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首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >A Multiscale Homogenization Approach for Architectured Knitted Textiles
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A Multiscale Homogenization Approach for Architectured Knitted Textiles

机译:适用于建筑针织纺织品的多尺度均质方法

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摘要

As a type of architectured material, knitted textiles exhibit global mechanical behavior which is affected by their microstructure defined at the scale at which yarns are arranged topologically given the type of textile manufactured. To relate local geometrical, interfacial, material, kinematic and kinetic properties to global mechanical behavior, a first-order, twoscale homogenization scheme was developed and applied in this investigation. In this approach, the equivalent stress at the far field and the consistent material stiffness are explicitly derived from the microstructure. In addition, the macrofield is linked to the microstructural properties by a user subroutine which can compute stresses and stiffness in a looped finite element (FE) code. This multiscale homogenization scheme is computationally efficient and capable of predicting the mechanical behavior at the macroscopic level while accounting directly for the deformation-induced evolution of the underlying microstructure.
机译:作为一种架构材料,针织纺织品表现出全球机械行为,其受其在纱线布置的尺度上定义的微结构的影响,所述纱线在拓扑上赋予制造的纺织品类型。 为了将局部几何,界面,材料,运动学和动力学和动力学和动力学和动力学性能与全局力学行为联系起来,在这次调查中开发并应用了一流的TwoScale均质化方案。 在这种方法中,明确地从微观结构中明确地衍生出远场的等效应力和一致的材料刚度。 另外,Macrofield通过用户子程序链接到微结构属性,其可以计算循环有限元(FE)代码中的应力和刚度。 该多尺度均质化方案是计算上有效的,并且能够预测宏观水平的机械行为,同时直接算用于潜在的微观结构的变形诱导的演化。

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