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Simulation of the Spherical Deformation of Biaxial Weft-Knitted Fabrics Using Meso and Macro Models

机译:用细观模型和宏观模型模拟双轴纬编针织物的球形变形

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The main objective. of this research is the numerical simulation of the spherical deformation of biaxial weft-knitted fabrics produced based on 1x1 rib structure. Biaxial knitted samples were produced on a modem flat knitting machine using the polyester yam as the fabrics stitch background and the nylon yam as the reinforcing inlays. Bagging test was applied to the samples for investigating their behaviors during the spherical deformation. Considering two different approaches in analytical studies, the test procedure and its results were simulated through the Abaqus software environment based on the finite element method. In the first approach, by the help of Python scripting, the real structure of the fabric was simulated based on a unit-cell of the three-dimensional loop model for 1x1 rib structure comprised of warp and weft reinforcing yams. In the second approach a constitutive equation was used for macro modeling of biaxial knitted fabrics. The stiffness matrices of these fabrics were assumed to be a combination of stiffness matrices for both 1x1 rib based-structure and reinforcement yarns. To implement the constitutive behavior in Abaqus software, a VUMAT subroutine was provided. To evaluate the accuracy of the two suggested models, fabric spherical deformation was simulated and results were compared with experimental measurements. The findings showed that the both models can successfully predict the spherical deformation of the biaxial weft knitted fabric.
机译:主要目标。该研究是基于1x1罗纹结构生产的双轴纬编针织物球形变形的数值模拟。双轴编织样品是在现代横机上生产的,使用聚酯纱线作为织物缝合背景,尼龙纱线作为增强嵌体。将装袋测试应用于样品以研究其在球形变形期间的行为。考虑到分析研究中的两种不同方法,通过基于有限元方法的Abaqus软件环境模拟了测试过程及其结果。在第一种方法中,借助于Python脚本,基于三维循环模型的单位单元,对由经纱和纬纱加固的1x1肋骨结构模拟了织物的真实结构。在第二种方法中,本构方程用于双轴针织物的宏观建模。假定这些织物的刚度矩阵是1x1罗纹基布和增强纱的刚度矩阵的组合。为了在Abaqus软件中实现本构行为,提供了VUMAT子例程。为了评估两个建议模型的准确性,对织物的球形变形进行了仿真,并将结果与​​实验测量结果进行了比较。结果表明,两个模型都可以成功预测双轴纬编针织物的球形变形。

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