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界面涂层对特高压GIS盆式绝缘子导体-绝缘盆体界面处电场调控 被引量:13
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作者 王闯 赵朗 +3 位作者 孙青 王德意 卜越 彭宗仁 《高电压技术》 EI CAS CSCD 北大核心 2020年第3期799-806,共8页
为了解决在特高压盆式绝缘子运行过程中,因中心导体与盆体绝缘材料性能差异引起的界面烧蚀破坏现象,对绝缘材料界面处的场强集中效应进行了研究。首先以特高压交流盆式绝缘子中心导体与盆体绝缘材料之间界面处的场强为研究对象,应用有... 为了解决在特高压盆式绝缘子运行过程中,因中心导体与盆体绝缘材料性能差异引起的界面烧蚀破坏现象,对绝缘材料界面处的场强集中效应进行了研究。首先以特高压交流盆式绝缘子中心导体与盆体绝缘材料之间界面处的场强为研究对象,应用有限元仿真计算分析了特高压盆式绝缘子界面处场强集中的原因,并采用涂覆界面材料的方法对界面处场强集中效应进行抑制。然后建立了含界面涂覆材料的盆式绝缘子模型,并推导出界面层两侧的场强与界面涂覆材料相关参数的关系式,进而得到不同的界面涂覆材料的界面层两侧的场强分布规律。研究结果表明:界面层厚度与缺陷高度相当,且相对介电常数>100时,界面层可以较好地屏蔽导体表面的缺陷;验证了模型的有效性。研究可为界面涂覆材料的设计和选择提供理论依据。 展开更多
关键词 特高压 GIS盆式绝缘子 电场强度 缺陷屏蔽 界面涂覆材料
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Effects of dip-coated BN interphase on mechanical properties of SiC_f/SiC composites prepared by CVI process 被引量:2
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作者 周洋 周万城 +1 位作者 罗发 朱冬梅 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2014年第5期1400-1406,共7页
BN interphase was successfully synthesized on SiC fiber fabrics by dip-coating process using boric acid and urea as precursors under N2 atmosphere. The morphology of BN interphase was observed by SEM, and the structur... BN interphase was successfully synthesized on SiC fiber fabrics by dip-coating process using boric acid and urea as precursors under N2 atmosphere. The morphology of BN interphase was observed by SEM, and the structure was characterized by XRD and FT-IR spectra. The SiCf/SiC composites with dip-coated BN interphase were fabricated by chemical vapor infiltration (CVI) process, and the effects ofBN interphase on the mechanical properties of composites were investigated. The results show that the SiC fibers are fully covered by BN interphase with smooth surface and turbostratic structure (t-BN), and the thickness is about 0.4 μm. The flexural strengths of SiCf/SiC composites with and without BN interphase are about 180 and 95 MPa, respectively. Compared with the as-received SiCf/SiC composites, the composites with BN interphase exhibit an obvious toughened fracture behavior. From the microstructural analysis, it can be confirmed that the BN interphase plays a key part in protecting the fibers from chemical attack during matrix infiltration and weakening interfacial bonding, which can improve the mechanical properties of SiCf/SiC composites remarkably. 展开更多
关键词 SiCf/SiC composites BN interphase DIP-COATING CVI mechanical properties
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