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Effects of fiber nonlinear properties on the compressive strength prediction of unidirectional carbon-fiber composites

机译:纤维非线性特性对单向碳纤维复合材料抗压强度预测的影响

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Compressive strength of unidirectional carbon-fiber composites is analyzed with emphasis on the nonlinear elasticity of carbon fiber. The deformation and stress state in a kink band is solved numerically using an incremental form of the governing equations, and compressive strength is determined for a given kink band angle and initial fiber misalignment. Constitutive equations are based on one-parameter plasticity model and nonlinear elasticity, which is attributed to matrix plasticity and fiber nonlinearity, respectively. Effects of fiber nonlinear properties on the predicted compressive strength are investigated under various conditions of initial fiber misalignments, kink band angles, and fiber properties. Nonlinear fiber properties turn out to reduce the predicted compressive strength of unidirectional composites in the cases of small fiber misalignments.
机译:分析了单向碳纤维复合材料的抗压强度,重点是碳纤维的非线性弹性。使用控制方程的增量形式对扭结带中的变形和应力状态进行数值求解,并针对给定的扭结带角度和初始纤维未对准确定抗压强度。本构方程基于一参数可塑性模型和非线性弹性,这分别归因于基体可塑性和纤维非线性。在初始纤维未对准,扭结带角和纤维特性的各种条件下,研究了纤维非线性特性对预测抗压强度的影响。事实证明,在纤维未对准的情况下,非线性纤维特性会降低单向复合材料的预测抗压强度。

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