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Evaluation of flexural modulus of carbon 3D orthogonal woven fabric using a trilinear model

机译:用三线性模型评估碳3D正交织物的弯曲模量

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Bending behaviour of 3D orthogonal carbon weave composite reinforcement has been investigated. The three-point bending test method has been employed and the load-deflection curves are examined. The influence of carbon fibre tow type, yarn insertion and tension of longitudinal yarns on fibre volume fraction and bending properties of non-crimp 3D orthogonal carbon weave is discussed. It is found that carbon fibre bending properties due to cross-section shape and geometry have a great impact on bending behavior of non-crimp 3D orthogonal carbon weave. Increasing the number of transversal yarns layers and tension of longitudinal yarns increases both fibre volume fraction and bending modulus of non-crimp 3D orthogonal carbon weave. From the bending properties calculated, the factors for improving fibre volume fraction and bending behavior of non-crimp 3D orthogonal carbon weaves are discussed.
机译:研究了3D正交碳编织复合增强材料的弯曲行为。采用了三点弯曲试验方法并检查了载荷-挠度曲线。讨论了碳纤维丝束的类型,纱线的插入和纵向纱线的张力对非卷曲3D正交碳编织的纤维体积分数和弯曲性能的影响。发现由于横截面形状和几何形状而引起的碳纤维弯曲性能对非卷曲3D正交碳编织的弯曲行为具有很大影响。横向纱线层数的增加和纵向纱线的张力的增加会增加非卷曲3D正交碳纤维编织的纤维体积分数和弯曲模量。从计算的弯曲性能出发,讨论了改善非卷曲3D正交碳纤维编织的纤维体积分数和弯曲行为的因素。

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