ASTM E647-2013ae1 2915 Standard Test Method for Measurement of Fatigue Crack Growth Rates《测量疲劳裂纹扩展速率的标准试验方法》.pdf
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1、Designation: E647 13a1Standard Test Method forMeasurement of Fatigue Crack Growth Rates1This standard is issued under the fixed designation E647; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last revision. A number i
2、n parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1NOTEX4.3.1.5 and Eq X4.3 were editorially corrected in July 2014.1. Scope1.1 This test method2covers the determination of fatiguecrack growth rates from n
3、ear-threshold to Kmaxcontrolledinstability. Results are expressed in terms of the crack-tipstress-intensity factor range (K), defined by the theory oflinear elasticity.1.2 Several different test procedures are provided, the opti-mum test procedure being primarily dependent on the magni-tude of the f
4、atigue crack growth rate to be measured.1.3 Materials that can be tested by this test method are notlimited by thickness or by strength so long as specimens are ofsufficient thickness to preclude buckling and of sufficientplanar size to remain predominantly elastic during testing.1.4 A range of spec
5、imen sizes with proportional planardimensions is provided, but size is variable to be adjusted foryield strength and applied force. Specimen thickness may bevaried independent of planar size.1.5 The details of the various specimens and test configu-rations are shown in Annex A1 Annex A3. Specimencon
6、figurations other than those contained in this method maybe used provided that well-established stress-intensity factorcalibrations are available and that specimens are of sufficientplanar size to remain predominantly elastic during testing.1.6 Residual stress/crack closure may significantly influen
7、cethe fatigue crack growth rate data, particularly at low stress-intensity factors and low stress ratios, although such variablesare not incorporated into the computation of K.1.7 Values stated in SI units are to be regarded as thestandard. Values given in parentheses are for information only.1.8 Th
8、is test method is divided into two main parts. The firstpart gives general information concerning the recommenda-tions and requirements for fatigue crack growth rate testing.The second part is composed of annexes that describe thespecial requirements for various specimen configurations, spe-cial req
9、uirements for testing in aqueous environments, andprocedures for non-visual crack size determination. In addition,there are appendices that cover techniques for calculatingda/dN, determining fatigue crack opening force, and guidelinesfor measuring the growth of small fatigue cracks. Generalinformati
10、on and requirements common to all specimen typesare listed as follows:SectionReferenced Documents 2Terminology 3Summary of Use 4Significance and Use 5Apparatus 6Specimen Configuration, Size, and Preparation 7Procedure 8Calculations and Interpretation of Results 9Report 10Precision and Bias 11Special
11、 Requirements for Testing in Aqueous Environments Annex A4Guidelines for Use of Compliance to Determine Crack Size Annex A5Guidelines for Electric Potential Difference Determination ofCrack SizeAnnex A6Recommended Data Reduction Techniques Appendix X1Recommended Practice for Determination of Fatigue
12、 CrackOpening Force From ComplianceAppendix X2Guidelines for Measuring the Growth Rates Of Small FatigueCracksAppendix X3Recommended Practice for Determination Of ACR-BasedStress-Intensity Factor RangeAppendix X41.9 Special requirements for the various specimen configu-rations appear in the followin
13、g order:The Compact Specimen Annex A1The Middle Tension Specimen Annex A2The Eccentrically-Loaded Single Edge Crack TensionSpecimenAnnex A31.10 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of this standard t
14、o establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use.1This test method is under the jurisdiction of ASTM Committee E08 on Fatigueand Fracture and is the direct responsibility of Subcommittee E08.06 on CrackGrowth Behavior.Curren
15、t edition approved Oct. 15, 2013. Published February 2014. Originallyapproved in 1978. Last previous approved in 2013 as E647 13. DOI: 10.1520/E0647-13A.2For additional information on this test method see RR: E24 1001. Availablefrom ASTM Headquarters, 100 Barr Harbor Drive, West Conshohocken, PA 194
16、28.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States12. Referenced Documents2.1 ASTM Standards:3E4 Practices for Force Verification of Testing MachinesE6 Terminology Relating to Methods of Mechanical TestingE8/E8M Test Methods for Tensi
17、on Testing of Metallic Ma-terialsE338 Test Method of Sharp-Notch Tension Testing of High-Strength Sheet Materials (Withdrawn 2010)4E399 Test Method for Linear-Elastic Plane-Strain FractureToughness KIcof Metallic MaterialsE467 Practice for Verification of Constant Amplitude Dy-namic Forces in an Axi
18、al Fatigue Testing SystemE561 Test Method forK-R Curve DeterminationE1012 Practice for Verification of Testing Frame and Speci-men Alignment Under Tensile and Compressive AxialForce ApplicationE1820 Test Method for Measurement of Fracture ToughnessE1823 Terminology Relating to Fatigue and Fracture T
19、esting3. Terminology3.1 The terms used in this test method are given in Termi-nology E6, and Terminology E1823. Wherever these terms arenot in agreement with one another, use the definitions given inTerminology E1823 which are applicable to this test method.3.2 Definitions:3.2.1 crack size, aL,na li
20、near measure of a principalplanar dimension of a crack. This measure is commonly usedin the calculation of quantities descriptive of the stress anddisplacement fields and is often also termed crack length ordepth.3.2.1.1 DiscussionIn fatigue testing, crack length is thephysical crack size. See physi
21、cal crack size in TerminologyE1823.3.2.2 cyclein fatigue, under constant amplitude loading,the force variation from the minimum to the maximum andthen to the minimum force.3.2.2.1 DiscussionIn spectrum loading, the definition ofcycle varies with the counting method used.3.2.2.2 DiscussionIn this tes
22、t method, the symbol N isused to represent the number of cycles.3.2.3 fatigue-crack-growth rate, da/dN, L/cyclethe rateof crack extension under fatigue loading, expressed in terms ofcrack extension per cycle .3.2.4 fatigue cycleSee cycle.3.2.5 force cycleSee cycle.3.2.6 force range, P Fin fatigue, t
23、he algebraicdifference between the maximum and minimum forces in acycle expressed as:P 5 Pmax2 Pmin(1)3.2.7 force ratio (also called stress ratio), Rin fatigue, thealgebraic ratio of the minimum to maximum force (stress) in acycle, that is, R = Pmin/Pmax.3.2.8 maximum force, PmaxFin fatigue, the hig
24、hestalgebraic value of applied force in a cycle. Tensile forces areconsidered positive and compressive forces negative.3.2.9 maximum stress-intensity factor, KmaxFL3/2infatigue, the maximum value of the stress-intensity factor in acycle. This value corresponds to Pmax.3.2.10 minimum force, PminFin f
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