ASTM E2534-2010 Standard Practice for Process Compensated Resonance Testing Via Swept Sine Input for Metallic and Non-Metallic Parts《使用正弦扫频输入法对金属和非金属部件进行工艺补偿共振试验的标准实施规程》.pdf
《ASTM E2534-2010 Standard Practice for Process Compensated Resonance Testing Via Swept Sine Input for Metallic and Non-Metallic Parts《使用正弦扫频输入法对金属和非金属部件进行工艺补偿共振试验的标准实施规程》.pdf》由会员分享,可在线阅读,更多相关《ASTM E2534-2010 Standard Practice for Process Compensated Resonance Testing Via Swept Sine Input for Metallic and Non-Metallic Parts《使用正弦扫频输入法对金属和非金属部件进行工艺补偿共振试验的标准实施规程》.pdf(8页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E2534 10Standard Practice forProcess Compensated Resonance Testing Via Swept SineInput for Metallic and Non-Metallic Parts1This standard is issued under the fixed designation E2534; the number immediately following the designation indicates the year oforiginal adoption or, in the case o
2、f 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 describes a general procedure for using theprocess compensated resonance testing
3、 (PCRT) via swept sineinput method to identify metallic and non-metallic partsresonant pattern differences that can be used to indentify partswith anomalies causing deficiencies in the expected perfor-mance of the part in service. This practice is intended for usewith instruments capable of exciting
4、, measuring, recording,and analyzing multiple whole body mechanical vibrationresonant frequencies within parts exhibiting acoustical ringingin the audio, or ultrasonic, resonant frequency ranges, or both.PCRT is used in the presence of manufacturing processvariance to distinguish acceptable parts fr
5、om those containingsignificant anomalies in physical characteristics expected tosignificantly alter the performance. Such physical characteris-tics include, but are not limited to, cracks, voids, porosity,shrink, inclusions, discontinuities, grain and crystalline struc-ture differences, density rela
6、ted anomalies, heat treatmentvariations, material elastic properties differences, residualstress, and dimensional variations.1.2 This practice uses inch pound units as primary units. SIunits are included in parentheses for reference only, and aremathematical conversions of the primary units.1.3 This
7、 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 to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents
8、2.1 ASTM Standards:2E1316 Terminology for Nondestructive ExaminationsE2001 Guide for Resonant Ultrasound Spectroscopy forDefect Detection in Both Metallic and Non-metallic Parts3. Terminology3.1 Definitions:The definitions of terms relating to conventional ultrasonicexamination can be found in Termi
9、nology E1316.3.2 Definitions of Terms Specific to This Standard:3.2.1 resonant ultrasound spectroscopy (RUS)Basic RUS(1)3was originally applied in fundamental research applica-tions in physics and materials science. A few other recogniz-able names include acoustic resonance spectroscopy, acousticres
10、onant inspection, and resonant inspection. Guide E2001documents RUS extensively. A nondestructive examinationmethod that employs the measurement and analysis of acous-tic, or ultrasound resonance patterns, or both, for the identifi-cation of acceptable variations in the physical characteristics ofte
11、st parts in production environments. In this procedure anisolated, rigid part is caused to resonate. Certain resonances aremeasured and compared to a previously defined acceptablepattern combination of resonances. Based on this comparison,the part is judged to be acceptable or, if it does not confor
12、m tothe established pattern, unacceptable.3.2.2 process compensated resonant testing (PCRT)anondestructive examination method which is an enhancementto RUS providing greater ability to identify resonant frequencyshifts due to flaws and unacceptable variations in componentsin the presence of acceptab
13、le resonant frequency shifts ac-countable to normal manufacturing process variations. Theprocess employs the measurement and analysis of acoustic orultrasound, or both resonance patterns for the identification ofunacceptable variations in the physical properties of examinedparts in production enviro
14、nments. In classic RUS, this proce-dure in an isolated, rigid part is caused to resonate. resonancesare measured and compared to a previously defined acceptablepattern of resonances. Based on this comparison the part isjudged to be acceptable or, if it does not conform to theestablished pattern, to
15、be, by default, unacceptable.1This practice is under the jurisdiction of ASTM Committee E07 on Nonde-structive Testing and is the direct responsibility of Subcommittee E07.06 onUltrasonic Method.Current edition approved March 1, 2010. Published March 2010. DOI: 10.1520/E2534-102For referenced ASTM s
16、tandards, 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.3The boldface numbers in parentheses refer to a list of references at the end ofthi
17、s practice.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.3.2.3 teaching seta group of like components includingexamples of known acceptable and known unacceptable com-ponents representative of the range of acceptable variabilityand
18、 unacceptable variability.3.2.4 sorta software program capable of classifying acomponent as acceptable or unacceptable.3.2.5 classificationthe labeling of a teaching set of partsas acceptable or unacceptable.3.2.6 false negative, npart failing the sort but deemed byother method of post test/analysis
19、 to have acceptable orconforming specifications3.2.7 false positive, npart passing the sort but exhibiting aflaw (either inside the teaching set of flaws or possibly outsidethe teaching set range of flaws) or nonconforming to specifi-cation.3.2.8 broadbandthe range of frequencies, excitation pa-rame
20、ters, and data collection parameters developed specificallyfor a particular part type.3.2.9 resonance spectrathe recorded collection of reso-nance frequency data, including frequency peak locations andthe characteristics of the peaks, for a particular part.3.2.10 work instructionstepwise instruction
21、s developedfor each examination program detailing the order and applica-tion of operations for PCRT examination of a part.3.2.11 margin parta single part representative of a parttype that is used to determine measurement repeatability andfor system verification.4. Summary of Practice4.1 Introduction
22、:4.1.1 Many variations on resonant testing have been used asan applied nondestructive examination tool in simple applica-tions discriminating structural anomalies that significantly alterperformance and are much greater than those seen in normalproduction parts as they vary in the population. The de
23、tails ofthis basic form of resonant testing are outlined in Guide E2001.4.1.2 Process compensated resonant testing (PCRT) is aprogressive development of the fundamental principles ofRUS, and can employ various methods for enhancing thediscrimination capability of RUS. Throughout the 1990s,applicatio
24、n of RUS for production NDT led to better under-standing of the challenges associated with differentiatingresonance variations caused by anomalies in a part fromresonance variations resulting from normal and acceptableprocess variations such as mass, density and dimension varia-tions within the acce
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