服装CAD中织物力学参数的三维仿真研究

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Xiaoqun Dai , Yan Hong
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引用次数: 0

摘要

服装CAD系统中三维虚拟服装仿真的主要目标是生成高度逼真、准确符合人体的服装。然而,由于纺织力学的复杂性、测量技术的变化以及机械参数标准化单位的缺乏,在织物仿真中机械参数的实现存在相当大的混乱。因此,在不同的服装CAD系统中,布料仿真的精度差异很大。本研究旨在增进对织物力学行为、测量技术及布料模拟所需参数的了解。为了实现这一目标,我们首先简要概述了当前服装CAD系统中的服装仿真,重点介绍了用于仿真精度评估的机械参数和方法。随后,我们深入研究了机械行为的基本原理,讨论了测量方法,并提出了参数统一以及适当的数据范围。最后,我们对布料模型和必要的参数进行了全面的回顾,同时也探索了基于仿真的参数估计方法。这项工作为实现精确的3D虚拟服装模拟提供了至关重要的织物机械参数。本文的研究结果和信息可以有效地用于提高服装CAD系统的精度和保真度,从而促进虚拟服装设计和生产的进步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Fabric mechanical parameters for 3D cloth simulation in apparel CAD: A systematic review

Fabric mechanical parameters for 3D cloth simulation in apparel CAD: A systematic review

The primary objective of 3D virtual garment simulation within apparel CAD systems is to generate a highly realistic garment that accurately conform to the human body. However, due to the complexity of textile mechanics, variations in measurement technology, and the absence of standardized units of mechanical parameters, there exists considerable confusion surrounding the implementation of mechanical parameters in cloth simulation. Consequently, the accuracy of cloth simulation varies significantly among different apparel CAD systems. This research article aims to enhance the understanding of the fabric mechanical behaviors, measurement techniques, and parameters essential for cloth simulation. To achieve this objective, we first present a concise overview of current garment simulation in apparel CAD systems, focusing on the utilized mechanical parameters and methods for simulation accuracy evaluation. Subsequently, we delve into the fundamental principles of mechanical behavior, discussing measurement methodologies and proposing parameter unifications along with appropriate data ranges. Finally, we conduct a comprehensive review of cloth models and the requisite parameters, while also exploring simulation-based approaches for parameter estimation. This work provides crucial insights into fabric mechanical parameters essential for achieving accurate 3D virtual garment simulation. The findings and information presented herein can be effectively utilized to enhance the precision and fidelity of apparel CAD systems, thereby facilitating advancements in virtual garment design and production.

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来源期刊
CiteScore
7.20
自引率
4.30%
发文量
567
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