ASTM E467-1998a(2004) Standard Practice for Verification of Constant Amplitude Dynamic Forces in an Axial Fatigue Testing System《轴向疲劳试验系统中恒振幅动态力验证的标准实施规范》.pdf
《ASTM E467-1998a(2004) Standard Practice for Verification of Constant Amplitude Dynamic Forces in an Axial Fatigue Testing System《轴向疲劳试验系统中恒振幅动态力验证的标准实施规范》.pdf》由会员分享,可在线阅读,更多相关《ASTM E467-1998a(2004) Standard Practice for Verification of Constant Amplitude Dynamic Forces in an Axial Fatigue Testing System《轴向疲劳试验系统中恒振幅动态力验证的标准实施规范》.pdf(10页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E 467 98a (Reapproved 2004)Standard Practice forVerification of Constant Amplitude Dynamic Forces in anAxial Fatigue Testing System1This standard is issued under the fixed designation E 467; the number immediately following the designation indicates the year oforiginal adoption or, in t
2、he case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.1. Scope1.1 This practice covers procedures for the dynamic verifi-cation of cyclic force amplit
3、ude measurement accuracy duringconstant amplitude testing in an axial fatigue testing system. Itis based on the premise that force verification can be done withthe use of a strain gaged elastic element. Use of this practicegives assurance that the accuracies of dynamic force readingsfrom the test ma
4、chine, at the time of the test, after any userapplied correction factors, fall within the limits recommendedin Section 9. It does not address static accuracy which mustfirst be addressed using Practices E 4 or equivalent.1.2 Verification is specific to a particular test machineconfiguration and spec
5、imen. This standard is recommended tobe used for each configuration of testing machine and speci-men. Where dynamic correction factors are to be applied to testmachine force readings in order to meet the accuracy recom-mended in Section 9, the verification is also specific to thecorrection process u
6、sed. Finally, if the correction process istriggered and/or performed by a person, then the verification isspecific to that individual as well.1.3 It is recognized that performance of a full verificationfor each configuration of testing machine and specimen con-figuration could be prohibitively time
7、consuming and/or ex-pensive. Annex A1 provides methods for estimating the dy-namic accuracy impact of test machine and specimenconfiguration changes that may occur between full verifica-tions. Where test machine dynamic accuracy is influenced by aperson, estimating the dynamic accuracy impact of all
8、 indi-viduals involved in the correction process is recommended.This practice does not specify how that assessment will bedone due to the strong dependence on owner/operators of thetest machine.1.4 This practice is intended to be used periodically. Con-sistent results between verifications is expect
9、ed. Failure toobtain consistent results between verifications using the samemachine configuration implies uncertain accuracy for dynamictests performed during that time period.1.5 This practice addresses the accuracy of the testingmachines indicated forces as compared to a dynamometersindicated dyna
10、mic forces. For the purposes of this verification,the dynamometers indicated dynamic forces will be consid-ered the true forces. Phase lag between dynamometer and forcetransducer indicated forces is not within the scope of thispractice.1.6 The results of either the Annex A1 calculation or the fullex
11、perimental verification must be reported per Section 10 ofthis standard.1.7 This standard does not address the issue of a testmachines control accuracy. It does not provide assurance thatthe force obtained equals the force commanded within thespecified accuracy. The correlation being verified is bet
12、weenthe test machines indicated force and the true force on the testspecimen as measured by a dynamometer.1.8 This practice provides no assurance that the shape of theactual waveform conforms to the intended waveform withinany specified tolerance.1.9 This standard is principally focused at room temp
13、eratureoperation. It is believed there are additional issues that must beaddressed when testing at high temperatures. At the presenttime, this standard practice must be viewed as only a partialsolution for high temperature testing.2. Referenced Documents2.1 ASTM Standards:2E 4 Practices for Force Ve
14、rification of Testing MachinesE 6 Terminology Relating to Methods of Mechanical Test-ingE 1823 Terminology Relating to Fatigue and Fracture Test-ingE 1942 Guide for Evaluating Data Acquisition SystemsUsed in Cyclic Fatigue and Fracture Mechanics Testing1This practice is under the jurisdiction of AST
15、M Committee E08 on Fatigue andFracture and is the direct responsibility of Subcommittee E08.03 on AdvancedApparatus and Techniques.Current edition approved May 1, 2004. Published June 2004. Originallyapproved in 1972. Last previous edition approved in 1998 as E 467 98a.2For referenced ASTM standards
16、, 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.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19
17、428-2959, United States.2.2 Military Standard:31312-B Fastener Test Methods2.3 ANSI Standard:4Z540-1-1994 Calibration Laboratories and Measuring andTest EquipmentGeneral Requirements2.4 NCSL Standard:4Publication 940830/1600 NCSL Glossary of MetrologyRelated Terms3. Terminology3.1 Terminology used i
18、n this practice is in accordance withTerminology E 1823. Definitions provided in this practice areconsidered either unfamiliar or not included in TerminologyE 1823.3.2 Definitions:3.2.1 accuracy, nfor the purpose of this practice it shallbe defined as the degree of agreement between the indicateddyn
19、amic force (from the testing machine, after any necessarycorrections have been applied) and dynamic dynamometerforce (from the dynamometer instrumentation). The expectedaccuracy is defined in 9.1.3.2.2 amplitude, none-half the peak-to-peak measurementof the cyclic waveform.3.2.3 cal factor, nthe con
20、version factor between thedynamometer force and the indicated force.3.2.4 conditioned force, nthe high level voltage or digitaldata available from the dynamometer or force transducerssignal conditioning instrumentation; it is frequently of valueduring dynamic verification as it can be more convenien
21、tlymonitored by stand alone measurement instrumentation.3.2.5 corrected force, nthe force obtained after applying adynamic correction factor to the force transducers indicatedforce.3.2.6 data acquisition equipment, nthe equipment used toconvert a conditioned force to an indicated force.3.2.7 dynamic
22、 dynamometer forces, nthe maximum andminimum forces produced in the dynamometer during aportion of a dynamic test.3.2.8 dynamic errors, nerrors in the force transducerscorrected force output that occur due to dynamic operation(with specimen bending errors intentionally corrected out).3.2.9 dynamic i
23、ndicated forces, nthe maximum and mini-mum forces reported by the test machine during a portion of adynamic test. These values are typically obtained using anoscilloscope, peak-valley meter, or files generated by comput-erized data acquisition.3.2.10 dynamometer, nan elastic calibration device usedt
24、o indicate the forces applied by a fatigue testing system duringdynamic operation. A strain gaged specimen is often used asthe dynamometer. Suitable transducer instrumentation is alsorequired to provide accurate readings over the intended fre-quency and force range. (Refer to Practice E 467, Annex A
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