Dielectric properties of selected glass and glass-ceramics produced by plasma spraying

P. Ctibor, J. Sedláček, K. Neufuss
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Abstract

Selected silicate materials were sprayed by plasma in the past and characterized from the standpint of their sprayability, chemical composition and crystallographic phases, structure and mechanical properties as well as thermal stability. Present work is concentrated on dielectric properties of these thick films. Synthetic mullite, mullite mixture with glass, and pure glass were produced using the water-stabilized plasma system (WSP ® ). The deposits were striped-out, ground and polished to produce planparallel plates, i.e. flat samples with a smooth surface. These samples serve in principle like monoblock capacitors. All of them were tested in the alternating electric field at low voltage to examine their capacity and loss tangent in the frequency range between 100 Hz and 1 MHz. Relative permittivity was calculated based on the measured capacity. It is shown that the relative permitivity and loss tangent of plasma-sprayed glass and glass-ceramics is similarly stable as for bulk polycrystalline dielectric materials of the same composition. The family of silicon oxide based ceramics and glass is often used in electrical industry, particularly as insulators. Sintered silicate materials exhibit extraordinary volume resistivity and small dielectric losses during a wide range electric
等离子喷涂玻璃和微晶玻璃的介电性能
以往选用的硅酸盐材料采用等离子喷涂技术,从喷涂性能、化学成分和晶相、结构和力学性能以及热稳定性等方面对其进行了表征。目前的工作主要集中在这些厚膜的介电特性上。使用水稳定等离子体系统(WSP®)生产合成莫来石、莫来石与玻璃的混合物和纯玻璃。这些沉积物被剥离、研磨和抛光,以生产平面平行板,即具有光滑表面的平面样品。这些样品在原理上类似于单块电容器。在低电压交变电场中测试了它们在100 Hz ~ 1 MHz频率范围内的容量和正切损耗。根据所测容量计算相对介电常数。结果表明,等离子喷涂玻璃和微晶玻璃的相对介电常数和损耗正切与相同成分的大块多晶介电材料的相对介电常数和损耗正切具有相似的稳定性。氧化硅基陶瓷和玻璃家族经常用于电气工业,特别是作为绝缘体。烧结硅酸盐材料在宽电范围内表现出非凡的体积电阻率和小的介电损耗
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