Optimizing Performance of Porcelain Insulators: How does Particle Size Influence Dielectric and Mechanical Strengths?

T. Ologunwa, T. Akinbogun, R. Frischer, I. Kashim, K. Kuča, O. Krejcar, O. Fadeyi
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引用次数: 2

Abstract

Porcelain insulators are mostly created from the combination of the particles of Clay, Silica, Kaolin, and Feldspar. This implies that different particle sizes contribute to the insulating properties of the materials. In this paper, we attempt to create a set of model porcelain materials by critically analysing the particle sizes that are most likely to yield the best insulator results. Materials sourced from Edo State, Nigeria were processed to produce Porcelain insulator samples. For each of the component minerals, a 65g mass was compacted and pressed at 500 Psi (3.4 KN) into a steel cylindrical mould via hydraulic press, this was closely followed by firing at 1200°C. Porosity, bulk density, insulation volume resistivity, as well as dielectric strength, and their relationship with particle sizes were evaluated. Results obtained showed that porosity of the Porcelain materials shared a direct relation with particle sizes, while the bulk density showed an inverse relationship. It was also observed that the 150 µm particles yielded the most effective insulators, given higher insulation volume resistivity and dielectric strength. Altering particle size from 150 µm tends to lower the insulation volume resistivity and dielectric strength.
优化瓷绝缘体性能:粒度如何影响介电强度和机械强度?
瓷绝缘体主要由粘土、二氧化硅、高岭土和长石的颗粒组合而成。这意味着不同的颗粒大小有助于材料的绝缘性能。在本文中,我们试图通过严格分析最有可能产生最佳绝缘体结果的粒度来创建一组模型瓷材料。对来自尼日利亚埃多州的材料进行加工,制成瓷绝缘体样品。对于每种成分矿物,65g的质量被压实,并在500 Psi (3.4 KN)的压力下通过液压机压入钢圆柱形模具中,然后在1200°C下烧制。评估了孔隙率、体积密度、绝缘体积电阻率和介电强度及其与粒径的关系。结果表明,陶瓷材料的孔隙率与颗粒大小成正比,而堆积密度呈反比关系。研究还发现,在绝缘体积电阻率和介电强度较高的情况下,150µm颗粒产生的绝缘体效果最好。从150µm开始改变颗粒尺寸会降低绝缘体积、电阻率和介电强度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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