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首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >A Computational Approach to Model Interfacial Effects on the Mechanical Behavior of Knitted Textiles
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A Computational Approach to Model Interfacial Effects on the Mechanical Behavior of Knitted Textiles

机译:一种模拟针织纺织机械行为的界面效应的计算方法

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摘要

The mechanical behavior of knitted textiles is simulated using finite element analysis (FEA). Given the strong coupling between geometrical and physical aspects that affect the behavior of this type of engineering materials, there are several challenges associated with the development of computational tools capable of enabling physics-based predictions, while keeping the associated computational cost appropriate for use within design optimization processes. In this context, this paper investigates the relative contribution of a number of computational factors to both local and global mechanical behavior of knitted textiles. Specifically, different yarn-to-yarn interaction definitions in three-dimensional (3D) finite element models are compared to explore their relative influence on kinematic features of knitted textiles' mechanical behavior. The relative motion between yarns identified by direct numerical simulations (DNS) is then used to construct reduced order models (ROMs), which are shown to be computationally more efficient and providing comparable predictions of the mechanical performance of knitted textiles that include interfacial effects between yarns.
机译:使用有限元分析(FEA)模拟针织纺织品的力学行为。鉴于影响这种类型的工程材料行为的几何和物理方面之间的强耦合,与能够实现基于物理的预测的计算工具的开发有几个挑战,同时保持相关的计算成本适合在设计内使用优化过程。在这方面,本文调查了许多计算因素对针织纺织品的局部和全球机械行为的相对贡献。具体地,将三维(3D)有限元模型中的不同的纱线相互作用定义进行了比较,以探讨它们对针织纺织品行为运动特征的相对影响。然后使用直接数值模拟(DNS)鉴定的纱线之间的相对运动来构建减少的订单模型(ROM),其被示出为计算地更有效,并且提供包括纱线之间的针织纺织品的机械性能的可比预测。

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