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材料对鞋类性能的影响:有限元模拟研究

The Influence of Materials on Footwear Behaviour: A Finite Element Simulation Study.

作者信息

Seul Arina, Mihai Aura, Costea Mariana, Bodoga Alexandra, Curteza Antonela

机构信息

Faculty of Industrial Design and Business Management, "Gheorghe Asachi" Technical University of Iasi, 700050 Iasi, Romania.

出版信息

Materials (Basel). 2023 Nov 17;16(22):7203. doi: 10.3390/ma16227203.

Abstract

The objective of this study was to analyse the influence of materials and their position within the upper assembly on the behaviour of casual footwear using finite element simulation tools. The study was carried out on three models of casual footwear, which are identical in terms of design lines, varying only in the materials of the upper assembly, namely calfskin leather (M1), knitted fabric (M2), and combination of knitted fabric and calfskin leather (M3). The footwear models were designed according to the design constraints specific to casual footwear. The foot was reconstructed based on the shoe last obtained based on anthropometric data. Material definition, 3D models editing, setting up analysis conditions, and constraints were performed using the Ansys 17.2 software. Gait biomechanics were taken into account to define the loading model, force distribution, force values, and constraints. The study evaluates footwear behaviour in terms of directional deformation (Z axis), equivalent von Mises stress, and equivalent elastic strain distribution. This paper explores a methodology that has the potential to enhance the footwear design and manufacturing process, providing designers with information about the deformations and stress distribution on upper parts of the footwear product.

摘要

本研究的目的是使用有限元模拟工具分析材料及其在上部组件中的位置对休闲鞋性能的影响。该研究针对三种休闲鞋模型展开,这些模型在设计线条方面相同,仅在上部组件的材料上有所不同,即小牛皮革(M1)、针织面料(M2)以及针织面料与小牛皮革的组合(M3)。鞋类模型是根据休闲鞋特有的设计约束条件设计的。基于人体测量数据获得的鞋楦对足部进行了重建。使用Ansys 17.2软件进行材料定义、3D模型编辑、设置分析条件和约束。考虑了步态生物力学来定义加载模型、力分布、力值和约束。该研究从定向变形(Z轴)、等效冯·米塞斯应力和等效弹性应变分布方面评估鞋类性能。本文探索了一种有可能改进鞋类设计和制造过程的方法,为设计师提供有关鞋类产品上部变形和应力分布的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/04d1/10672570/8179719cb657/materials-16-07203-g001.jpg

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