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Simulation Study on Mechanical Properties of Carbon Fiber Composite Core for UHV Transmission Conductor

机译:UHV变速器导体碳纤维复合芯力学性能模拟研究

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Carbon fiber composite core conductors has many excellent comprehensive properties and is gradually popularized and applied in UHV transmission lines. However, the composite core has strong axial tensile capacity, weak radial shear performance and weak compressive performance. It is prone to damage and failure of the fibers inside the mandrel during the production, transportation and so on. There are hidden safety risks. In this paper, ABAQUS is used to establish a simulation model to obtain the equivalent stress inside the carbon fiber composite core under tension, torsion and winding. The research shows the tensile / torsion of the composite core reaches the critical condition, the interface between the carbon fiber epoxy resin and the glass fiber epoxy resin composite begins to appear interlayer failure. The composite core is destroyed when the maximum shear stress of the composite core exceeds the allowable limit of the glass fiber epoxy resin-based material under the torque. When the composite core is winding, the maximum equivalent stress is concentrated at the boundary between carbon fiber epoxy resin and glass fiber epoxy resin composite material. The research provided a theoretical basis for the design and safe use of Carbon fiber composite core conductors in UHV transmission lines.
机译:碳纤维复合芯导体具有许多优异的综合性能,并逐步推广并应用于UHV传输线。然而,复合芯具有强大的轴向拉伸能力,径向剪切性能弱和弱压缩性能。在生产,运输等过程中,心轴内的纤维损坏和失效。存在隐藏的安全风险。在本文中,ABAQUS用于建立模拟模型,以在张力,扭转和绕组下获得碳纤维复合核心内的等效应力。该研究表明,复合芯的拉伸/扭转达到临界条件,碳纤维环氧树脂与玻璃纤维环氧树脂复合材料之间的界面开始出现层间衰竭。当复合芯的最大剪切应力超过扭矩下的玻璃纤维环氧树脂基材料的允许极限时,复合芯被破坏。当复合芯绕组时,最大等效应力集中在碳纤维环氧树脂和玻璃纤维环氧树脂复合材料之间的边界处。该研究为UHV传输线中的碳纤维复合芯导体的设计和安全使用提供了理论依据。

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