Insulators properties related to both tribology and space charge physics

H. Berroug, B. Vallayer, S. Fayeulle, D. Tréheux, C. Le Gressus
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Abstract

Space charge physics based on the analysis of polarization and relaxation of dielectric materials is shown to give a consistent description of various phenomena observed in ceramics subjected to stresses of various kins (electrical, mechanical, thermal etc.) Pure sapphire was the model material tested. Defects introduced in ceramic (by irradiation, diffusion, mechanical stresses, etc.) locally change the polarizability, and modify the capacity of the charge and thus the properties of the material. These changes in properties affect the whole ceramic, not only the bulk areas with defects. Sites of trapping are created by friction everywhere in the material (i.e., inside and outside the contact track). Therefore, the behavior can be modified by a machining process. The mechanical relaxation of the energy stored in a charged lattice is eventually converted into shock waves producing flashover, fracture, or wear located in the trapping areas.<>
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绝缘体的摩擦学和空间电荷物理特性
基于介电材料的极化和弛豫分析的空间电荷物理学表明,在陶瓷中观察到的各种现象(电,机械,热等)受到各种应力的一致描述。纯蓝宝石是模型材料。陶瓷中引入的缺陷(通过辐照、扩散、机械应力等)局部改变了极化率,改变了电荷的容量,从而改变了材料的性能。这些性质的变化影响整个陶瓷,而不仅仅是有缺陷的大块区域。捕获点是由材料各处(即接触轨道内外)的摩擦产生的。因此,这种行为可以通过加工过程来改变。储存在带电晶格中的能量的机械松弛最终转化为激波,产生位于捕获区域的闪络、断裂或磨损。
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