1. 国家电网有限公司,北京,100031
2. 中国电力科学研究院有限公司,北京,100192
3. 山东工业陶瓷研究设计院有限公司,淄博,255000
4. 武汉理工大学材料科学与工程学院,武汉,430070
5. 清华大学深圳国际研究生院,深圳,518055
纸质出版:2025
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刘冀邱, 李燕雷, 赵江涛, 等. 特高压盘形悬式瓷绝缘子质量提升关键技术[J]. 高电压技术, 2025,51(10):5175-5185.
LIU Jiqiu, LI Yanlei, ZHAO Jiangtao, et al. 特高压盘形悬式瓷绝缘子质量提升关键技术[J]. 2025, 51(10): 5175-5185.
刘冀邱, 李燕雷, 赵江涛, 等. 特高压盘形悬式瓷绝缘子质量提升关键技术[J]. 高电压技术, 2025,51(10):5175-5185. DOI: 10.13336/j.1003-6520.hve.20250640.
LIU Jiqiu, LI Yanlei, ZHAO Jiangtao, et al. 特高压盘形悬式瓷绝缘子质量提升关键技术[J]. 2025, 51(10): 5175-5185. DOI: 10.13336/j.1003-6520.hve.20250640.
为了提升±800 kV线路特高压盘形悬式瓷绝缘子的产品质量并解决其零值超标问题,从瓷件、水泥胶合剂、自动化智能制造、检测方法和整体性能等方面进行了系统性地质量提升研究。研究涉及瓷件的关键原材料如α-氧化铝、石英粉、低钠长石等的控制指标,并通过优化产品头部参数提升了产品的耐陡波性能;通过添加高效减水剂、人工瓷砂和消泡剂等原料优化了配方,并同步改进了水泥养护制度;实现了水泥胶合剂性能的提升;开发了自动化成型、上砂上釉、胶装和测量设备,确立了智能化和精确化生产流程;瓷件内水压提升至36 MPa,并提出了加强热机试验方法以考核产品长期运行性能。结果表明,采用α-氧化铝原料、圆柱头结构和高铝水泥胶装的瓷绝缘子产品能通过100%SFL加强热机试验,达到国际领先水平。该研究可为解决测零困难问题提供参考,理论上可实现少测零甚至免测零的目标。
To improve the quality of UHV disc-shaped suspension porcelain insulators for ±800 kV lines and address the issue of excessive zero values
we systematically researched how to improve the quality from various aspects
including the porcelain components
cementitious materials
overall performance
and testing methods
as well as automated intelligent manufacturing. This research focuses on optimizing the control indicators of key raw materials for porcelain components
such as high-temperature alumina
quartz powder
and low-sodium feldspar
and on enhancing the impulse puncture test performance of products through the optimization of product head parameters. Moerover
the cementitious material formula is improved by incorporating efficient water-reducing agents
artificial porcelain sand
and defoaming agents. The cement curing process is also optimized to enhance the performance of the cementitious material. In terms of automatically intelligent manufacturing
we developed equipment for automatically molding
sanding and glazing
cementing
and measuring
and established an intelligent and precise production process. Testing methods are strengthened
the water pressure test pressure for porcelain components increases to 36 MPa
and a more rigorous thermal mechanical test is proposed to evaluate the long-term performance of the insulator products. The results show that the porcelain insulator products
manufactured by high-temperature alumina raw materials
a cylindrical head structure
and high-alumina cement assembly
are able to pass 100% of the enhanced thermal machine tests
reaching international advanced levels. This resolves the difficulty in measuring zero values
theoretically achieving fewer or even no zero measurements.
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