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Analytical Description of Degradation-Relaxation Transformations in Nanoinhomogeneous Spinel Ceramics

机译:纳米非均质尖晶石陶瓷降解-弛豫转变的分析描述

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摘要

Mathematical models of degradation-relaxation kinetics are considered for jammed thick-film systems composed of screen-printed spinel Cu0.1Ni0.1Co1.6Mn1.2O4 and conductive Ag or Ag-Pd alloys. Structurally intrinsic nanoinhomogeneous ceramics due to Ag and Ag-Pd diffusing agents embedded in a spinel phase environment are shown to define governing kinetics of thermally induced degradation under 170 °C obeying an obvious non-exponential behavior in a negative relative resistance drift. The characteristic stretched-to-compressed exponential crossover is detected for degradation-relaxation kinetics in thick-film systems with conductive contacts made of Ag-Pd and Ag alloys. Under essential migration of a conductive phase, Ag penetrates thick-film spinel ceramics via a considerable two-step diffusing process.
机译:对于由丝网印刷的尖晶石Cu0.1Ni0.1Co1.6Mn1.2O4和导电Ag或Ag-Pd合金组成的堵塞厚膜系统,考虑了降解松弛弛豫动力学的数学模型。结果表明,由于在尖晶石相环境中嵌入了Ag和Ag-Pd扩散剂,结构上固有的纳米非均质陶瓷定义了170°C下热诱导降解的控制动力学,同时在负相对电阻漂移中遵循了明显的非指数行为。在具有由Ag-Pd和Ag合金制成的导电触点的厚膜系统中,可以检测到拉伸到压缩的指数交叉特性,以实现松弛松弛动力学。在导电相的基本迁移下,Ag通过相当大的两步扩散过程渗透到厚膜尖晶石陶瓷中。

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