ASTM E821-2016 9066 Standard Practice for Measurement of Mechanical Properties During Charged-Particle Irradiation《带电粒子辐照过程中机械性能测量的标准实施规程》.pdf
《ASTM E821-2016 9066 Standard Practice for Measurement of Mechanical Properties During Charged-Particle Irradiation《带电粒子辐照过程中机械性能测量的标准实施规程》.pdf》由会员分享,可在线阅读,更多相关《ASTM E821-2016 9066 Standard Practice for Measurement of Mechanical Properties During Charged-Particle Irradiation《带电粒子辐照过程中机械性能测量的标准实施规程》.pdf(8页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E821 16Standard Practice forMeasurement of Mechanical Properties During Charged-Particle Irradiation1This standard is issued under the fixed designation E821; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of
2、 last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.PART IEXPERIMENTAL PROCEDURE1. Scope1.1 This practice covers the performance of mechanicaltests on materials being irradiated wit
3、h charged particles.Thesetests are designed to provide an understanding of the effects ofneutron irradiation on the mechanical behavior of materials.Practices are described that govern the test material, theparticle beam, the experimental technique, and the damagecalculations. Reference should be ma
4、de to other ASTMstandards, especially Practice E521. Procedures are describedthat are applicable to creep and creep rupture tests made intension and torsion test modes.21.2 The word simulation is used here in a broad sense toimply an approximation of the relevant neutron irradiationenvironment. The
5、degree of conformity can range from poor tonearly exact. The intent is to produce a correspondencebetween one or more aspects of the neutron and chargedparticle irradiations such that fundamental relationships areestablished between irradiation or material parameters and thematerial response.1.3 The
6、 values stated in SI units are to be regarded asstandard. No other units of measurement are included in thisstandard.1.4 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 to establish appro-priat
7、e safety and health practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:3E170 Terminology Relating to Radiation Measurements andDosimetryE521 Practice for Neutron Radiation Damage Simulation byCharged-Particle Irradiation3. Term
8、inology3.1 Definitions:3.1.1 Descriptions of relevant terms are found in Terminol-ogy E170.4. Specimen Characterization4.1 Source Material Characterization:4.1.1 The source of the material shall be identified. Thechemical composition of the source material, as supplied by thevendor or of independent
9、 determination, or both, shall bestated. The analysis shall state the quantity of trace impurities.The material, heat, lot, or batch, etc., number shall be stated forcommercial material. The analytical technique and composi-tional uncertainties should be stated.4.1.2 The material form and history su
10、pplied by the vendorshall be stated. The history shall include the deformationprocess (rolling, swaging, etc.), rate, temperature, and totalextent of deformation (given as strain components or geometri-cal shape changes). The use of intermediate anneals duringprocessing shall be described, including
11、 temperature, time,environment, and cooling rate.4.2 Specimen Preparation and Evaluation:4.2.1 The properties of the test specimen shall represent theproperties of bulk material. Since thin specimens usually willbe experimentally desirable, a specimen thickness that yieldsbulk properties or informat
12、ion relatable to bulk propertiesshould be selected. This can be approached through either of1This practice is under the jurisdiction of ASTM Committee E10 on NuclearTechnology and Applications and is the direct responsibility of SubcommitteeE10.08 on Procedures for Neutron Radiation Damage Simulatio
13、n.Current edition approved Oct. 1, 2016. Published December 2016. Originallyapproved in 1981. Last previous edition approved in 2009 as E821 96 (2009).DOI: 10.1520/E0821-16.2These practices can be expanded to include mechanical tests other than thosespecified as such experiments are proposed to Subc
14、ommittee E10.08.3For 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.Copyright ASTM International, 100 Barr Harbor
15、 Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States1two techniques: (1) where the test specimen properties exactlyequal bulk material properties; (2) where the test specimenproperties are directly relatable to bulk properties in terms ofdeformation mechanisms, but a size effect (sur
16、face, texture,etc.) is present. For the latter case, the experimental justifica-tion shall be reported.4.2.2 The specimen shape and nominal dimensions shall bestated and illustrated by a drawing. Deviations from ASTMstandards shall be stated. The dimensional measurement tech-niques and the experimen
17、tal uncertainty of each shall be stated.The method of specimen preparation, such as milling, grinding,etc., shall be stated.The degree of straightness, flatness, surfacecondition, edges, fillets, etc., shall be described. The method ofgripping the specimen during the test shall be stated and,prefera
18、bly, illustrated by a drawing.4.2.3 The heat treatment conditions such as time,temperature, atmosphere, cooling rate, etc., shall be stated.Because of the small specimen dimensions, it is essential toanneal in a non-contaminating environment. Reanalysis for O,N, C, and other elements that are likely
19、 to change in concen-tration during heat treatment is recommended.4.2.4 Special care shall be exercised during specimen prepa-ration to minimize surface contamination and irregularitiesbecause of the possible effect the surface can have on the flowproperties of small specimens. Visible surface conta
20、minationduring heat treatment shall be reported as a discoloration or,preferably, characterized using surface analysis technique. It isrecommended that surface roughness be characterized.4.2.5 The preirradiation microstructure shall be thoroughlyevaluated and reported, including grain size, grain sh
21、ape,crystallographic texture, dislocation density and morphology,precipitate size, density, type, and any other microstructuralfeatures considered significant. When reporting TEM results,the foil normal and diffracting conditions shall be stated. Thespecimen preparation steps for optical and transmi
22、ssion elec-tron microscopy shall be stated.4.2.6 The preirradiation mechanical properties shall be mea-sured and reported to determine deviations from bulk behaviorand to determine baseline properties for irradiation measure-ments. It is recommended that creep rates be measured for eachspecimen befo
23、re and after irradiation. The thermal creep rateshall be obtained under conditions as close as possible to thoseexisting during irradiation. The temperature, strain rate,atmosphere, etc., shall be stated.4.2.7 It is recommended that other material propertiesincluding microhardness, resistivity ratio
24、, and density be mea-sured and reported to improve interlaboratory comparison.4.3 Irradiation Preconditioning:4.3.1 Frequently the experimental step preceding charged-particle irradiation will involve neutron irradiation or heliumimplantation. This section contains procedures that character-ize the
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