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A user with 1,854 edits. Account created on 4 July 2025.
3 September 2026
- 11:0311:03, 3 September 2026 diff hist −3 Component Failure No edit summary current
- 11:0211:02, 3 September 2026 diff hist −64 Compact Tension Specimen No edit summary current
- 11:0211:02, 3 September 2026 diff hist −2 Colour Penetration Test No edit summary current
- 11:0111:01, 3 September 2026 diff hist 0 N File:CLS-Specimen-2.jpg No edit summary current
- 11:0111:01, 3 September 2026 diff hist 0 N File:CLS-Specimen-1.jpg No edit summary current
- 11:0011:00, 3 September 2026 diff hist +4,556 N CLS-Specimen Created page with "{{Language_sel|LANG=ger|ARTIKEL=CLS-Prüfkörper}} {{PSM_Infobox}} <span style="font-size:1.2em;font-weight:bold;">CTS-specimen</span> The Anglo-Saxon abbreviation CLS stands for ‘Crack-Lap Shear’. __FORCETOC__ ==General information== The CLS-specimen was originally designed for investigating shear-dominated failure in adhesive joints (see also: [[Adhesive Joints – Determination of Characteristic Values|adhesive joints – determination of characteristic values]..." current
- 11:0011:00, 3 September 2026 diff hist +1,548 N Charpy Testing Created page with "{{Language_sel|LANG=ger|ARTIKEL=Charpy}} {{PSM_Infobox}} <span style="font-size:1.2em;font-weight:bold;">Charpy testing </span> __FORCETOC__ ==The Charpy test== The term “Charpy testing” is derived from the French engineer Georges Augustin Albert Charpy. In mechanical materials testing, the methods used to determine the toughness properties of metallic and polymeric Material & Werkstoff|materials..." current
- 11:0011:00, 3 September 2026 diff hist 0 N File:Charpy titelblatt.jpg No edit summary current
- 10:5910:59, 3 September 2026 diff hist 0 N File:Charpy foto.jpg No edit summary current
- 10:5910:59, 3 September 2026 diff hist +3,475 N Charpy, Georges Created page with "{{Language_sel|LANG=ger|ARTIKEL=Charpy, Georges}} {{PSM_Infobox}} <span style="font-size:1.2em;font-weight:bold;">Charpy, G. A. A.</span> __FORCETOC__ ==Biography== Georges Augustin Albert Charpy (1865–1945) was a French engineer who developed the impact test named after him (see: impact test according to Charpy). File:charpy_foto.jpg In June 1901, he published his important work “Testing of Metals by Impact Bending of Notch..." current
- 10:5810:58, 3 September 2026 diff hist −22 Capillary Rheometer No edit summary current
- 10:5810:58, 3 September 2026 diff hist −22 Calibration No edit summary current
- 10:3710:37, 3 September 2026 diff hist −3 BUCHHOLZ Hardness No edit summary current
- 10:3710:37, 3 September 2026 diff hist +8 B-Scan Technique No edit summary current
- 10:3610:36, 3 September 2026 diff hist 0 N File:Brittle-Tough-Transition Temperature-Fig.jpg No edit summary current
- 10:3610:36, 3 September 2026 diff hist +3,216 N Brittle-Tough Transition Temperature Created page with "{{Language_sel|LANG=ger|ARTIKEL=Spröd-Zäh-Übergangstemperatur}} {{PSM_Infobox}} <span style="font-size:1.2em;font-weight:bold;">Brittle-tough transition temperature</span> __FORCETOC__ ==Fundamentals== The brittle-to-ductile transition temperature is a physical characteristic value that describes a fundamental change in material behaviour. For technical reasons, the focus is often on material toughness, e.g...." current
- 10:3610:36, 3 September 2026 diff hist +21 Brittle-Tough Transition No edit summary current
- 10:3510:35, 3 September 2026 diff hist −83 Brittle Fracture Promoting Factors No edit summary current
- 10:3510:35, 3 September 2026 diff hist −23 BOLTZMANN's Superposition Principle No edit summary current
- 10:3410:34, 3 September 2026 diff hist −77 Blumenauer, Horst No edit summary current
- 10:3410:34, 3 September 2026 diff hist −27 Bio-Plastics – Impact-Modified No edit summary current
- 10:3310:33, 3 September 2026 diff hist +15 Bio-Plastics No edit summary current
- 10:3310:33, 3 September 2026 diff hist −16 Bierögel, Christian No edit summary current
- 10:3210:32, 3 September 2026 diff hist −2 Bend Test – Yield Stress →Microscopic yield and macroscopic necking current
- 10:3010:30, 3 September 2026 diff hist −29 Bend Test – Yield Stress No edit summary
- 10:2910:29, 3 September 2026 diff hist −21 Bend Test – Test Influences No edit summary current
- 10:2910:29, 3 September 2026 diff hist −30 Bend Test – Specimen Shapes No edit summary current
- 10:2810:28, 3 September 2026 diff hist −30 Bend Test – Specimen Preparation No edit summary current
- 10:2810:28, 3 September 2026 diff hist −29 Bend Test – Shear Stress No edit summary current
- 10:2710:27, 3 September 2026 diff hist −10 Bend Test – Influences No edit summary current
- 10:2710:27, 3 September 2026 diff hist +10 Bend Test Compliance No edit summary current
- 10:2610:26, 3 September 2026 diff hist 0 N File:Bend Test + SEA Fig2-4.jpg No edit summary current
- 10:2610:26, 3 September 2026 diff hist 0 N File:Bend Test + SEA Fig2-3.jpg No edit summary current
- 10:2510:25, 3 September 2026 diff hist 0 N File:Bend Test + SEA Fig2-2.jpg No edit summary current
- 10:2510:25, 3 September 2026 diff hist 0 N File:Bend Test + SEA Fig2-1.jpg No edit summary current
- 10:2510:25, 3 September 2026 diff hist 0 N File:Bend Test + SEA Fig1.jpg No edit summary current
- 10:2510:25, 3 September 2026 diff hist −5 Bend Test and Sound Emission Analysis No edit summary current
- 10:2110:21, 3 September 2026 diff hist +8,138 N Bend Test and Sound Emission Analysis Created page with "{{Language_sel|LANG=ger|ARTIKEL=Biegeversuch und Schallemissionsanalyse}} {{PSM_Infobox}} <span style="font-size:1.2em;font-weight:bold;">Bend test and sound emission analysis</span> __FORCETOC__ ==Introduction== In the quasi-static bending test, the sound emissions occurring during loading on test specimens notched on one side are used to evaluate the damage kinetics. The use of n..."
- 10:2010:20, 3 September 2026 diff hist 0 N File:Bend Test and Light Microscopy Fig1.jpg No edit summary current
- 10:2010:20, 3 September 2026 diff hist +9,990 N Bend Test and Light Microscopy Created page with "{{Language_sel|LANG=ger|ARTIKEL=Biegeversuch und Lichtmikroskopie}} {{PSM_Infobox}} <span style="font-size:1.2em;font-weight:bold;">Bend test and light microscopy</span> __FORCETOC__ ==Methods for determining damage limits at deformation== The further development of hybrid methods for polymer diagnostics always pursues the goal of increasing the informative value of individual classic testing methods. Numerous Hybrid Methods,..." current
- 10:1910:19, 3 September 2026 diff hist −31 Bend Test No edit summary current
- 10:1910:19, 3 September 2026 diff hist −22 Bend Loading No edit summary current
- 10:1810:18, 3 September 2026 diff hist −43 BEGLEY and LANDES – J-Integral Estimation Method No edit summary current
- 10:1810:18, 3 September 2026 diff hist 0 N File:Barrier Plastics Fig7.jpg No edit summary current
- 10:1710:17, 3 September 2026 diff hist 0 N File:Barrier Plastics Fig6.jpg No edit summary current
- 10:1710:17, 3 September 2026 diff hist 0 N File:Barrier Plastics Fig5.jpg No edit summary current
- 10:1710:17, 3 September 2026 diff hist 0 N File:Barrier Plastics Fig4.jpg No edit summary current
- 10:1710:17, 3 September 2026 diff hist 0 N File:Barrier Plastics Fig3.jpg No edit summary current
- 10:1710:17, 3 September 2026 diff hist 0 N File:Barrier Plastics Fig2.jpg No edit summary current
- 10:1710:17, 3 September 2026 diff hist 0 N File:Barrier Plastics Fig1.jpg No edit summary current