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首页> 外文期刊>Mathematical research letters: MRL >Ceramic/inorganic-organic nano-hybrid composites for thermally stable insulation of electrical wires. Part I: Composition and synthetic parameters
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Ceramic/inorganic-organic nano-hybrid composites for thermally stable insulation of electrical wires. Part I: Composition and synthetic parameters

机译:陶瓷/无机 - 有机纳米混合复合材料,用于电线的热稳定绝缘。 第一部分:组成和合成参数

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摘要

Composite coatings comprising of particulate ceramic and silicon containing inorganic-organic nano-hybrids are synthesized and applied as high temperature capable coatings for electrical wire insulation. The nano-hybrids are synthesised from organosilanes bearing non-hydrolysable methyl, glycidyloxypropyl and phenyl groups. The molar ratios of organosilanes, acid catalysts and synthetic conditions are optimised to offer suitable mechanical and thermal performance to the composite coatings. Different particulate ceramics are tested in regard to their effects on mechanical stiffness of the resultant composite coatings. Vermiculite platelet is finally selected for its lower hardness. The mass ratio of nano-hybrids to platelets of 70:30 to 60:40 are found optimal for balanced performance in respect to thermal, mechanical and dielectric properties. Uniform composite coatings are produced on conductor wires using a reel-to-reel continuous coating process. Initial tests showed insulated wires have moderate mechanical flexibility, dielectric strength and excellent thermal stability, capable of withstanding over 1100V AC potential after 500 degrees C heating.
机译:合成包含颗粒状陶瓷和含硅的无机 - 有机纳米杂交物的复合涂层并用作用于电线绝缘的高温能力的涂层。纳米杂交物由轴承非水解甲基,缩水甘油氧基丙基和苯基的有机硅烷合成。优化有机硅烷,酸催化剂和合成条件的摩尔比,可为复合涂层提供合适的机械和热性能。关于它们对所得复合涂层的机械刚度的影响测试不同的颗粒陶瓷。最终选择蛭石血小板的硬度较低。对于热,机械和介电性能的平衡性能,找到了70:30至60:40的纳米杂交体与血小板的质量比。使用卷轴与卷轴连续涂覆工艺在导体线上产生均匀的复合涂层。初始试验显示绝缘电线具有适度的机械柔性,介电强度和优异的热稳定性,能够在500摄氏度下抵抗超过1100V的AC电位。

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