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GB/T 44663-2024 English PDF

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GB/T 44663-2024: Insulating liquids - Unused modified or blended esters for electrotechnical applications
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Basic data

Standard ID GB/T 44663-2024 (GB/T44663-2024)
Description (Translated English) Insulating liquids - Unused modified or blended esters for electrotechnical applications
Sector / Industry National Standard (Recommended)
Classification of Chinese Standard K15
Classification of International Standard 29.040.10
Word Count Estimation 22,265
Date of Issue 2024-09-29
Date of Implementation 2025-04-01
Issuing agency(ies) State Administration for Market Regulation, China National Standardization Administration

GB/T 44663-2024: Insulating liquids - Unused modified or blended esters for electrotechnical applications


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ICS 29.040.10 CCSK15 National Standard of the People's Republic of China Insulating liquid for electrical use, unused Modified or mixed ester (IEC 63012.2019,MOD) Released on 2024-09-29 2025-04-01 Implementation State Administration for Market Regulation The National Standardization Administration issued

Table of Contents

Preface III Introduction V 1 Scope 1 2 Normative references 1 3 Terms and definitions 3 4 Categories 4 5 Performance, importance and test methods 4 6 Minimum performance requirements 9 7 Labelling and general delivery requirements11 Appendix A (Informative) Miscibility, compatibility of insulating liquids and oil displacement of transformers 12 Reference 13

Foreword

This document is in accordance with the provisions of GB/T 1.1-2020 "Guidelines for standardization work Part 1.Structure and drafting rules for standardization documents" Drafting. This document is modified to adopt IEC 63012.2019 "Unused modified or mixed esters for insulating liquids for electrical use". The technical differences between this document and IEC 63012.2019 and their reasons are as follows. --- The warning in the introduction of IEC 63012.2019 is placed before the "Scope" in Chapter 1 to meet the needs of technical content; --- The content of "Scope" has been reorganized to meet the needs of technical content (see Chapter 1); --- Added normative references to DL/T 429.1 (see Table 1, 5.1.1) to meet the needs of technical content; --- Replaced ISO 2211 with the normative reference GB/T 23770 (see Table 2, 5.1.2), added normative reference DL/T 429.2 (see Table 2, 5.1.2), deleted the normative reference ISO 2049 (see 4.2) to adapt to my country's technical requirements parts, increasing operability; --- Replaced ISO 3104 with the normative reference GB/T 30515 (see Table 1, 5.1.3), added the normative reference NB/SH/T 0870 (see Table 1, 5.1.3) to adapt to my country's technical conditions and increase operability; --- ASTM D4172 (see Table 2, 5.1.4) is replaced by the normative reference NB/SH/T 0189. DL/T 1204 replaces ASTM D1903 (see Table 1, 5.1.6) and replaces NB/SH T0632 with the normative reference ASTME1269 (see Table 1, 5.1.7) to adapt to my country's technical conditions and increase operability; --- Replaced ISO 3016 with the normative reference GB/T 3535 (see Table 1, 5.1.8), added normative reference NB/SH/T 0886 (see Table 1, 5.1.8) to adapt to my country's technical conditions and improve operability; --- IEC 60814 (see Table 1, 5.1.9) was replaced with the normative reference NB/T 42140 to adapt to my country's technical conditions and increase Operability; --- Replaced ISO 12185 with SH/T 0604 and ISO 3675 with GB/T 1884, and increased the normative The referenced NB/SH/T 0870 (see Table 1, 5.1.11) is used to adapt to my country's technical conditions and increase operability; --- Added normative references to GB/T 6541 (see Table 2, 5.1.12), added "In case of dispute, the provisions of IEC 62961 shall be followed "Determination" content (see 5.1.12) to adapt to my country's technical conditions and increase operability; --- The normative reference GB/T 507 replaces IEC 60156 (see Table 1, 5.2.1, 5.2.2) to adapt to my country's technical conditions parts, increasing operability; --- Added supplementary provisions on the determination method of breakdown voltage of high viscosity and low viscosity ester liquids (see 5.2.1) to meet the technical requirements. The need for capacity; --- Replaced IEC 60897 (see Table 2, 5.2.2) with the normative reference GB/T 21222, and replaced IEC 60897 (see Table 2, 5.2.2) with the normative reference GB/T 17648 Replaced IEC TR61294 (see Table 2, 5.2.3) to adapt to my country's technical conditions and increase operability; --- Replace IEC 60247 with the normative reference GB/T 5654 (see Table 1, Table 2, 5.2.4, 5.2.5, 5.2.6), GB/T 21216 replaced IEC 61620 (see Table 1, 5.2.4) to adapt to my country's technical conditions and increase operability; --- Added normative reference DL/T 385 (see Table 2, 5.2.7) to adapt to my country's technical conditions and increase operability; --- The normative reference GB/T 41633.3 replaces IEC 62021-3 (see Table 1, 5.3.1) to adapt to my country's technical requirements parts, increasing operability; --- DL/T 285 replaced IEC 62535, GB/T 25961 replaced ASTMD1275, GB/T 32508 with normative references Replaced IEC 62697-1 (see Table 1, 5.3.3) to adapt to my country's technical conditions and increase operability; --- Added normative reference DL/T 2445 (see Table 2, 5.3.4) to adapt to my country's technical conditions and increase operability; --- IEC 61125 (see Table 1, 5.4.1) is replaced by the normative reference NB/SH/T 0811. NB/T 10199 replaced IEC 62770, GB/T 41632 replaced IEC 61099 (see 5.4.1, 5.4.2) to adapt to my country Technical conditions to increase operability; --- ASTM D7150 (see Table 2, 5.4.4) is replaced by the normative reference NB/SH/T 0930. GB/T 10065-2007 replaces IEC 60628 (see Table 2, 5.4.5) and replaces SH/T 0803 with the normative reference IEC 61619 (see Table 1, 5.5.2) to adapt to my country's technical conditions and increase operability; --- The normative references GB/T 261 replaced ISO 2719, GB/T 3536 replaced ISO 2592 (see Table 1, 5.5.4), and Adapt to my country's technical conditions and increase operability; --- GB/T 21856 replaced OECD301-B, GB/T 21802 replaced OECD301-C, GB/T 21801 replaced OECD301-F (see Table 1, 5.5.6) to adapt to my country's technical conditions and increase operability; ---Change the performance requirement value of "AC breakdown voltage" from ≥35kV/70kV to ≥40kV/70kV, and change dibenzyl disulfide The required value was changed from “undetectable” to “undetectable (≤5 mg/kg)” (see Table 1) to meet the needs of technical content. The following editorial changes were made to this document. --- Change the title "Viscosity" to "Kinematic Viscosity" (see 5.1.3); --- Added table notes to Table 1 and Table 2, and deleted footnotes a and b of Table 2; --- Change the title "Stray Gases" to "Gas Generation Characteristics" (see 5.4.4); --- Replace IEC 60076-14 (see 5.4.2) with the informative reference GB/T 1094.14, and replace IEC 60076-14 (see 5.4.2) with the informative reference GB/T 6986 Replaced ISO 3015 (see 5.1.8), replaced IEC 61039 (see 4.2) with the informative reference GB/T 27750, replaced IEC 61039 (see 4.2) with the informative reference GB/T 27750 The NB/SH/T 0837 referenced replaces IEC 61868 (see 5.1.3). Please note that some of the contents of this document may involve patents. The issuing organization of this document does not assume the responsibility for identifying patents. This document was proposed by the China Electrical Equipment Industry Association. This document is under the jurisdiction of the National Technical Committee for Standardization of Insulation Materials (SAC/TC51). This document was drafted by. Electric Power Research Institute of State Grid Fujian Electric Power Co., Ltd., Electric Power Research Institute of Guangdong Power Grid Co., Ltd. Institute, Guilin Saimeng Testing Technology Co., Ltd., Zenis (Xiamen) Power Technology Co., Ltd., Jiangsu Sakura Chemical Research Co., Ltd., Shenzhen Supply Power Bureau Co., Ltd., Xiamen Jiahua Electric Power Technology Co., Ltd., China Southern Power Grid Co., Ltd. Ultra-high Voltage Transmission Company, Suichang Tiansheng Technology Technology Co., Ltd., Jiangsu Wofeng New Materials Co., Ltd., Hangzhou Juli Insulation Materials Co., Ltd., Guangdong Power Grid Co., Ltd., State Grid Henan Provincial Electric Power Company Electric Power Research Institute, Guilin Electric Power Research Institute Co., Ltd., China Electric Power Research Institute Co., Ltd., State Grid Zhejiang Electric Power Research Institute of Provincial Electric Power Company, Electric Power Research Institute of State Grid Tianjin Electric Power Company, Electric Power Research Institute of State Grid Anhui Electric Power Company Institute of Technology, Xi'an Jiaotong University, Chongqing University, Guangxi University, Suzhou Guanlong Electromagnetic Wire Co., Ltd., Jiangsu Shuangjiang Energy Technology Co., Ltd. Co., Ltd., Guangdong Jiewei Electronics Co., Ltd., and Cargill Investment (China) Co., Ltd. The main drafters of this standard are. Lian Hongsong, Qian Yihua, Zhao Jie, Lai Yonghua, Wang Mingjun, Wei Chen, Liu Huixin, Tang Feng, Zheng Dongsheng, Fu Qiang, Zhao Yaohong, Zheng Hanbo, Dai Zhirong, Lin Fen, Yang Tao, Kou Xiaoshi, Li Zhi, Cai Yuanpeng, Chen Shibo, Zhang Li, Jiang Tao, Zhang Jiefeng, Xu Man, Chi Qingguo, Wang Feipeng, Tang Nian, Zhao Peng, Zhang Changhai, Huang Zhengyong, Li Jian, Cai Mingfang, Wang Ruifeng, Wang Jianyi, Peng Lei, Liao Peng, Ding Mingjun, Shao Xianjun, Qin Shaorui, He Chunan, Gu Xinmei, Li Yinghong, Yang Xiang, Zhang Bingwu, Luo Chuanyong.

Introduction

Electrical insulation and heat transfer are the basic functions of insulating liquids in electrical applications. These insulating liquids are usually applied in a homogeneous state, such as the most common Common mineral oils or new synthetic esters, natural esters or silicone fluids. With the continuous research on improving the performance characteristics of equipment, different insulating liquid combinations Some examples of known insulation liquid modification include optimizing the cost of insulation liquid use, increasing the cooling performance of insulation liquid, Improve the flash point of insulating liquid, extend the insulation life of equipment or reduce the impact of insulating liquid on the environment. Currently, there are specific standards for insulating fluids (mineral oils, synthetic esters, natural esters, silicone fluids), but these standards do not include chemically modified In addition, the existing standards do not cover performance characteristics that may exceed the technical requirements in GB/T 41632. Request for synthetic esters. Some modified esters or their mixtures are already available as commercial products from insulation liquid suppliers. For example. ● Palm fatty acid ester, with a low viscosity of 5mm2/s at 40℃ and a flash point of 176℃; ● A mixture of triglycerides (50%) and monoglycerides (50%) has a low viscosity of 17mm2/s at 40℃ and a flash point of.200℃. The number of applications for ester insulating fluids or their mixtures is expected to continue to grow in the coming years, and there is a need for quality control of these insulating fluids. The performance characteristics of a mixture should not be assumed to be based solely on the performance characteristics of its individual components. The purpose of this document is to specify the minimum quality requirements for insulating liquids in new combinations. Insulating liquid for electrical use, unused Modified or mixed ester warn. This document does not purport to address all of the safety concerns associated with its use. It is the responsibility of the user of this document to establish appropriate safety precautions prior to use. health and safety practices, and determine the applicability of regulatory restrictions. Some of the test operations mentioned in this document may lead to dangerous situations. Please strictly follow the relevant standard test methods and precautions. The insulating liquids, chemicals and sample containers mentioned in this document should be handled in accordance with current local and national legislation on their impact on the environment. Every precaution should be taken to prevent release of liquid into the environment.

1 Scope

This document specifies the classification and performance requirements of unused modified ester insulating liquids or unused mixed ester insulating liquids for electrical use. and test methods, marking and delivery requirements. This document applies to unused modified ester insulating liquids used as insulation and cooling media in transformers and other electrical equipment. It is not suitable for modified ester insulating liquid or mixed ester insulating liquid mixed with used insulating liquid in any proportion. liquid. Unused modified or synthetic esters derived from natural or synthetic base oils, or mixtures of both. This document covers natural ester insulating fluids Other ester insulating liquids not covered in the standards for insulating liquids (NB/T 10199) or synthetic ester insulating liquids (GB/T 41632). Since this document covers a wide range of ester insulating fluids, some of the performance indicators have a wide distribution of values. Viscosity is an important The performance of ester insulating liquids will affect the design and cooling performance of electrical equipment. Therefore, this document classifies ester insulating liquids according to the kinematic viscosity of different liquids. Row classification.

2 Normative references

The contents of the following documents constitute essential clauses of this document through normative references in this document. For referenced documents without a date, only the version corresponding to that date applies to this document; for referenced documents without a date, the latest version (including all amendments) applies to This document. GB/T 261 Determination of flash point Pensky-Martin closed cup method (GB/T 261-2021, ISO 2719.2016, MOD) GB/T 507 Determination of the breakdown voltage of insulating oil (GB/T 507-2002, eqvIEC 60156.1995) GB/T 1884 Laboratory determination of density of crude oil and liquid petroleum products (density meter method) (GB/T 1884-2000, eqvISO 3675.1998) GB/T 3535 Determination of pour point of petroleum products (GB/T 3535-2006, ISO 3016.1994, MOD) GB/T 3536 Determination of flash point and fire point of petroleum products - Cleveland open cup method (GB/T 3536-2008, ISO 2592. 2000,MOD) GB/T 5654 Measurement of relative permittivity, dielectric loss factor and DC resistivity of liquid insulating materials (GB/T 5654- 2007,IEC 60247.2004,IDT) GB/T 6541 Petroleum products - Determination of interfacial tension of oil against water (ring method) (GB/T 6541-1986, eqvISO 6295. 1983) GB/T 10065-2007 Determination of the gassing behavior of insulating liquids under electrical stress and ionization (IEC 60628.1985,

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