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Through Process Modeling Approach: Effect of Microstructure on Mechanical Properties of Fiber Reinforced Composites

机译:通过过程建模方法:微观结构对纤维增强复合材料力学性能的影响

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In this work, A Through Process Modelling (TPM) methodology suitable for coupling the microstructure and the elastic properties of composites considering plastic injection molding process is presented. The key tasks discussed in this study are: (1) simulation of the whole manufacturing process in order to get the fiber orientation distribution (FOD) at each point of the part, (2) estimation of local effective properties using the orientation tensor obtained by performing a two-step homogenization and (3) Prediction of macroscopic mechanical response as a function of a local anisotropy using a mean-field homogenization technique which is based on assumed relationships between average values of strain and stress fields in each phase. The scheme suggested allows, to analyze the influence of processing conditions on elastic properties of composites. By changing these conditions, for example, the injection mode (central or linear), the cavity thickness, the fiber volume fraction, the microstructure and hence the local elastic properties of the material can be tailored. Thus, for desired structural response of composites, the optimum filling parameters can be chosen even at the stage of design.
机译:在这项工作中,提出了一种通过用于耦合微观结构的通过过程建模(TPM)方法,以及考虑塑料注射成型过程的复合材料的弹性性能。本研究中讨论的关键任务是:(1)对整个制造过程的仿真,以便在零件的每个点处获得纤维取向分布(FOD),(2)使用通过所获得的方向张量估计局部有效性使用平均场均质化技术执行两步均匀化和(3)预测宏观机械响应的局部各向异性的函数,这是基于每个阶段中应变和应力场的平均值之间的假定关系。该方案建议允许分析加工条件对复合材料弹性性质的影响。通过改变这些条件,例如,注射模式(中央或线性),腔厚度,纤维体积分数,微观结构和因此材料的局部弹性特性可以定制。因此,对于复合材料的期望结构响应,即使在设计阶段也可以选择最佳填充参数。

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