ASTM E 2789 : 2010 : R2015
Superseded
A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.
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Standard Guide for Fretting Fatigue Testing
Hardcopy , PDF
21-01-2022
English
31-07-2015
CONTAINED IN VOL. 03.01, 2015 Specifies terminology and covers general requirements for conducting fretting fatigue tests and reporting the results. It describes the general types of fretting fatigue tests and provides some suggestions on developing and conducting fretting fatigue test programs.
Committee |
E 08
|
DocumentType |
Guide
|
Pages |
10
|
ProductNote |
Reconfirmed 2015
|
PublisherName |
American Society for Testing and Materials
|
Status |
Superseded
|
SupersededBy | |
Supersedes |
1.1This guide defines terminology and covers general requirements for conducting fretting fatigue tests and reporting the results. It describes the general types of fretting fatigue tests and provides some suggestions on developing and conducting fretting fatigue test programs.
1.2Fretting fatigue tests are designed to determine the effects of mechanical and environmental parameters on the fretting fatigue behavior of metallic materials. This guide is not intended to establish preference of one apparatus or specimen design over others, but will establish guidelines for adherence in the design, calibration, and use of fretting fatigue apparatus and recommend the means to collect, record, and reporting of the data.
1.3The number of cycles to form a fretting fatigue crack is dependent on both the material of the fatigue specimen and fretting pad, the geometry of contact between the two, and the method by which the loading and displacement are imposed. Similar to wear behavior of materials, it is important to consider fretting fatigue as a system response, instead of a material response. Because of this dependency on the configuration of the system, quantifiable comparisons of various material combinations should be based on tests using similar fretting fatigue configurations and material couples.
1.4This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.
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ASTM E 1823 : 2012 : REV : EDT 0 | Standard Terminology Relating to Fatigue and Fracture Testing |
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ASTM E 466 : 1996 | Standard Practice for Conducting Force Controlled Constant Amplitude Axial Fatigue Tests of Metallic Materials |
ASTM E 1012 : 1999 | Standard Practice for Verification of Specimen Alignment Under Tensile Loading |
ASTM E 1012 : 2012 | Standard Practice for Verification of Testing Frame and Specimen Alignment Under Tensile and Compressive Axial Force Application |
ASTM E 1012 : 2014 : EDT 1 | Standard Practice for Verification of Testing Frame and Specimen Alignment Under Tensile and Compressive Axial Force Application |
ASTM E 1823 : 2005 : REV A : EDT 1 | Standard Terminology Relating to Fatigue and Fracture Testing |
ASTM E 1823 : 2010 : REV A | Standard Terminology Relating to Fatigue and Fracture Testing |
ASTM E 1823 : 2021 | Standard Terminology Relating to Fatigue and Fracture Testing |
ASTM E 1823 : 2009 : REV B | Standard Terminology Relating to Fatigue and Fracture Testing |
ASTM E 1823 : 2013-07 | TERMINOLOGY RELATING TO FATIGUE AND FRACTURE TESTING |
ASTM E 1823 : 2012 : REV D | Standard Terminology Relating to Fatigue and Fracture Testing |
ASTM E 1823 : 2012 : REV B | Standard Terminology Relating to Fatigue and Fracture Testing |
ASTM E 1012 : 2012 : EDT 1 | Standard Practice for Verification of Testing Frame and Specimen Alignment Under Tensile and Compressive Axial Force Application |
ASTM G 40 : 2021 : REV A | Standard Terminology Relating to Wear and Erosion |
ASTM E 466 : 2021 | Standard Practice for Conducting Force Controlled Constant Amplitude Axial Fatigue Tests of Metallic Materials |
ASTM E 466 : 2015 | Standard Practice for Conducting Force Controlled Constant Amplitude Axial Fatigue Tests of Metallic Materials |
ASTM E 1942 : 1998 : R2018 : EDT 1 | Standard Guide for Evaluating Data Acquisition Systems Used in Cyclic Fatigue and Fracture Mechanics Testing |
ASTM E 1012 : 2005 | Standard Practice for Verification of Test Frame and Specimen Alignment Under Tensile and Compressive Axial Force Application |
ASTM E 4 : 2021 | Standard Practices for Force Calibration and Verification of Testing Machines |
ASTM E 1823 : 1996 : R2002 | Standard Terminology Relating to Fatigue and Fracture Testing |
ASTM E 1823 : 1996 : EDT 1 | Standard Terminology Relating to Fatigue and Fracture Testing |
ASTM E 467 : 2008 : R2014 | Standard Practice for Verification of Constant Amplitude Dynamic Forces in an Axial Fatigue Testing System |
ASTM E 1823 : 2012 : REV A | Standard Terminology Relating to Fatigue and Fracture Testing |
ASTM E 1823 : 2007 | Standard Terminology Relating to Fatigue and Fracture Testing |
ASTM G 40 : 2017 | Standard Terminology Relating to Wear and Erosion |
ASTM E 467 : 2021 | Standard Practice for Verification of Constant Amplitude Dynamic Forces in an Axial Fatigue Testing System |
ASTM E 1823 : 2013 | Standard Terminology Relating to Fatigue and Fracture Testing |
ASTM E 1942 : 1998 : R2010 : EDT 1 | Standard Guide for Evaluating Data Acquisition Systems Used in Cyclic Fatigue and Fracture Mechanics Testing |
ASTM E 1823 : 2012 : REV C | Standard Terminology Relating to Fatigue and Fracture Testing |
ASTM E 1823 : 2020 : REV B | Standard Terminology Relating to Fatigue and Fracture Testing |
ASTM G 190 : 2015 | Standard Guide for Developing and Selecting Wear Tests (Withdrawn 2021) |
ASTM E 1012 : 2019 | Standard Practice for Verification of Testing Frame and Specimen Alignment Under Tensile and Compressive Axial Force Application |
ASTM E 1823 : 2005 : REV A | Standard Terminology Relating to Fatigue and Fracture Testing |
ASTM E 1823 : 2011 | Standard Terminology Relating to Fatigue and Fracture Testing |
ASTM E 1942 : 1998 : R2004 | Standard Guide for Evaluating Data Acquisition Systems Used in Cyclic Fatigue and Fracture Mechanics Testing |
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