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首页> 外文期刊>Journal of Materials Science >A study of computational mechanics of 3D spacer fabric: Factors affecting its compression deformation
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A study of computational mechanics of 3D spacer fabric: Factors affecting its compression deformation

机译:3D间隔织物的计算力学研究:影响其压缩变形的因素

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摘要

Mechanical properties of a 3D spacer fabric are determined both by mechanical properties of its components and its unique structure. However, at present, there is no well-received method to describe the mechanical performance of a 3D spacer fabric. In this article, numerical methods are used to analyze a compression mechanism of a typical 3D spacer fabric, as an example, based on features of its structure. Micro X-ray computed tomography was used to determine a precise geometry model of the studied fabric. To give a deeper understanding of the effects of the fabric's structure on its mechanical properties, the finite element (FE) method was used to simulate the compression process of the fabric; seven FE models were developed to simulate its compression behavior. Based on results obtained with these models, the compression mechanism of the 3D spacer fabric is summarized and the factors affecting it are determined. The same method of analysis can be extended to other studies of 3D fabrics.
机译:3D间隔织物的机械性能既取决于其组件的机械性能,也取决于其独特的结构。但是,目前尚没有一种公认的方法来描述3D间隔织物的机械性能。在本文中,基于其结构特征,使用数值方法来分析典型3D间隔织物的压缩机理。微型X射线计算机断层扫描用于确定所研究织物的精确几何模型。为了更深入地了解织物结构对其机械性能的影响,使用了有限元(FE)方法来模拟织物的压缩过程。开发了七个有限元模型来模拟其压缩行为。基于这些模型获得的结果,总结了3D间隔织物的压缩机理,并确定了影响其的因素。相同的分析方法可以扩展到3D织物的其他研究。

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