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The effect of loop density on the tensile behavior of biaxial weft knitted composites using both experimental tests and numerical method

机译:环密度对双轴纬编针织复合材料的抗拉性行为的影响,使用实验试验和数值方法

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In this study, a high-tenacity polyester was used to produce biaxial weft knitted fabric in three different loop densities. All of the composite samples were manufactured using the vacuum injection process. Epoxy resin was used as the matrix in the composite samples. Tensile tests in the course and wale directions were carried out on all samples. The results showed that the tensile strength and the elastic modulus of the composites were improved by increasing the loop density. On the other hand, multi-scale finite element modeling was employed to predict the elastic constants and the tensile strength of the composites. In this method, unit-cells of biaxial weft knitted fabrics with a script were modeled by ABAQUS finite element software in the meso scale. Periodic boundary conditions were applied to the unit-cells. Stiffness matrices of composites were calculated by a python code. In the macro model, a shell geometry was created and the elastic constants calculated from the meso scale were assigned to the macro model. The tensile strength of composites in the course and wale directions was predicted by the Tsai-Wu failure criterion equations. The numerical results had a good agreement with the experimental ones. According to the numerical results, the difference in the loop densities as the inputs data could be used and elastic constants and strength of composites in the course and wale directions could be obtained. So, this model is a useful method to predict the tensile behavior of biaxial weft knitted composites with different geometries.
机译:在这项研究中,使用高韧性聚酯在三种不同的环密度中生产双轴纬编针织织物。使用真空注射过程制造所有复合样品。环氧树脂用作复合样品中的基质。在所有样品上进行课程和扭曲方向的拉伸试验。结果表明,通过增加环密度来提高复合材料的拉伸强度和弹性模量。另一方面,采用多尺度有限元建模来预测复合材料的弹性常数和拉伸强度。在该方法中,Biaxial Weft针织织物的单元 - 细胞与脚本进行了模拟的中间尺度中的Abaqus有限元软件。将周期性边界条件施加到单位细胞上。复合材料的刚度矩阵由Python码计算。在宏模型中,创建了壳体几何体,并将从Meso刻度计算的弹性常数分配给宏模型。 TSAI-WU故障标准方程预测了过程中复合材料的拉伸强度和阀门方向。数值结果与实验结果吻合良好。根据数值结果,可以使用作为输入数据作为输入数据的环密度的差异,并且可以获得过程中的弹性常数和复合材料的强度和阀门方向。因此,该模型是预测具有不同几何形状的双轴纬纱编织复合材料的抗拉行为的有用方法。

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