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Optimization of Bi2O3 TiO2 and Sb2O3 Doped ZnO-Based Low-Voltage Varistor Ceramic to Maximize Nonlinear Electrical Properties

机译:优化Bi2O3TiO2和Sb2O3掺杂的ZnO基低压压敏陶瓷的性能以最大化非线性电性能

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摘要

In ZnO-based low voltage varistor, the two essential features of microstructure determining its nonlinear response are the formation Bi-enriched active grain boundaries as well as a controlled ZnO grain size by secondary spinel-type phases. Besides, the microstructure and phase composition are strongly affected by the dopant concentration during sintering process. In this study, the optimal dopant levels of Bi2O3, TiO2, and Sb2O3 to achieve maximized nonlinear electrical property (alpha) were quantified by the response surface methodology (RSM). RSM was also used to understand the significance and interaction of the factors affecting the response. Variables were determined as the molar ratio of Bi2O3, TiO2, and Sb2O3. The alpha was chosen as response in the study. The 5-level-3-factor central composite design, with 20 runs, was used to conduct the experiments by ball milling method. A quadratic model was established as a functional relationship between three independent variables and alpha. According to the results, the optimum values of Bi2O3, TiO2, and Sb2O3 were obtained 0.52, 0.50, and 0.30, respectively. Under optimal conditions the predicted alpha (9.47) was calculated using optimal coded values from the model and the theoretical value is in good agreement with the value (9.43) obtained by confirmation experiment.
机译:在基于ZnO的低压变阻器中,决定其非线性响应的微观结构的两个基本特征是形成富Bi的活性晶界以及通过次级尖晶石型相控制的ZnO晶粒尺寸。此外,在烧结过程中,掺杂剂的浓度对显微组织和相组成有很大的影响。在这项研究中,通过响应表面方法(RSM)量化了实现最大非线性电特性(alpha)的Bi2O3,TiO2和Sb2O3的最佳掺杂水平。还使用RSM来了解影响响应的因素的重要性和相互作用。确定变量为Bi 2 O 3,TiO 2和Sb 2 O 3的摩尔比。在研究中选择了alpha作为响应。通过20次运行的5级3要素中央复合设计,通过球磨法进行实验。建立了二次模型,作为三个自变量与alpha之间的函数关系。根据结果​​,Bi2O3,TiO2和Sb2O3的最佳值分别为0.52、0.50和0.30。在最佳条件下,使用模型中的最佳编码值计算预测的alpha(9.47),理论值与通过确认实验获得的值(9.43)很好。

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