ASTM A342 A342M-2014 Standard Test Methods for Permeability of Weakly Magnetic Materials《弱磁材料透气性的标准试验方法》.pdf
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1、Designation: A342/A342M 04 (Reapproved 2012)A342/A342M 14Standard Test Methods forPermeability of FeeblyWeakly Magnetic Materials1This standard is issued under the fixed designation A342/A342M; the number immediately following the designation indicates the yearof original adoption or, in the case of
2、 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 U.S. Department of Defense.1. Scope1.1 These tes
3、t methods cover threefour procedures for determination of the permeability relative permeability2 of materialshaving a permeability not exceeding 4.0.6.0.1.2 The test methods covered are as follows:1.2.1 Test Method 1 1Fluxmetric Method is suitable for materials with permeabilities between 1.0 and 4
4、.0. This methodpermits the user to select the magnetic field strength at which the permeability is to be measured.1.2.2 Test Method 2 2 is suitable for measuring the permeability of paramagnetic materialsPermeability of ParamagneticMaterials having a permeability less than 1.05.has been eliminated a
5、s an acceptable method of test.1.2.3 Test Method 3 3Low Mu Permeability Indicator is a suitable means of for measuring the permeability of a material as“less than” or “greater than” that of calibrated standard inserts with permeability between 1.01 and 6.0, as designated for use ina Low-Mu Permeabil
6、ity Indicator.3 In this method, a small volume of specimen is subjected to a local magnetic field that variesin magnitude and direction, so it is not possible to specify the magnetic field strength at which the measurement is made.1.2.4 Test Method 4Flux Distortion is suitable for materials with per
7、meability between 1.0 and 2.0. In this method, a smallvolume of specimen is subjected to a local magnetic field that varies in magnitude and direction, so it is not possible to specifythe magnetic field strength at which the measurement is made.41.2.5 Test Method 5Vibrating Sample Magnetometry is su
8、itable for materials with permeability between 1.0 and 4.0. This testmethod permits the user to select the magnetic field strength at which the permeability is to be measured.1.3 Materials typically tested by these methods such as austenitic stainless steels may be weakly ferromagnetic. That is, the
9、magnetic permeability is dependent on the magnetic field strength. As a consequence, the results obtained using the differentmethods may not closely agree with each other. When using Methods 1 and 5, it is imperative to specify the magnetic field strengthor range of magnetic field strengths at which
10、 the permeabilities have been determined.1.4 The values and equations stated in customary (cgs-emu and inch-pound) or SI units are to be regarded separately asstandard. Within this standard, SI units are shown in brackets except for the sections concerning calculations where there areseparate sectio
11、ns for the respective unit systems. The values stated in each system may not be exact equivalents; therefore, eachsystem shall be used independently of the other. Combining values from the two systems may result in nonconformance with thisstandard.1.5 This standard does not purport to address all of
12、 the safety concerns, if any, associated with its use. It is the responsibilityof the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatorylimitations prior to use.1 These test methods are under the jurisdiction of ASTM Committee A06
13、 on Magnetic Properties and are the direct responsibility of Subcommittee A06.01 on TestMethods.Current edition approved May 1, 2012May 1, 2014. Published July 2012May 2014. Originally approved in 1949. Last previous edition approved in 20042012 asA342/A342M04. 04 (2012). DOI: 10.1520/A0342_A0342M-0
14、4R12.10.1520/A0342_A0342M-14.2 Test Methods 1 and 25 actually measure magnetic susceptibility. The permeability () relative permeability (r) is related to the susceptibility () by the equations: = 1 + 4pi (cgs-emu)r = 1 + (SI)The term permeability has been retained in these test methods because of i
15、ts widespread commercial and technological usage.3 The sole source of supply of the apparatus known to the committee at this time is Low-Mu Permeability Indicator, manufactured by Severn Engineering Co., Inc., 555Stage Rd., Suite 1A, Auburn, AL 36830, http:/. (Indicators can be returned for recalibr
16、ation.) If you are aware of alternative suppliers, pleaseprovide this information to ASTM International Headquarters. Your comments will receive careful consideration at a meeting of the responsible technical committee,1 whichyou may attend.4 The sole source of supply of the apparatus known to the C
17、ommittee at this time is the Magnetoscop manufactured by INSTITUT DR. POERSTER GmbH Bi = intrinsic induction of the test specimen, G; andH = magnetic field strength, Oe.8. Calculation (SI Units)8.1 The output from the fluxmeter is the magnetic polarization J. The relative permeability is calculated
18、as follows:r 5 11 JmH(2)where:r = relative permeability of the test specimen;J = magnetic polarization, T;m = 4pi 107 H/m; andH = magnetic field strength, A/m.9. Precision and Bias of Test Method 19.1 The precision and bias of this test method have not been established by interlaboratory study.9.2 T
19、he measured permeabilitiespermeability will be less than theirthe true valuesvalue due to the demagnetizing field arisingfrom the samplefield, which depends on the specimen dimensional ratio. This leads not only to an overestimation of the magneticfield strength but also reduces the flux linkages in
20、 the B-coil. Provided the samplespecimen and coil dimensional ratios are asspecified in 4.2.2 and 5.1, the largest negative error in 1 as a result of demagnetizing effects6,7 will be 3 % for 1 0.3 in. 8 mm thick, the flat test area where the probe will be placed should have diameter 0.8 in. 20 mm an
21、dcurved surfaces should have radius of curvature 1.6 in. 40 mm. When testing specimens with dimensions smaller than theseapproximate limits, the instrument will indicate permeability different than the actual value.18. Procedure18.1 Best results are obtained when the probe is in a fixed location and
22、 the specimen is moved into contact with the probe.18.2 Absolute Measurements:18.2.1 Identify a location on the test piece which meets the dimensional requirements stated by the instrument manufacturer.18.2.2 Connect a suitable probe to the instrument, as recommended by the instrument manufacturer.1
23、8.2.3 Calibrate the instrument/probe against a calibration standard per manufacturer recommendations.18.2.4 Place the test piece in contact with the probe and record the display reading.18.3 Comparative Measurements:18.3.1 Identify a location on the test piece.18.3.2 Calibrate the instrument/probe a
24、gainst the reference object to which the comparison will be made.18.3.3 Place the test piece in contact with the probe and record the display reading.FIG. 3 Schematic Illustration of Low Permeability IndicatorFlux Distortion Method Method 4A342/A342M 14719. Precision and Bias19.1 The precision and b
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