Related changes
Appearance
Enter a page name to see changes on pages linked to or from that page. (To see members of a category, enter Category:Name of category). Changes to pages on your Watchlist are in bold.
List of abbreviations:
- N
- This edit created a new page (also see list of new pages)
- m
- This is a minor edit
- b
- This edit was performed by a bot
- (±123)
- The page size changed by this number of bytes
7 September 2026
| N 14:17 | Vickers Hardness diffhist +5,193 Oluschinski talk contribs (Created page with "{{Language_sel|LANG=ger|ARTIKEL=Vickers-Härte}} {{PSM_Infobox}} <span style="font-size:1.2em;font-weight:bold;">Vickers hardness</span> __FORCETOC__ ==General information== The Vickers hardness testing method (named after the English company Vickers) was developed in 1925 by Smith and Sandland. The decisive factor was that the applicability of Brinell hardness was limited due to the flattening of the steel ball, and carbide balls were not yet available at that time....") | ||||
| 14:14 | Velocity diffhist −3 Oluschinski talk contribs | ||||
| 11:26 | Thermosets diffhist −143 Oluschinski talk contribs | ||||
| 11:25 | Thermoplastic Material diffhist −69 Oluschinski talk contribs | ||||
| 11:19 | Testing diffhist −39 Oluschinski talk contribs | ||||
| 11:00 | Surface diffhist −2 Oluschinski talk contribs | ||||
| 10:59 | Stress diffhist +264 Oluschinski talk contribs | ||||
| 10:58 | Strength diffhist −3 Oluschinski talk contribs | ||||
| 10:52 | Specimen diffhist +780 Oluschinski talk contribs | ||||
| 10:45 | SHORE Hardness diffhist −43 Oluschinski talk contribs | ||||
4 September 2026
| 14:20 | Quasi-static Test Methods diffhist +216 Oluschinski talk contribs | ||||
| 14:11 | Poisson's Ratio diffhist −69 Oluschinski talk contribs | ||||
| N 14:08 | Plastography diffhist +32,805 Oluschinski talk contribs (Created page with "{{Language_sel|LANG=ger|ARTIKEL=Plastographie}} {{PSM_Infobox}} <span style="font-size:1.2em;font-weight:bold;">Plastography</span> __FORCETOC__ ==Basics== Plastography is the most recent scientific sub-discipline of materialography and serves to elucidate and provide a qualitative and quantitative description of the structure and morphology of plastics and their composites (see al...") | ||||
| 14:06 | Plastics diffhist −63 Oluschinski talk contribs | ||||
| N 14:02 | Plastic Films & Varnishes – Surface Technology diffhist +16,704 Oluschinski talk contribs (Created page with "{{Language_sel|LANG=ger|ARTIKEL=Kunststofffolien & Lacke – Oberflächenprüfung}} {{PSM_Infobox}} <span style="font-size:1.2em;font-weight:bold;">Plastic films & varnishes – Surface technology </span> __FORCETOC__ ==Requirements for film products== Plastic films are products having extremely different applications: flexible or rigid packaging, decorative films for the automotive or furniture industry, films in the construction sector, agricultural films, etc. This...") | ||||
| N 14:02 | Plastic Component diffhist +10,747 Oluschinski talk contribs (Created page with "{{Language_sel|LANG=ger|ARTIKEL=Kunststoffbauteil}} {{PSM_Infobox}} <span style="font-size:1.2em;font-weight:bold;">Plastic component, Dimensioning</span> __FORCETOC__ ==General== For designers of plastic products, the task increasingly involves selecting materials, dimensioning and designing components using scientifically based, plastics-specific working methods. ==Strength and deformation verification== The current approach to dimensioning plastic com...") | ||||
| N 11:33 | Nanoindentation Testing diffhist +8,798 Oluschinski talk contribs (Created page with "{{Language_sel|LANG=ger|ARTIKEL=Nano-Eindringprüfung}} {{PSM_Infobox}} <span style="font-size:1.2em;font-weight:bold;">Nanoindentation testing</span> __FORCETOC__ ==Classification within nanoindentation testing== Nanoindentation plays a key role in the testing and evaluation of the mechanical properties of miniature components (see: testing microcomponents) [1]. This indentation testing method is one of the Hardness#Instrumented hardness...") | ||||
|
|
10:48 | (Upload log) [Oluschinski (6×)] | |||
|
|
10:48 Oluschinski talk contribs uploaded File:Mobile Hardness Measurement Fig-6.jpg | ||||
|
|
10:48 Oluschinski talk contribs uploaded File:Mobile Hardness Measurement Fig-5.jpg | ||||
|
|
10:48 Oluschinski talk contribs uploaded File:MobileH 4.jpg | ||||
|
|
10:48 Oluschinski talk contribs uploaded File:MobileH 3.jpg | ||||
|
|
10:48 Oluschinski talk contribs uploaded File:MobileH 2.jpg | ||||
|
|
10:48 Oluschinski talk contribs uploaded File:MobileH 1.jpg | ||||
| 10:36 | Measure diffhist −43 Oluschinski talk contribs | ||||
| 10:34 | Material Value diffhist −102 Oluschinski talk contribs | ||||
| 10:34 | Material & Werkstoff diffhist −2 Oluschinski talk contribs | ||||
| N 10:31 | Martens, Adolf diffhist +5,027 Oluschinski talk contribs (Created page with "{{Language_sel|LANG=ger|ARTIKEL=Martens, Adolf}} {{PSM_Infobox}} <span style="font-size:1.2em;font-weight:bold;">Martens, Adolf Karl Gottfried</span> __FORCETOC__ ==Biography== 300px {| |- valign="top" |width="50px"|'''Image''': |width="600px" |Adolf Martens |} Adolf Karl Gottfried Martens (6 March 1850–24 July 1914) was a German materials scientist, materials tester, metallurgist and engineer. MARTENS studied mechanical engineering...") | ||||
| N 09:35 | Impact Loading Plastics diffhist +7,161 Oluschinski talk contribs (Created page with "{{Language_sel|LANG=ger|ARTIKEL=Schlagbeanspruchung Kunststoffe}} {{PSM_Infobox}} <span style="font-size:1.2em;font-weight:bold;">Impact loading plastics</span> __FORCETOC__ ==Significance of high deformation rates== When plastics or composite materials are used in machines or vehicles, in explosions, in crash situations or even during high-speed machining of these materials, sudden impact forces can...") | ||||
| 08:51 | Hardness diffhist −267 Oluschinski talk contribs | ||||
3 September 2026
| 14:17 | Fibre-reinforced Plastics diffhist −103 Oluschinski talk contribs | ||||
| N 14:05 | Failure Analysis – Basics diffhist +12,403 Oluschinski talk contribs (Created page with "{{Language_sel|LANG=ger|ARTIKEL=Schadensanalyse}} {{PSM_Infobox}} <span style="font-size:1.2em;font-weight:bold;">Failure analysis – Basics</span> __FORCETOC__ ==Failure analysis, evaluation of damage cases== Damage analyses serve to determine the causes of component failure and to draw conclusions from this in order to initiate targeted measures for damage repair and prevention. A wide range of analytical methods, Polymer Testing|polymer tes...") | ||||
| 13:34 | Elastomers diffhist −43 Oluschinski talk contribs | ||||
| 13:26 | Elastic Modulus diffhist −52 Oluschinski talk contribs | ||||
| 12:59 | Deformation diffhist −568 Oluschinski talk contribs | ||||
| N 11:12 | Conventional Hardness Testing diffhist +2,175 Oluschinski talk contribs (Created page with "{{Language_sel|LANG=ger|ARTIKEL=Konventionelle Härteprüfung}} {{PSM_Infobox}} <span style="font-size:1.2em;font-weight:bold;">Conventional hardness testing</span> __FORCETOC__ ==Terminology== In polymer testing, a conventional hardness test method (see: hardness) refers to all methods in which characteristic values are determined using device systems that do not have any [[Electronic Instrumentation|instrumentation]...") | ||||
| 10:37 | BUCHHOLZ Hardness diffhist −3 Oluschinski talk contribs | ||||
| 10:15 | Barcol Hardness diffhist −3 Oluschinski talk contribs | ||||
| 09:31 | Ageing diffhist −21 Oluschinski talk contribs | ||||