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Discrete mesoscopic modeling for the simulation of woven-fabric reinforcement forming

机译:离散介观模型用于机织物增强成型的模拟

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摘要

A discrete modeling approach is proposed to simulate woven-fabric reinforcement forming via explicit finite element analysis. The tensile behaviour of the yarns is modeled by truss, beam or seatbelt elements, and the shearing behaviour of the fabric is incorporated within shell or membrane elements. This method is easy to set up using the user-defined material subroutine capabilities of explicit finite element programs. In addition, the determination of the material parameters is straightforward from conventional tensile and shear-frame tests. The proposed approach has been implemented in the ABAQUS and LS-DYNA explicit finite element programs. Two types of fabric, a plain-weave and a twill-weave Twintex (commingled polypropylene and glass fibres) were characterized and used to validate the modeling approach. For this validation, shear-frame and bias-extension tests have been modeled, and the finite element results are compared to experimental data. The determination of experimental shear angle contours was possible via Digital Image Correlation (DIC). The finite element results from ABAQUS and LS-DYNA are similar and agree well with the experimental data. As an example of the capabilities of the method, the deep drawing of a hemisphere is simulated using both finite elements programs.
机译:提出了一种离散建模方法,通过显式有限元分析来模拟织物的增强成型。纱线的拉伸行为是通过桁架,梁或安全带元素建模的,而织物的剪切行为则包含在壳或膜元素中。使用显式有限元程序的用户定义材料子例程功能,可以轻松设置此方法。另外,从常规的拉伸和剪切框架测试中可以直接确定材料参数。所提出的方法已在ABAQUS和LS-DYNA显式有限元程序中实现。表征了两种类型的织物:平纹织物和斜纹织物Twintex(聚丙烯和玻璃纤维混合),并用于验证建模方法。为了进行此验证,已对剪切框架试验和偏斜延伸试验进行了建模,并将有限元结果与实验数据进行了比较。通过数字图像相关性(DIC)可以确定实验剪切角轮廓。 ABAQUS和LS-DYNA的有限元结果相似,与实验数据吻合良好。作为该方法功能的一个示例,使用两个有限元程序都模拟了半球的深冲图。

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