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3D bra and human interactive modeling using finite element method for bra design

机译:3D胸罩和人类交互式建模,使用有限元方法进行胸罩设计

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摘要

Bra design experiences a long process of development including some key aspects like material selection, pattern making and grading. The design and development processes are highly complex, which consist of many pattern engineering stages, specialized technologies and multiple trial-and errors. It is anticipated that a 3D bra design that incorporates information on the interaction between bra and breast can effectively improve the design process for optimal fit and comfort. In this paper, a novel personalized modeling system based on finite element (FE) contact model is first presented to simulate the breast-shaping effect and the pressure distribution of the skin exerted by a bra. The new knowledge can provide a basis for the computer-aided-design of well-fitting bras for the target customers. The FE body sub-models include a rigid torso and two soft breasts wearing a bra with or without an underwire. The geometry of the body was based on the 3D-scan data and the property of the breasts was considered a hyper-elastic Mooney-Rivlin model for simulating the deformation of the breasts. The simulation of bra wearing was performed by an FE contact model in a user-defined coordinate system. There were two main steps: (1) closing the shoulder straps and bra underband at the center back of the body, and (2) adjusting bra position using "virtual hands". The simulation results showed that although the wireless bra exerted less pressure on the breast, the shaping effects in terms of lifting, gathering and protruding were more obvious in the underwired bra. This result is consistent with the actual bra-wearing. The effect of wireless bra on the breast deformation was three fifths of the effect of underwired bra and this relationship could be used to predict the deformation of breasts with different materials of underwire at the early stage of bra design. The relative errors between simulated results in terms of the breast deformation and pressure distribution with a fitting experiment on an underwire bra were less than 10%. The FE model developed in this study, therefore, can be used as fundamentals for various sensitivity analyses about different bra design features for predicting the deformation of the breast shapes and comfort pressure with reasonable accuracy. (C) 2019 Elsevier Ltd. All rights reserved.
机译:BRA设计经历了长期发展的发展,包括材料选择,模式制作和分级等一些关键方面。设计和开发过程具有高度复杂的,包括许多模式工程阶段,专业技术和多种试验和错误。预计将包含关于文胸和乳房之间相互作用信息的3D文胸设计可以有效地改善设计过程以获得最佳的合适和舒适性。本文首先提出了一种基于有限元(FE)接触型号的个性化建模系统,以模拟胸罩施工的乳房成形效果和压力分布。新知识可以为目标客户提供良好装配胸罩的计算机辅助设计的基础。 Fe Body子模型包括刚性躯干和两个柔软的乳房,穿着胸罩,有带有束带的胸罩。身体的几何形状基于3D扫描数据,乳房的性质被认为是用于模拟乳房变形的超弹性Mooney-rivlin模型。通过FE接触模型在用户定义的坐标系中执行BRA佩戴的仿真。有两个主要步骤:(1)将肩带和胸罩关闭在身体的中心,(2)使用“虚拟手”调整胸罩位置。仿真结果表明,虽然无线文胸对乳房上的压力较小,但在欠频胸罩中的提升,聚集和突出方面的成型效果更为明显。这种结果与实际的胸罩笼罩一致。无线文胸对乳房变形的影响是欠频胸罩的效果的三分之一,这种关系可用于预测胸罩设计早期用不同材料的乳房的变形。模拟结果之间的相对误差在乳房变形和压力分布方面具有贴片胸罩的拟合实验的乳房变形和压力分布小于10%。因此,在本研究中开发的FE模型可以用作各种敏感性分析的基本原理,用于预测乳房形状的变形和具有合理精度的舒适压力。 (c)2019年elestvier有限公司保留所有权利。

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