ASTM A341 A341M-2000(2011)e1 Standard Test Method for Direct Current Magnetic Properties of Materials Using D-C Permeameters and the Ballistic Test Methods《使用直流磁导计和冲击试验方法的材料直流磁特性的标.pdf
《ASTM A341 A341M-2000(2011)e1 Standard Test Method for Direct Current Magnetic Properties of Materials Using D-C Permeameters and the Ballistic Test Methods《使用直流磁导计和冲击试验方法的材料直流磁特性的标.pdf》由会员分享,可在线阅读,更多相关《ASTM A341 A341M-2000(2011)e1 Standard Test Method for Direct Current Magnetic Properties of Materials Using D-C Permeameters and the Ballistic Test Methods《使用直流磁导计和冲击试验方法的材料直流磁特性的标.pdf(13页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: A341/A341M 00 (Reapproved 2011)1Standard Test Method forDirect Current Magnetic Properties of Materials Using D-CPermeameters and the Ballistic Test Methods1This standard is issued under the fixed designation A341/A341M; the number immediately following the designation indicates the yea
2、rof original adoption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval.A superscript epsilon () indicates an editorial change since the last revision or reapproval.This standard has been approved for use by agencies of the Departme
3、nt of Defense.1NOTECorrected text and Fig. 1 editorially in December 2011.1. Scope1.1 This test method provides dc permeameter tests for thebasic magnetic properties of materials in the form of bars, rods,wire, or strip specimens which may be cut, machined, orground from cast, compacted, sintered, f
4、orged, extruded,rolled, or other fabricated materials. It includes tests fordetermination of the normal induction under symmetricallycyclically magnetized (SCM) conditions and the hysteresisloop (B-H loop) taken under conditions of rapidly changing orsteep wavefront reversals of the direct current m
5、agnetic fieldstrength.1.2 This test method shall be used in conjunction withPractice A34/A34M.1.3 This test method covers a range of magnetic fieldstrength in the specimen from about 0.05 Oe 4 A/m up toabove 5000 Oe 400 kA/M through the use of severalpermeameters. The separate permeameters cover thi
6、s testregion in several overlapping ranges.1.4 Normal induction and hysteresis properties may bedetermined over the flux density range from essentially zero tointrinsic saturation for most materials.1.5 Recommendations of the useful magnetic field strengthrange for each of the permeameters are shown
7、 in Table 1.2Also, see Sections 3 and 4 for general limitations relative to theuse of permeameters.1.6 The symbols and abbreviated definitions used in this testmethod appear with Fig. 1 and in appropriate sections of thisdocument. For the official definitions, see Terminology A340.Note that the term
8、 flux density used in this document issynonymous with the term magnetic induction.1.7 WarningMercury has been designated by EPA andmany state agencies as a hazardous material that can causecentral nervous system, kidney, and liver damage. Mercury, orits vapor, may be hazardous to health and corrosiv
9、e tomaterials. Caution should be taken when handling mercury andmercury-containing products. See the applicable product Ma-terial Safety Data Sheet (MSDS) for details and EPAs website(http:/www.epa.gov/mercury/faq.htm) for additional informa-tion. Users should be aware that selling mercury or mercur
10、y-containing products, or both, in your state may be prohibited bystate law.1.8 The values and equations stated in customary cgs-emuand inch-pound or SI units are to be regarded separately asstandard. Within this standard, SI units are shown in bracketsexcept for the sections concerning calculations
11、 where there areseparate sections for the respective unit systems. The valuesstated in each system may not be exact equivalents; therefore,each system shall be used independently of the other. Combin-ing values from the two systems may result in nonconformancewith this standard.1.9 This standard doe
12、s 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.1This test method is under the juris
13、diction of ASTM Committee A06 onMagnetic Properties and is the direct responsibility of SubcommitteeA06.01 on TestMethods.Current edition approved Oct. 1, 2011. Published October 2011. Originallyapproved in 1969. Last previous edition approved in 2005 as A341/A341M 00(2005)1. DOI: 10.1520/A0341_A034
14、1M-00R11E01.2The boldface numbers in parentheses refer to a list of references at the end ofthis standard.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.2. Referenced Documents2.1 ASTM Standards:3A34/A34M Practice for Sampling and P
15、rocurement Testingof Magnetic MaterialsA340 Terminology of Symbols and Definitions Relating toMagnetic TestingA596/A596M Test Method for Direct-Current MagneticProperties of Materials Using the Ballistic Method andRing Specimens2.2 IEC Standard:Publication 60404-4, Ed. 2.0 Magnetic Materials Part 4:
16、Methods of Measurement of D.C. Magnetic Properties ofIron and Steel, IEC, 199542.3 Other Documents:NIST Circular No. 74, pg. 2695NIST Scientific Paper 117, SPBTA53. Significance and Use3.1 Permeameters require the use of yokes to complete themagnetic circuit and are therefore inherently less accurat
17、e thanring test methods. Refer to Test Method A596/A596M forfurther details on ring test methods. However, when testingcertain shapes as bars or when magnetic field strength in excessof 200 Oe 15.9 or more kA/m are required, permeameters arethe only practical means of measuring magnetic properties.3
18、.2 This test method is suitable for specification acceptance,service evaluation, research and development and design.3.3 When the test specimen is fabricated from a largersample and is in the same condition as the larger sample, it maynot exhibit magnetic properties representative of the originalsam
19、ple. In such instances the test results, when viewed incontext of past performance history, will be useful for judgingthe suitability of the material for the intended application.4. Interferences4.1 In general, permeameters do not maintain a uniformmagnetic field in either the axial or radial direct
20、ions around thetest specimen. The field gradients in both of these directionswill differ in the various permeameters.Also the H-sensing andB-sensing coils of the different permeameters are not identicalin area, in turns, or in length or identically located. Althoughtest specimens are prepared to hav
21、e uniform physical crosssection, they may have undetected nonuniform magnetic prop-erties radially or axially along the specimen length adjacent tothe H or B coils. Some permeameters may also introduceclamping strains into the test specimen. For the above reasonstest results obtained on a test speci
22、men with one type per-meameter may not agree closely with those obtained on thesame test specimen using another type of permeameter.5. Apparatus5.1 Because of the differences in physical construction ofthe various permeameters listed in Table 1, no standard list ofcomponents is given. When used with
23、 a particular type ofpermeameter, the components should conform to the generalrequirements listed below.Abasic schematic of a permeameteris shown in Fig. 1.5.2 PermeameterThe particular permeameter used shallbe of high quality construction. The yokes should be made ofhigh permeability alloy such as
24、oriented or nonoriented siliconiron or nickel-iron alloy, although low carbon steel or iron isacceptable in certain instances. The preferred yolk dimensionsare listed in the appended references (see Table 1). Deviationsfrom these dimensions should be such that the yolk is operatingat or below the po
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