ASTM B499-1996(2002) Standard Test Method for Measurement of Coating Thicknesses by the Magnetic Method Nonmagnetic Coatings on Magnetic Basis Metals《用磁性法测量磁性基底金属的非磁性镀层厚度的标准试验方法》.pdf
《ASTM B499-1996(2002) Standard Test Method for Measurement of Coating Thicknesses by the Magnetic Method Nonmagnetic Coatings on Magnetic Basis Metals《用磁性法测量磁性基底金属的非磁性镀层厚度的标准试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM B499-1996(2002) Standard Test Method for Measurement of Coating Thicknesses by the Magnetic Method Nonmagnetic Coatings on Magnetic Basis Metals《用磁性法测量磁性基底金属的非磁性镀层厚度的标准试验方法》.pdf(4页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: B 499 96 (Reapproved 2002)Endorsed by AmericanElectroplaters SocietyEndorsed by NationalAssociation of Metal FinishersStandard Test Method forMeasurement of Coating Thicknesses by the MagneticMethod: Nonmagnetic Coatings on Magnetic Basis Metals1This standard is issued under the fixed d
2、esignation B 499; the number immediately following the designation indicates the year oforiginal adoption or, in the 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 revis
3、ion or reapproval.This standard has been approved for use by agencies of the Department of Defense.1. Scope1.1 This test method covers the use of magnetic instrumentsfor the nondestructive measurement of the thickness of non-magnetic coatings over ferrous or other magnetic base metals.NOTE 1Autocata
4、lytically deposited nickel-phosphorus alloys contain-ing more than 8 % phosphorus are sufficiently nonmagnetic to bemeasured by this test method, as long as the measurement is made priorto any heat treatment.1.2 These instruments measure either the magnetic attrac-tion between a magnet and the basis
5、 metal, as influenced by thepresence of the coating, or the reluctance of a magnetic-fluxpath passing through the coating and the basis metal.1.3 Measurements made in accordance with this test methodwill be in compliance with the requirements of ISO Interna-tional Standard 2178 as printed in 1982.1.
6、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-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Doc
7、uments2.1 International Standard:ISO 2178 Non-Magnetic Coatings on Magnetic SubstrateMeasurement of Coating ThicknessMagnetic Method23. Significance and Use3.1 The thickness of a coating is often critical to itsperformance. For most nonferrous coatings on steel, themagnetic method is reliable for me
8、asuring coating thicknessnondestructively and is suitable for specification acceptancetesting and SPC/SQC applications. The test method requiresthat the magnetic properties of the substrate used during thecalibration be the same as that of the test specimen.4. Factors Affecting the Measuring Accurac
9、y4.1 The following factors affect the accuracy of a coatingthickness measurement:4.1.1 Coating ThicknessInherent to the test method is ameasurement uncertainty that, for thin coatings, is constant andindependent of the coating thickness. The magnitude of thismeasurement uncertainty is primarily a fu
10、nction of test piecesurface finish (see 4.1.6 on surface roughness). For thicknessesgreater than about 25 m, this uncertainty is proportional to thecoating thickness.4.1.2 Magnetic Properties of the Basis MetalMagneticthickness measurements are affected by variations in themagnetic properties of the
11、 basis metal. (For practical purposes,magnetic variations in low-carbon steel can often be consid-ered to be insignificant. To avoid the influences of severe orlocalized heat treatments and cold working, the instrumentshould be calibrated using a calibration standard having a basismetal with the sam
12、e magnetic properties as that of the testspecimen or, preferably and if available, with a sample of thepart to be tested before application of the coating.)4.1.3 Basis Metal ThicknessFor each instrument, there isa critical thickness of the basis metal above which themeasurements will not be affected
13、 by an increase in thethickness of the basis metal. Since it depends on the instrumentprobe (Note 2) and the nature of the basis metal, its valueshould be determined experimentally if not supplied by themanufacturer.NOTE 2In this method “instrument probe” will also include the term“magnet.”4.1.4 Edg
14、e EffectsThe method is sensitive to abruptchanges in the surface contour of the test specimen. Therefore,measurements made too near an edge or inside corner will notbe valid unless the instrument is specifically calibrated for sucha measurement. The effect may extend to about 20 mm fromthe discontin
15、uity, depending on the instrument.4.1.5 CurvatureThe measurements are affected by thecurvature of the test specimen. The influence of curvaturevaries considerably with the make and type of instrument butalways becomes more pronounced as the radius of curvaturedecreases. Instruments with two-pole pro
16、bes may also producedifferent readings if the poles are aligned in planes parallel or1This test method is under the jurisdiction of ASTM Committee B08 on Metallicand Inorganic Coatings and is the direct responsibility of Subcommittee B08.10 onGeneral Test Methods.Current edition approved April 10, 1
17、996. Published June 1996. Originallypublished as B 499 69. Last previous edition B 499 88. Replaces portions ofA 219.2Available from American National Standards Institute, 11 W. 42nd St., 13thFloor, New York, NY 10036.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohock
18、en, PA 19428-2959, United States.perpendicular to the axis of a cylindrical surface. A similareffect can occur with a single-pole probe if the tip is unevenlyworn.4.1.6 Surface RoughnessMeasurements are influenced bythe surface topography of the basis metal and coating. Surfaceroughness becomes sign
19、ificant when the degree of roughness isgreater than 10 % of the coating thickness, causing increasedscatter in measurements. Therefore, it is necessary, on a roughor scratched surface, to make a greater number of measure-ments at different positions to obtain an average value that isrepresentative o
20、f the mean coating thickness. If the basis metalis rough, it may also be necessary to check the zero of theinstrument at several positions on a portion of the uncoated,rough, basis metal.4.1.7 Direction of Mechanical Working of the Basis MetalMeasurements made by an instrument having a two-pole prob
21、eor an unevenly worn single-pole probe may be influenced bythe direction in which the magnetic basis metal has beensubjected to mechanical working (such as rolling), the readingchanging with the orientation of the probe on the surface.4.1.8 Residual MagnetismResidual magnetism in the ba-sis metal af
22、fects the measurements made by instruments whichemploy a stationary magnetic field. Its influence on measure-ments made by reluctance instruments employing an alternat-ing magnetic field is much smaller.4.1.9 Stray Magnetic FieldsStrong stray magnetic fields,such as are produced by various types of
23、electrical equipment,can seriously interfere with the operation of magnetic thicknessinstruments.4.1.10 Foreign ParticlesMagnetic instruments of alltypes must make physical contact with the test surface and are,therefore, sensitive to foreign material that prevents intimatecontact between probe and
24、coating surface. Both the testsurface and instrument probe should be kept free of foreignmaterial.4.1.11 Conductivity of CoatingSome magnetic instru-ments work at frequencies between 200 and 2000 Hz. At thesefrequencies, eddy currents produced in thick, highly conduc-tive coatings may interfere with
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