Analysis of Brittle Fracture of Composite Insulators by Using Finite Element Technique

N. P., Ravindran Kn, V. N
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Abstract

The Brittle fracture process causes cracks on the FRP rod of the Composite (Composite) insulator that leads to premature failure of Composite insulators. Major types of stress affecting the service life of an insulator are electrical, mechanical and environmental stress whereas the major physical threat is vandalism. For various transmission and subtransmission voltages, the insulators are required withstand the maximum tensile strength of the conductor. Therefore, understanding the mechanical stress withstanding capability of Composite insulator is important. Proper designing of the strength of FRP (Fibre Reinforced Plastic) rod is most important. FEA (Finite Element Analysis) analysis of voltage distribution along the length of the Composite insulator is also necessary for the understanding of electric field stress required for surface deterioration of Composite insulator. The mechanical stress analysis for various cross sections of FRP rods for a given mechanical load has to be carried out in order to optimize the diameter of the FRP rod for better reliability. FRP rods of different diameter were considered, it is observed that when diameter is increased the maximum stress is reduced and hence, by increasing the diameter of FRP road better results can be obtained. It is also observed that displacement is more in FRP rod of lower diameter.
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复合绝缘子脆性断裂的有限元分析
脆性断裂过程会使复合(复合)绝缘子的FRP棒产生裂纹,导致复合绝缘子过早失效。影响绝缘体使用寿命的主要应力类型是电气、机械和环境应力,而主要的物理威胁是人为破坏。对于各种传输和次传输电压,要求绝缘子承受导体的最大抗拉强度。因此,了解复合绝缘子的机械抗应力能力是十分重要的。合理设计FRP(纤维增强塑料)杆的强度至关重要。对复合绝缘子沿长度方向的电压分布进行有限元分析对于了解复合绝缘子表面劣化所需的电场应力也是必要的。为了优化FRP棒的直径以获得更好的可靠性,必须对FRP棒在给定机械载荷下的各种截面进行机械应力分析。考虑不同直径的FRP棒,观察到当直径增加时,最大应力减小,因此,增加FRP路径可以获得更好的效果。还观察到,小直径FRP杆的位移更大。
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