首页> 外文会议>14th ASTM International Symposium on Composite Materials: Testing and Design; Mar 11-12, 2002; Pittsburgh, PA >Experimental and Computational Characterization of the High Strain Rate Tensile Response of Polymer Matrix Composites
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Experimental and Computational Characterization of the High Strain Rate Tensile Response of Polymer Matrix Composites

机译:聚合物基复合材料高应变速率拉伸响应的实验和计算表征

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A research program is underway to experimentally characterize the strain rate dependent deformation and failure response of polymer matrix composites subject to high strain rate impact loads and to develop strain rate dependent deformation and failure models for the analysis of these types of materials. State variable constitutive equations based on a viscoplasticity approach have been developed to model the deformation of the polymer matrix. The constitutive equations are then combined with a mechanics of materials based micromechanics model which utilizes fiber substructuring to predict the effective mechanical and thermal response of the composite. Tensile stress-strain curves for a representative composite are obtained experimentally for strain rates ranging from quasi-static to several hundred per second. The developed numerical procedure is also used to compute the deformation response. The predictions compare favorably to the experimentally obtained values both qualitatively and quantitatively. Effective elastic and thermal constants are predicted for another composite, and compared to finite element results.
机译:正在进行一项研究计划,以实验方式表征承受高应变速率冲击载荷的聚合物基复合材料的应变速率相关变形和破坏响应,并开发出应变速率相关变形和破坏模型以分析这些类型的材料。已经开发了基于粘塑性方法的状态变量本构方程来模拟聚合物基体的变形。然后,将本构方程与基于材料的力学微力学模型相结合,该模型利用纤维子结构来预测复合材料的有效机械响应和热响应。实验得到了代表性复合材料的拉伸应力-应变曲线,其应变速率范围为准静态到每秒几百。所开发的数值程序也可用于计算变形响应。该预测在质量和数量上均优于实验获得的值。可以预测另一种复合材料的有效弹性常数和热常数,并将其与有限元结果进行比较。

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