The investigation of the physical properties of an electrical porcelain insulator manufactured from locally sourced materials

Q2 Physics and Astronomy Physical Sciences Reviews Pub Date : 2023-03-31 DOI:10.1515/psr-2022-0236
Uche Eunice Ekpunobi, Uzochukwu Abraham Onuigbo, I. Tabugbo, E. Amalu, C. Ihueze, C. Onu, P. Igbokwe, A. Ekpunobi, S. Agbo, H. Obiora-Ilouno
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Abstract

Abstract The work aims to evaluate the effect of temperature and composition on the physical properties of ceramic electrical porcelain insulators, produced from locally sourced materials in Nigeria. The basic raw materials of triaxial porcelain (Kaolin, feldspar, and quartz) were pulverized, milled for 22 h, and sieved using a 200 μm mesh size. The chemical composition and characterization of the raw materials were obtained using X-ray diffraction (XRD) and X-ray fluorescence (XRF) analysis. The mixtures were formulated using sodium silicate as a deflocculant to help produce the ceramic porcelain samples. The green samples were weighed and fired at temperatures of 1200 °C and 1250 °C. The samples were subjected to 1 h of boiling plus 2 h of soaking. The slip casting technique was used in the production of porcelain insulators. The linear shrinkage, water absorbance, apparent porosity, and bulk density were measured and studied as a function of firing temperature. The apparent porosity and water absorption decreased as the firing temperature increased. The bulk density increased gradually from 1200 °C to 1250 °C and the percentage of moisture remained fairly unaffected by the temperature increase. The linear shrinkage was also found to increase as the firing temperature increased. Despite having the same composition, the average physical properties of the locally manufactured insulators revealed that those manufactured at higher temperatures provided a better insulating effect than those manufactured at lower temperatures. In other words, it shows that excellent ceramic porcelain insulators can be manufactured from locally sourced materials using the appropriate composition and firing temperature.
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用本地材料制造的电瓷绝缘体的物理性质的研究
摘要:这项工作旨在评估温度和成分对尼日利亚当地材料生产的陶瓷电瓷绝缘体物理性能的影响。三轴瓷的基本原料(高岭土、长石和石英)粉碎,研磨22 h,筛孔尺寸为200 μm。利用x射线衍射(XRD)和x射线荧光(XRF)分析得到了原料的化学成分和表征。混合物的配方使用硅酸钠作为防絮凝剂,以帮助生产陶瓷样品。称量绿色样品,在1200°C和1250°C的温度下烧制。将样品煮沸1小时,浸泡2小时。采用滑移铸造技术生产瓷绝缘子。测定了线收缩率、吸水率、表观孔隙率和容重随烧成温度的变化规律。表观孔隙率和吸水率随烧成温度的升高而降低。从1200°C到1250°C,堆积密度逐渐增大,水分百分比基本不受温度升高的影响。线收缩率随烧成温度的升高而增大。尽管具有相同的成分,但本地制造的绝缘子的平均物理性能表明,在较高温度下制造的绝缘子比在较低温度下制造的绝缘子具有更好的绝缘效果。换句话说,它表明,在适当的成分和烧成温度下,可以用当地的材料制造出优秀的陶瓷瓷绝缘体。
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来源期刊
Physical Sciences Reviews
Physical Sciences Reviews MULTIDISCIPLINARY SCIENCES-
CiteScore
2.40
自引率
0.00%
发文量
173
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