Single-Edge-Notched-Tension)-specimen
- Servo-hydraulic Testing Machine
- Shear Band Formation
- Shear Fracture (see Fracture Types)
- Shear Modulus
- Shear Viscosity
- Shearography
- SHORE Hardness
- SHORE Hardness – Material Development Elastomers
- Short Symbols – Plastics (see Plastics – Symbols and Abbreviated Terms)
- Short-beam Bend Test (see Interlaminar Shear Strength)
- Short-fibre Reinforced Plastics
- Shunt Lid Pull-trough Test (see Prosthesis Pull-trough Test)
- Shrink Voids
- Shrinkage
- Shrinkage Test
- Simple Beam Theory (SBT) (see Adhesive Joints – Determination of Characteristic Values)
- Sink Mark
- Slenderness Ratio
- Slow Crack Growth
- Smart Materials
- SNEDDON-Williams-Equations (see Crack Model according to GRIFFITH)
- SNELLIUS' Law of Refraction (see Ultrasonic Birefringence, Ultrasonic Angle Beam Sensors and Refraction Light)
- Sonography (see Ultrasound Testing)
- Sound Absorption Coefficient (see Elastic Modulus)
- Sound Emission
- Sound Emission Analysis
- Sound Emission Experimental Conditions
- Sound Emission Testing
- Sound Power
- Sound Pressure
- Sound Test
- Sound Velocity
- Specimen
- Specimen Clamping
- Specimen Compliance
- Specimen for Fracture Mechanics Tests
- Specimen for Laser Sintering
- Specimen Shapes for Fatigue Tests (see Test Specimen for Fatigue Tests)
- Speed (see Velocity)
- Spherulitic Structure
- SPLIT-HOPKINSON Pressure Bar (SHPB) Test (see Strain Rate Applications)
- Squirter Technique
- Stability Time (see Thermostability PVC)
- Standard Atmospheres
- Standard Small Bar
- STEFAN-BOLTZMANN Constant (see Thermography)
- Stepped Isothermal Method, Macro Indentation Method
- Stepped Isothermal Method, Tensile Stress
- Stiffness (see also Machine Compliance and Specimen Compliance)
- Strain Gauge
- Strain Hardening Test (SHT)
- Strain Rate Applications
- Strain Rate Basics
- Strength
- Stretch Zone
- Stress
- Stress Cracking Corrosion
- Stress Cracking Resistance (see Environmental Stress Cracking Resistance)
- Stress Intensity Factor (see Fracture Mechanics and SENB-Specimen)
- SUMPTER and TURNER – J-Integral Estimation Method (ST) – J-integral estimation method
- Support Distance
- Support Span (see Support Distance)
- Surface
- Surface Energy
- Surface Resistance
- Surface Technology
- Surface Tension and Interfacial Tension
- Surface Testing Technology
- Swelling (see Water Absorption)
T
- TABOR Relationship
- Tangent Modulus (see Elastic Modulus and Shear Modulus)
- T-Peel Test
- TDCB-Specimen (Tapered-Double-Cantilever Beam-specimen)
- Tear Test
- Tearing Energy (see Trouser Specimen)
- Tearing Modulus
- Temperature Conductivity
- Temperature-modulated Differential Scanning Calorimetry (TMDSC)
- Tensile Creep Test
- Tensile Impact Test
- Tensile Strain at Break (see Tensile Strength)
- Tensile Strength
- Tensile Test
- Tensile Test and Sound Emission Analysis
- Tensile Test Compliance
- Tensile Test Control
- Tensile Test Event-related Interpretation
- Tensile Test Influences
- Tensile Test Overlapping Creep Relaxation
- Tensile Test Residual Stresses Orientations
- Tensile Test True Stress–Strain Diagram
- Tensile Test Uniform Elongation
- Tensile Test Specimen (see Multipurpose Test Specimen)
- Test Climate
- Testing
- Testing of Adhesive Bonds (see SCB-Specimen)
- Testing of Composite Materials (see Composite Materials Testing)
- Testing Microcomponents
- Testing Plastic Packaging
- Test Piece
- Test Specimen (see Specimen)
- Test Specimen for Fatigue Tests
- Test Speed
- Thermal Conductivity
- Thermal Diffusivity (see Temperature Conductivity)
- Thermal Expansion Coefficient
- Thermal Strain Analysis
- Thermal Stress Analysis
- Thermoelastic Effect
- Thermography
- Thermogravimetric Analysis (TGA)
- Thermomechanical Analysis (TMA)
- Thermoplastic Material
- Thermosets
- Thermostability PVC
- Threads, Tips and Films
- Three-point Bend Test (see Bend Test and Bend Test – Influences)
- Three-point Bend Specimen (see SENB-Specimen)
- Time–Temperature Shift Law
- Titration Method (see Density)
- TODCB-Specimen (see SCB-Specimen)
- Toughness
- Toughness Temperature Dependence
- Tracking
- Transmission Light
- Transmission Electron Microscopy
- Transmission Sound Waves
- Transverse Contraction (see Poisson's Ratio)
- Trapezoidal Specimen
- Triaxial Loading (see Multiaxial Stress State)
- Tribological Stress (see Stress)
- Trouser Specimen
U
- UD Tape (see Composite Materials Testing and Multiple Fracture UD Tapes)
- Ultramicrotomy
- Ultrasonic Angle Beam Sensors
- Ultrasonic Birefringence
- Ultrasonic Contact Impedance (UCI) Hardness
- Ultrasonic Composite Sensors
- Ultrasonic Direct Coupling
- Ultrasonic Imaging Inspection (see Imaging Ultrasonic Testing)
- Ultrasonic Immersion Bath Technique
- Ultrasonic Immersion Bath Sensors
- Ultrasonic Laser Excitation
- Ultrasonic Microscopy (see Scanning Acoustic Microscopy (SAM))
- Ultrasonic Modulation
- Ultrasonic Phased Array Sensors
- Ultrasonic Plate Waves Sensors
- Ultrasonic Pulse-echo Technique (see Pulse-Echo Ultrasonic Technique)
- Ultrasonic Runtime Measurement
- Ultrasonic Sensors
- Ultrasonic Shock Wave Sensors
- Ultrasonic Standard Sensors
- Ultrasonic Time-of-Flight Diffraction (TOFD) Technique
- Ultrasonic Transmission Technique
- Ultrasonic Transmitter(S)-Receiver(E) Sensors
- Ultrasonic Wall Thickness Measurement
- Ultrasonic Waves Reflection
- Ultrasonic Weld Inspection
- Ultrasound – Elastic Parameters
- Ultrasound-guided Waves
- Ultrasound Testing
- Uniaxial Stress State
- Uniform Elongation (see Tensile Test Uniform Elongation)
- Universal Hardness
- Universal Testing Machine (see Material Testing Machine)
- UODCB-Specimen (see SCB-Specimen)
V
- Vacuoles (see Shrink Voids)
- Value (see Material Value)
- Valve Control Test (see Lid-opening Test)
- Valve Movement Test
- Velocity
- Verification
- Vibration Fracture
- Vibration-induced Creep Fracture
- Vibration Strength
- Vibration Test (see Continuous Vibration Test)
- Vicat Softening Temperature
- Vickers Hardness
- Video Extensometry
- Viscoelasticity (see Linear-viscoelastic Behaviour and Viscoelastic Material Behaviour)
- Viscoelastic Material Behaviour
- Viscous Deformation (see Deformation)
- Viscosity
- Visual Inspection
- VOIGT-KELVIN Model
- Volume Resistance
- Volume Swelling Elastomers
- Vu-Khanh Method
- Vulcanization
W
- Water Absorption
- Wavelet Transform (see Frequency Analysis)
- Waves and Arrest Lines
- Wear (see Abrasion Elastomers)
- Williams, James Gordon
- WinICIT-Software
- Weld Line
- WU & FOWKES method (see Surface Tension and Interfacial Tension)
- WHEATSTONE's Bridge Circuit (see Strain Gauge, Electro-mechanical Force Transducer, and ICIT with AE)
Y
- YOUNG-DUPRÉ Equation (see Surface Energy)
- Young's Modulus (see IRHD Hardness and Elastic Modulus)
- Yield Fracture Mechanics (see Fracture Mechanics)
- Yield Point (see Yield Stress)
- Yield Stress
Categories
- Acoustic Test Methods/Ultrasonics
- Ageing
- Bend Test
- Colour and Gloss
- Compression Test
- Creep Behaviour Plastics
- Damage Analysis/Component Failure
- Deformation
- Elastomers
- Electrical and Dielectrical Testing
- Fatigue
- Film Testing
- Fire Behaviour
- Fracture Mechanics
- Hardness
- Hybrid Methods
- Impact Tests
- Implant Testing
- Instrumented Impact Test
- Laser Extensometry
- Light
- Material Scientists/Polymer Scientists
- Materials Science/Materials Engineering
- Measurement Testing Technology (Measurement Data Aquisition)
- Morphology and Micromechanics
- Optical Field Measurement Methods
- Peel Test
- Plastics
- Process-related Properties
- Scientific Disciplines
- Specimen
- Specimen Preparation
- Stiffness/Compliance
- Stress Cracking Resistance
- Surface Testing Technology
- Tensile Test
- Thermoanalytical Methods
- Velocity
