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首页> 外文期刊>Applied composite materials >Modeling of Nonlinear Mechanical Behavior for 3D Needled C/C-SiC Composites Under Tensile Load
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Modeling of Nonlinear Mechanical Behavior for 3D Needled C/C-SiC Composites Under Tensile Load

机译:3D针刺C / C-SiC复合材料在拉伸载荷下的非线性力学行为建模

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摘要

This paper established a macroscopic constitutive model to describe the nonlinear stress-strain behavior of 3D needled C/C-SiC composites under tensile load. Extensive on- and off-axis tensile tests were performed to investigate the macroscopic mechanical behavior and damage characteristics of the composites. The nonlinear mechanical behavior of the material was mainly induced by matrix tensile cracking and fiber/matrix debonding. Permanent deformations and secant modulus degradation were observed in cyclic loading-unloading tests. The nonlinear stress-strain relationship of the material could be described macroscopically by plasticity deformation and stiffness degradation. In the proposed model, we employed a plasticity theory with associated plastic flow rule to describe the evolution of plastic strains. A novel damage variable was also introduced to characterize the stiffness degradation of the material. The damage evolution law was derived from the statistical distribution of material strength. Parameters of the proposed model can be determined from off-axis tensile tests. Stress-strain curves predicted by this model showed reasonable agreement with experimental results.
机译:本文建立了宏观的本构模型来描述3D针刺C / C-SiC复合材料在拉伸载荷下的非线性应力-应变行为。进行了广泛的轴上和轴外拉伸试验,以研究复合材料的宏观力学行为和损伤特性。材料的非线性力学行为主要是由基体拉伸裂纹和纤维/基体剥离引起的。在循环装卸测试中观察到永久变形和正割模量下降。材料的非线性应力-应变关系可以通过塑性变形和刚度退化来宏观描述。在提出的模型中,我们采用了可塑性理论和相关的塑性流动规则来描述塑性应变的演变。还引入了新的损伤变量来表征材料的刚度下降。损伤演化规律是从材料强度的统计分布中得出的。可以从离轴拉伸试验中确定所提出模型的参数。该模型预测的应力-应变曲线与实验结果基本吻合。

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