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GB/T 25096-2010 English PDF

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GB/T 25096-2010: Composite station post insulators for substations with AC voltages greater than 1000V -- Definitions, test methods and acceptance criteria
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GB/T 25096-2010English669 Add to Cart 5 days [Need to translate] Composite station post insulators for substations with AC voltages greater than 1000V -- Definitions, test methods and acceptance criteria Valid GB/T 25096-2010

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Basic data

Standard ID GB/T 25096-2010 (GB/T25096-2010)
Description (Translated English) Composite station post insulators for substations with AC voltages greater than 1000V -- Definitions, test methods and acceptance criteria
Sector / Industry National Standard (Recommended)
Classification of Chinese Standard K48
Classification of International Standard 29.080.10
Word Count Estimation 29,259
Date of Issue 2010-09-02
Date of Implementation 2011-02-01
Quoted Standard GB/T 1182-2008; GB/T 2900.8; GB/T 6553-2003; GB/T 8287.1-2008; GB/T 16927.1-1997; GB/T 18851.1-2005; GB/T 22079-2008
Adopted Standard IEC 62231-2006, MOD
Regulation (derived from) Announcement of Newly Approved National Standards No. 4 of 2010 (total 159)
Issuing agency(ies) General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China, Standardization Administration of the People's Republic of China
Summary This standard applies to composite station post insulators, which consists of a solid cylindrical core body insulation, umbrella cover (located outside of the solid insulation core) and the end fitting form. The load bearing core fibers play a resin dip, the umbrella cover made ??of an elastic material (such as silicone rubber or ethylene propylene rubber) is made, the end fitting body is fixed to the insulator core. Described in this standard station post composite insulators subjected to bending, torsion, tension and compression loads, for AC voltages above 1 000 v substation.

GB/T 25096-2010: Composite station post insulators for substations with AC voltages greater than 1000V -- Definitions, test methods and acceptance criteria


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Composite station post insulators for substations with AC PAL greater than 1000V.Definitions, test methods and acceptance riteria ICS 29.080.10 K48 National Standards of People's Republic of China AC voltage is higher than 1000V substation power column Classification of composite insulators, test methods and acceptance criteria greaterthan1000V-Definitions, testmethods and apceptanceriteria (IEC 62231..2006, Compositestationpostinsulatorsforsubstations testmethodsandacceptanceriteria, MOD) 2010-09-02 release.2011-02-01 implementation General Administration of Quality Supervision, Inspection and Quarantine of the People 's Republic of China China National Standardization Management Committee released Directory Preface III Introduction IV 1 Scope and Purpose 1 2 normative reference document 1 3 Terms and definitions 1 4 logo 5 5 Environmental conditions 5 6 Transportation, storage and installation information 5 7 Test Category 5 7.1 Design Test 5 7.2 Type Test 6 7.3 Sampling test 7 7.4 Test one by one 7 Design Test 7 8.1 General 7 8.2 Interface and End Assembly Connection Test 7 8.3 Assembly of core load after assembly 7 8.4 Test of umbrella and umbrella material 9 8.5 Core material test 9 6.6 Resistance to traceability and resistance to electrical erosion of umbrella material 9 9 type test 10 9.1 Dimensional inspection 10 9.2 Electrical test 10 9.3 Mechanical tests 11 10 sampling test 10.1 General 12 10.2 Size check (E1 E2) 12 10.3 Galvanized layer test (E1 E2) 13 10.4 Requirements Mechanical Load Verification (E1) 13 10.5 Repeat the test procedure 11 Test one by one 13 11.1 Signs of power column pillar insulators 13 11.2 appearance inspection 13 11.3 Tensile load test 14 Appendix A (informative) Description of mechanical load and its test 15 A.1 Design Test 15 A.2 Type Test 15 A.3 Sampling Test 15 A.4 Tensile test one by one Appendix B (informative) Determination of equivalent bending moment for bending and compression (stretching) under combined load 16 B.1 Introduction 16 B.2 Maximum permissible bending moment. Mmax 16 B.3 Combined load of power column pillar insulator 16 Appendix C (informative) Torsional test arrangement example 18 Appendix D (Normative Appendix) Shape and Position Tolerance 19 Appendix E (informative) Description of compression and deflection tests Appendix F (informative) The technical provisions of this standard and IEC 62231..2006 Differences and their causes 22 Reference 23

Foreword

This standard is modified using IEC 62231..2006 "AC voltage higher than 1000V ~ 245kV substation power station pillar composite insulation Definition, test method and acceptance criteria "(English version). This standard is redrafted according to IEC 62231..2006. In addition to 8.6 and appendix F, the standard section number of this standard is identical to the chapter number of IEC 62231..2006. When using IEC 62231..2006, this standard has been modified. These technical differences are identified by vertical single lines (︱) in them The margin of the terms involved. This standard refers to the adoption of international standards of national standards. Appendix F gives a list of technical differences and their causes for this standard and IEC 62231..2006. For ease of use, this standard has also made the following editorial changes. a) the word "international standard" is changed to "this standard"; b) Replace the comma as a decimal point with a decimal point "." c) prerequisites for the removal of international standards. Appendix A, Appendix B, Appendix C, Appendix E and Appendix F of this standard are informative and Appendix D is a normative appendix. This standard is proposed by China Electrical Equipment Industry Association. This standard is nationalized by the National Insulator Standardization Technical Committee (SAC/TC80). The drafting of this standard unit. Xi'an High Voltage Electric Research Institute Co., Ltd. Xi'an Electric Porcelain Research Institute, Nantong City Shenma Electric Power Technology Co., Ltd. Division, the state insulator arrester quality supervision and inspection center, the State Grid Wuhan High Voltage Research Institute, China Electric Power Research Institute. The main drafters of this standard. Yao Junrui, Su Mei, Ma Bin, dangerous Peng, Zhang Rui, Fan Jianbin.

Introduction

Power column pillar composite insulator from the mechanical load to withstand the solid cylinder insulation core and covered with the core on the core of the protective effect The elastic body is made of resin, the core is made of resin impregnated fiber, and the mechanical load is transmitted to the core through metal attachment. Despite these common features Point, but the materials used in different manufacturers and the structure used may still be different. Some trials are concentrated together as a "design test", which is only required once for the same design insulator, with the aim of removing Not suitable for high voltage applications and materials. Time on the power column pillar composite insulators and their components (core material, umbrella material, interface Etc.) The mechanical and electrical properties have been considered in the specified design tests to ensure that they have satisfactory service life under normal operating conditions. The mechanical test method under the bending load used in this standard is based on GB/T .20142-2006. This method uses the concept of damage limit. The damage limit is the maximum stress that the insulator can achieve before it begins to be damaged. It is confirmed that the work of measuring the initial damage by acoustic emission technique is in progress In the line. In some cases, the pillars of the power plant insulator to bear the combined load. As a guide, Appendix B explains how to calculate the bend, pull The equivalent bending moment produced by the combination of the extended and compressive loads on the insulator. This standard does not include GB/T 4585-2004 and GB/T 22707-2008 "DC system with high voltage insulator artificial contamination test" Prescribed contamination tests, since the applicability of these standards to composite insulators has not yet been confirmed. Such a contamination test and operational experience Association has not yet been established. The composite insulator contamination test method is under consideration. This standard does not consider the use of the frequency arc test as a necessary test. As the structure of the transmission network and the tower is different And arc protection device design is different, a variety of test parameters, the results are also very different. The heating of the arc should be taken into account in the design of the metal accessory effect. The use of an appropriately designed arc protection device avoids serious damage to the metal fittings caused by short circuit currents. However, this standard Quasi-does not exclude the possibility of conducting an arc test by both parties. GB/T 25084-2010 "frame with nominal voltage higher than 1000V Air line with insulator string and insulator string AC frequency arc test "gives the insulator string arc test details. The impact (mechanical) load caused by the short circuit current in the substation belongs to the typical load, and the pillar insulator is supported by the conductor or bus The effect of the interaction of the electric power generated by the interaction. The impact load or load peak can be evaluated using the guidelines in the IEC 60865 series of standards. International Conference on Large Power Grid (CIGRE) "Short-circuit current impact" work is ongoing, its task is to evaluate the short-circuit current in the substation From the impact load. The purpose of this work is to introduce a new concept. the constant static load (ESL) factor to be used frequently. First of all The peak load can be multiplied by the ESL factor by the peak load. This value can be used as MDCL in this standard bending strength determination. This standard does not specify radio interference and corona test, because these two properties are not simply the characteristics of the insulator. This standard does not currently involve the use of hollow tube as the bearing of the power station pillar composite insulators. GB/T 21429-2008 gives empty Core composite insulator test details, many of which can be used for hollow power plant pillar composite insulators. AC voltage is higher than 1000V substation power column Classification of composite insulators, test methods and acceptance criteria

1 scope and purpose

This standard applies to the power column pillar composite insulator, which consists of solid cylindrical insulation core, umbrella (located outside the solid insulation core) and End assembly. The core of the load is made of resin impregnated fiber, the umbrella is made of elastic material (such as silicone rubber or ethylene propylene rubber) The end fitting is fixed to the insulator core. The pillars composite insulators described in this standard are subjected to bending, twisting, stretching and compression Charge for substation with AC voltage higher than 1000V. Note. DC system with power column pillar composite insulators can refer to the implementation. The purpose of this standard is. Define the terminology used; - specify the test method; - Provisions for acceptance or nonconformity. This standard does not contain the requirements for the selection of insulators under special operating conditions.

2 normative reference documents

The terms of the following documents are hereby incorporated by reference into this standard. Whichever is the date of the reference file, which is followed by all (Excluding corrigenda) or revisions do not apply to this standard, however, encourage the parties to reach an agreement under this standard Whether you can use the latest version of these files. For undated references, the latest edition applies to this standard. GB/T 1182-2008 Geometrical product specifications (GPS) Geometric tolerances - Shapes, orientations, positions, and beating Tolerances (ISO 1101..2004, IDT) GB/T 2900.8 Electrician term insulators (GB/T 2900.8-2009, IEC 60050-471..2007, IDT) GB/T 6553-2003 Test method for assessing electrical resistance and erosion of electrical insulating materials used in harsh environmental conditions (IEC 60587. 1984, IDT) GB/T 8287.1-2008 Nominal voltage higher than 1000 V System User and outdoor pillar insulators Part 1. Porcelain or glass Test of Insulators for Insulation (IEC 60168..2001Testonindoorandoutdoorpostinsulatorsofceramicmaterialor glassforsystemswithnominalvoltagegreater1000V, MOD) GB/T 16927.1-1997 High voltage test technology - Part 1. General test requirements (eqvIEC 60060-1. 1989) GB/T 18851.1-2005 Non-destructive testing - Penetrant testing - Part 1. General (ISO 3452. 1984, IDT) GB/T 22079-2008 Nominal voltage higher than 1000V for domestic and outdoor polymer insulators General definition, test method And acceptance criteria (IEC 62217..2005, MOD)

3 terms and definitions

The following terms and definitions apply to this standard. 3.1 Power column pillar composite insulator compositestationpostinsulator A pillar insulator consisting of a load-bearing cylindrical solid core, an umbrella and an end fitting fixed to the insulating core.

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