ASTM E739-2010(2015) 4086 Standard Practice for Statistical Analysis of Linear or Linearized Stress-Life (S-N) and Strain-Life (&x3b5 -N) Fatigue Data《线性或者线性化应力寿命 (S-N) 和应变寿命 (N) 疲.pdf
《ASTM E739-2010(2015) 4086 Standard Practice for Statistical Analysis of Linear or Linearized Stress-Life (S-N) and Strain-Life (&x3b5 -N) Fatigue Data《线性或者线性化应力寿命 (S-N) 和应变寿命 (N) 疲.pdf》由会员分享,可在线阅读,更多相关《ASTM E739-2010(2015) 4086 Standard Practice for Statistical Analysis of Linear or Linearized Stress-Life (S-N) and Strain-Life (&x3b5 -N) Fatigue Data《线性或者线性化应力寿命 (S-N) 和应变寿命 (N) 疲.pdf(7页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E739 10 (Reapproved 2015)Standard Practice forStatistical Analysis of Linear or Linearized Stress-Life (S-N)and Strain-Life (-N) Fatigue Data1This standard is issued under the fixed designation E739; the number immediately following the designation indicates the year oforiginal adoption
2、 or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This practice covers only S-N and -N relationships thatmay be reasonably app
3、roximated by a straight line (on appro-priate coordinates) for a specific interval of stress or strain. Itpresents elementary procedures that presently reflect goodpractice in modeling and analysis. However, because the actualS-N or -N relationship is approximated by a straight line onlywithin a spe
4、cific interval of stress or strain, and because theactual fatigue life distribution is unknown, it is not recom-mended that (a) the S-N or -N curve be extrapolated outsidethe interval of testing, or (b) the fatigue life at a specific stressor strain amplitude be estimated below approximately the fif
5、thpercentile (P . 0.05). As alternative fatigue models andstatistical analyses are continually being developed, laterrevisions of this practice may subsequently present analysesthat permit more complete interpretation of S-N and -N data.2. Referenced Documents2.1 ASTM Standards:2E206 Definitions of
6、Terms Relating to Fatigue Testing andthe Statistical Analysis of Fatigue Data; Replaced byE 1150 (Withdrawn 1988)3E468 Practice for Presentation of Constant Amplitude Fa-tigue Test Results for Metallic MaterialsE513 Definitions of Terms Relating to Constant-Amplitude,Low-Cycle Fatigue Testing; Repla
7、ced by E 1150 (With-drawn 1988)3E606/E606M Test Method for Strain-Controlled FatigueTesting3. Terminology3.1 The terms used in this practice shall be used as definedin Definitions E206 and E513. In addition, the followingterminology is used:3.1.1 dependent variablethe fatigue life N (or the loga-rit
8、hm of the fatigue life).3.1.1.1 DiscussionLog (N) is denoted Y in this practice.3.1.2 independent variablethe selected and controlledvariable (namely, stress or strain). It is denoted X in thispractice when plotted on appropriate coordinates.3.1.3 log-normal distributionthe distribution of N whenlog
9、 (N) is normally distributed. (Accordingly, it is convenientto analyze log (N) using methods based on the normaldistribution.)3.1.4 replicate (repeat) testsnominally identical tests ondifferent randomly selected test specimens conducted at thesame nominal value of the independent variable X. Suchrep
10、licate or repeat tests should be conducted independently; forexample, each replicate test should involve a separate set of thetest machine and its settings.3.1.5 run outno failure at a specified number of loadcycles (Practice E468).3.1.5.1 DiscussionThe analyses illustrated in this practicedo not ap
11、ply when the data include either run-outs (orsuspended tests). Moreover, the straight-line approximation ofthe S-N or -N relationship may not be appropriate at long liveswhen run-outs are likely.3.1.5.2 DiscussionFor purposes of statistical analysis, arun-out may be viewed as a test specimen that ha
12、s either beenremoved from the test or is still running at the time of the dataanalysis.4. Significance and Use4.1 Materials scientists and engineers are making increaseduse of statistical analyses in interpreting S-N and -N fatiguedata. Statistical analysis applies when the given data can bereasonab
13、ly assumed to be a random sample of (or representa-tion of) some specific defined population or universe ofmaterial of interest (under specific test conditions), and it isdesired either to characterize the material or to predict theperformance of future random samples of the material (undersimilar t
14、est conditions), or both.1This practice is under the jurisdiction ofASTM Committee E08 on Fatigue andFracture and is the direct responsibility of Subcommittee E08.04 on StructuralApplications.Current edition approved Oct. 1, 2015. Published November 2015. Originallyapproved in 1980. Last previous ed
15、ition approved in 2010 as E739 10. DOI:10.1520/E0739-10R15.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.3T
16、he last approved version of this historical standard is referenced onwww.astm.org.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States15. Types of S-N and -N Curves Considered5.1 It is well known that the shape of S-N and -N curvescan depe
17、nd markedly on the material and test conditions. Thispractice is restricted to linear or linearized S-N and -Nrelationships, for example,log N 5 A1B S! or (1)log N 5 A1B ! orlog N 5 A1B logS! or (2)log N 5 A1B log!in which S and may refer to (a) the maximum value ofconstant-amplitude cyclic stress o
18、r strain, given a specificvalue of the stress or strain ratio, or of the minimum cyclicstress or strain, (b) the amplitude or the range of theconstant-amplitude cyclic stress or strain, given a specificvalue of the mean stress or strain, or (c) analogous informa-tion stated in terms of some appropri
19、ate independent (con-trolled) variable.NOTE 1In certain cases, the amplitude of the stress or strain is notconstant during the entire test for a given specimen. In such cases someeffective (equivalent) value of S or must be established for use inanalysis.5.1.1 The fatigue life N is the dependent (ra
20、ndom) variablein S-N and -N tests, whereas S or is the independent(controlled) variable.NOTE 2In certain cases, the independent variable used in analysis isnot literally the variable controlled during testing. For example, it iscommon practice to analyze low-cycle fatigue data treating the range ofp
21、lastic strain as the controlled variable, when in fact the range of totalstrain was actually controlled during testing. Although there may be somequestion regarding the exact nature of the controlled variable in certainS-N and -N tests, there is never any doubt that the fatigue life is thedependent
22、variable.NOTE 3In plotting S-N and -N curves, the independent variables Sand are plotted along the ordinate, with life (the dependent variable)plotted along the abscissa. Refer, for example, to Fig. 1.5.1.2 The distribution of fatigue life (in any test) is unknown(and indeed may be quite complex in
23、certain situations). Forthe purposes of simplifying the analysis (while maintainingsound statistical procedures), it is assumed in this practice thatthe logarithms of the fatigue lives are normally distributed, thatis, the fatigue life is log-normally distributed, and that thevariance of log life is
24、 constant over the entire range of theindependent variable used in testing (that is, the scatter in logNOTE 1The 95 % confidence band for the -N curve as a whole is based on Eq 10. (Note that the dependent variable, fatigue life, is plotted here alongthe abscissa to conform to engineering convention
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