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Effect of the Diameter Ratio on the Flexural Stress of Carbon Fibre Composite Rod

机译:直径比对碳纤维复合杆弯曲应力的影响

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Carbon fibre composite rod (CFCR) is an important part during the design of Aluminum Conductor Composite Core (ACCC) conductor. CFCR is used to improve the bearing capacity in order to make sure the safety of electric power supply. The flexural failure of CFCR could lead to the outage of electric power. Therefore, it is important to investigate the flexural behavior of CFCR. The diameter of CFCR and the diameter of wheel have a great effect on the flexural failure of CFCR. This paper presents a finite element model (FEM) to analyze the stress in CFCR under flexural loading. Based on the proposed FEM, the effect of diameter ratio on the flexural stress of CFCR is analyzed. Using the calculated results, the variation of flexural stress with the diameter ratio is obtained. These conclusions would help to design Aluminum Conductor Composite Core (ACCC) conductor.
机译:碳纤维复合杆(CFCR)是铝导体复合芯(ACCC)导体设计期间的重要零件。 CFCR用于改善承载力,以确保电源的安全性。 CFCR的抗弯曲失败可能导致电力的停电。因此,探讨CFCR的抗弯行为是重要的。 CFCR的直径和车轮的直径对CFCR的抗抗衰竭具有很大的效果。本文介绍了有限元模型(FEM),以分析弯曲负荷下CFCR中的应力。基于所提出的FEM,分析了直径比对CFCR弯曲应力的影响。使用计算结果,获得具有直径比的弯曲应力的变化。这些结论将有助于设计铝导体复合核心(ACCC)导体。

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