BS EN IEC 60893-2:2023 2024
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Insulating materials. Industrial rigid laminated sheets based on thermosetting resins for electrical purposes – Methods of test
Published By | Publication Date | Number of Pages |
BSI | 2024 | 42 |
IEC 60893-2:2023 is available as IEC 60893-2:2023 RLV which contains the International Standard and its Redline version, showing all changes of the technical content compared to the previous edition.IEC 60893-2:2023 describes methods of test for the materials defined in IEC 60893-1 (referred to also as Part 1). This third edition cancels and replaces the second edition published in 2003. This edition constitutes a technical revision. This edition includes the following significant technical changes with respect to the previous edition: a) removal of reference to withdrawn specification IEC 60167:1964; b) inclusion of reference to IEC 62631-3-3:2015, which supersedes IEC 60167:1964. Details in 6.3 have been updated accordingly. The actual performance of the test has not changed; c) normative references have been updated.
PDF Catalog
PDF Pages | PDF Title |
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2 | undefined |
5 | Annex ZA (normative)Normative references to international publicationswith their corresponding European publications |
7 | English CONTENTS |
10 | FOREWORD |
12 | INTRODUCTION |
13 | 1 Scope 2 Normative references |
14 | 3 Terms and definitions |
15 | 4 Conditioning of test specimens 5 Dimensions 5.1 Thickness 5.1.1 General 5.1.2 Test apparatus for reference method 5.1.3 Procedure for reference method 5.1.4 Results 5.2 Flatness 5.2.1 General 5.2.2 Test specimens |
16 | 5.2.3 Test method 5.2.4 Results 6 Mechanical tests 6.1 Flexural strength 6.1.1 General 6.1.2 Test specimens 6.1.3 Test method 6.1.4 Results 6.2 Modulus of elasticity in flexure 6.2.1 General |
17 | 6.2.2 Test specimens 6.2.3 Test method 6.2.4 Results 6.3 Compressive strength 6.3.1 General 6.3.2 Test specimens 6.3.3 Test method 6.3.4 Results 6.4 Impact strength 6.4.1 General 6.4.2 Charpy Impact strength |
18 | 6.4.3 Izod impact strength 6.5 Shear strength parallel to laminations 6.5.1 General 6.5.2 Test specimens |
19 | 6.5.3 Test method 6.5.4 Results 6.6 Tensile strength 6.6.1 General 6.6.2 Test specimens 6.6.3 Test method 6.6.4 Results 7 Electrical tests 7.1 Electric strength and breakdown voltage 7.1.1 General |
20 | 7.1.2 Test specimens 7.1.3 Test method 7.2 Permittivity and dissipation factor 7.2.1 General requirements |
21 | 7.2.2 Methods 7.2.3 Principles of the methods |
22 | 7.2.4 Measuring instruments 7.2.5 Method A: Direct measurement technique |
24 | 7.2.6 Method B: Air substitution technique |
27 | 7.2.7 Method C: Two fluid immersion technique |
29 | Table 1 – Sequence employed for routine measurements |
30 | 7.2.8 Test report |
31 | 7.3 Insulation resistance after immersion in water 7.3.1 General 7.3.2 Test specimens 7.3.3 Test method 7.3.4 Results 7.4 Comparative and proof tracking indices 7.4.1 General 7.4.2 Test specimens 7.4.3 Test method |
32 | 7.4.4 Results 7.5 Tracking and erosion resistance 7.5.1 General 7.5.2 Test specimens 7.5.3 Test method 7.5.4 Results 8 Thermal tests 8.1 Thermal endurance 8.1.1 General 8.1.2 Test specimens 8.1.3 Test method 8.1.4 Results 8.2 Flammability 8.2.1 General |
33 | 8.2.2 Test specimens 8.2.3 Test method 8.2.4 Results 9 Other tests 9.1 Density 9.1.1 General 9.1.2 Test specimens 9.1.3 Test method 9.1.4 Results 9.2 Water absorption 9.2.1 General 9.2.2 Test specimens 9.2.3 Test method 9.2.4 Results |
34 | Figure 1 – Test specimens for impact strength test |
35 | Figure 2 – Device for testing parallel shearing strength |
36 | Figure 3 – Example of electrode system for method A |
37 | Figure 4 – Example of electrode system for method B |
38 | Figure 5 – Example of electrode system for method C |
39 | Annex A (informative) Modes of representation of capacitance Figure A.1 – Equivalent parallel and series representation of a capacitor |
40 | Annex B (informative) Liquids of known permittivity values Table B.1 – Liquids of know permittivity values |
41 | Bibliography |