BS M 40-1972 Methods for measuring coating thickness by non-destructive testing《用无损试验法测量涂层厚度的方法》.pdf
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1、UDC 629.7.018 : 620.179 : 629.7.023.22 M. 40, February, 1972 INCORPORATED BY ROYAL CHARTER Tekphone: 01429 9ooo BWTXSH STANDARDS UVSTITUTION 2 PARK STREET, LONDON W1A 2BS Tela: 266933 BRITISH STANDARD : AEROSPACE SERIES METHODS FOR MEASURING COATING THICKNESS BY NON-DESTRUCTIVE TESTING CONTENTS Fore
2、word METHODS 1. Scope 2. Terms and definitions 3. Classification of coatings and substrates 4. Underlying principles and applications of methods of measurement 5. General limitations 6. Safety precautions 7. Approvals 8. Testing procedures 9. Calibration standards Page 1 2 2 2 APPENDIX A. Applicable
3、 methods of non-destructive testing 8 FOREWORD This British Standard, prepared under the authority of the Aerospace Industry Standards Committee, is one of a series for the non-destructive testing of aerospace materials, components and structures. Other standards in this series cover radiographic, m
4、agnetic particle, etch and penetrant inspection methods. For the purposes of this standard, combinations of coating and substrate are classified in association with the available methods of measuring coating thickness, and the basic princi- ples of the methods of measurement by means of non-destruct
5、ive testing techniques are described together with the procedures for their application. The standard is not intended to be used as a level of acceptance or rejecticn as both of these aspects should be covered in an appropriate application standard or be agreed between the interested partie s. metho
6、ds., being complementary to one another, should always be considered in relationship to testing as a whole. When non-destructive testing methods or techniques are specified for measuring coating thickness, the most suitable method and amount of inspection compatible with the ultimate application for
7、 the product should be employed. Bearing in mind that the characteristics of indi- vidual types of equipment can vary, it is also essential for the operator to be fully conversant with the equipment used. This standard makes reference to the following: BS 204. Glossary of terms used in telecommunica
8、- tion (including radio) and electronics. BS 205. Glossary of terms used in electrical engine er ing. BS 3683. Glossary of terms used in non-destructive testing. BS 4758. Electroplated coatings of nickel for (ir 3 I I I- - _ BSI M*40 72 lb24bb9 O099393 3 W I M. 40, February, 1972 METHODS 1. SCOPE 1.
9、1 This British Standard is concerned with methods for the measurement by non-destructive means of the thickness of single coatings, such as paint or plating on metallic substrates, and applies both to the inspection of components during their manufacturing stages and also when subsequently in servic
10、e. 1.2 While one of the methods described can be applied to the estimation of the thickness of anodic coatings on aluminium alloys, the general measurement of the depth of conversion coatings, of corrosion, of case hardening and of decarburiza- tim is not considered, 1.3 The standard does not specif
11、y checks on the physical condition of the coatings, e.g., on their surface texture, continuity or adhesion, and it should be borne in mind that variation in these factors may affect die accuracy of thickness mea sur emen t. 2. TERMS AND DEFINITIONS 2.1 For the purposes of this British Standard, the
12、terms and definitions given in BS 3683 apply. Attention is also drawn to BS 204 and BS 205. 2.2 Unless otherwise stated, the terms conducting and magnetic refer specifically to electrically conducting and magnetic electrically conducting properties of materials respectively. 2.3 In addition, by agre
13、ement means that specific agreement has been reached between the purchaser and the supplier, and any inspecting authority concerned. 3. CLASSIFICATION OF COATINGS AND SUBSTRATES 3.1 The applicability of the available methods of measurement by means of non-destructive testing depends on the particula
14、r combination of coating and subs trate under consideration. These com- binations, together with examples given in paren- theses, include the following: (1) Non-conducting coatings on non-magnetic conducting subs trates. (Paint or plas tics on aluminium alloys.) (2) Non-conducting coatings on magnet
15、ic sub- s trates. (Paint or pas tics on s teel.) (3) Non-magnetic conducting coatings on non- magnetic conducting subs trates. (Chromium on bras s.) (4) Non-magnetic coatings on non-conducting substrates. (Chromiuni on plastics.) (5) Non-magnetic conducting coatings on magnetic substrates. (Chromium
16、 on steel.) (6) Magnetic coatings on non-magnetic conduct- ing substrates. (Nickel on stainless steel or brass.) 3 I (7) Magnetic coatings on magnetic substrates, (Nickel on steel.) (8) Magnetic coatings on non-conducting sub- strates. (Nickel on plastics.) 3.2 Attention is drawn to Appendix A in wh
17、ich a convenient means of identifying the methods which can be applied to any particular coating-subs trate combination has been tabulated. Although a number of methods are listed for each general coating- substrate combination, it should not be inferred that each method will necessarily be suitable
18、 for every material combination eligible for inclusion in that particular coating-subs trate group. 4. UNDERLYING PRINCIPLES AND APPLICATIONS OF METHODS OF MEASUREMENT 4.1 Eddy current method 4.1.1 The factors which govern the effective reactance and resistance of the test coil in eddy current inspe
19、ction include: (1) the size and shape of the test coil, (2) the size and shape of the workpiece, (3) the frequency of the alternating current in (4) the electrical conductivity, magnetic perme- (5) temperature, (6) the coupling or separation between the coil and the surface of the workpiece. 4.1.2 I
20、f the influence of the other factors remains sensibly constant, the last mentioned effect can be used to measure the thickness of non-conducting coatings on non-magnetic or magnetic substrates, If the thicknesses and relative electrical conducti- vities of the coating and substrate are suitable the
21、method may also be applied to the measurement of non-magnetic conducting coatings on a non- magnetic conducting base. 4.2 Magnetic attraction method 4.2.1 In the magnetic attraction method, one pole of a permanent magnet is placed in contact with non-magnetic coatings on magnetic subs trates. The no
22、rmally applied force required to pull off the magnet becomes a measure of the coating thick- ness. 4.2.2 Its applications include the measurement of paint and plating on steel and also, of thin magnetic coatings on a non-metalic backing, 4.3 Magnetic reluctance method 4.3.1 By the magnetic reluctanc
23、e method, a non- magnetic coating on a magnetic substrate b6comes a gap in a magnetic circuit and its thickness is estimated in terms of &e reluctance which it thus introduces. The magnetic circuit may be achieved by either a permanent magnet or an electremagnet. the test coil, ability and homogenei
24、ty of the workpiece, 4.3.2 In one variant, the flux associated with a permanent magnet passes partly through the work- piece by way of tlie coating and partly through an auxiliary flux path shunting the workpiece. The latter includes a simple form of fluxmeter which gives readings which may be relat
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