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Improving fit through the integration of anthropometric data into a computer aided design and manufacture based design process

机译:通过将人体测量数据集成到基于计算机辅助设计和制造的设计过程中来提高贴合度

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摘要

For all types of clothing and body worn technologies it is important to consider how they integrate and interact with the complex shapes that form the unique profile of the human body. This interaction determines the fit of these products and it is often difficult to generate a fit that can simultaneously accommodate these complex shapes. Achieving the correct fit is determined by a number of different factors that must be combined appropriately to create the fit associated with a particular product. This is particularly applicable to Personal Protective Equipment (PPE) to ensure it provides protection while maintaining comfort, mobility and good interaction with the surrounding environment. Integrating suitable anthropometric data into the design and manufacture of this type of clothing plays a critical role in achieving a good fit. By using various processes of Computer Aided Design (CAD) and Computer Aided Manufacture (CAM), the detail contained within these data can be quickly and accurately transferred into physical tools. The aim of this study was to demonstrate and validate a method of enhancing the fit of PPE handwear. This has been achieved through an action research strategy using descriptive and practical research methods. The research tools primarily used are case studies, used to demonstrate how manually collected 2D anthropometric data can be used to generate computer models that represent these data in a 3D form. The products of the case studies are tools that have been introduced into the design and manufacture processes of commercial handwear manufacturing environments. The tools have successfully been used to produce gloves using two different manufacturing methods and been assessed to analyse their fit. An improvement in fit for the gloves has been quantified through user trials to determine the level of increased performance afforded to the wearer. The conclusions drawn from the case studies demonstrate that the integration of anthropometric data and CAD/CAM can greatly influence the fit of handwear and improve the iterative processes of its design. However, the data alone does not achieve this as the added integration of tacit knowledge related to glove design is needed to ensure the correct properties are included to the meet the needs of the target population. The methods developed in the case studies have the potential to be applied to other products where fit and interaction with the human body are important design considerations.
机译:对于所有类型的服装和身体穿戴技术,重要的是要考虑它们如何与形成人体独特轮廓的复杂形状融合并相互作用。这种相互作用决定了这些产品的合身性,通常很难产生可以同时适应这些复杂形状的合身性。实现正确的配合取决于许多不同的因素,必须将这些因素适当组合以产生与特定产品相关的配合。这尤其适用于个人防护设备(PPE),以确保其在提供防护的同时保持舒适性,移动性以及与周围环境的良好交互性。将合适的人体测量数据集成到此类服装的设计和制造中,对于实现良好的合身性至关重要。通过使用计算机辅助设计(CAD)和计算机辅助制造(CAM)的各种过程,这些数据中包含的详细信息可以快速而准确地转移到物理工具中。这项研究的目的是演示和验证一种提高PPE手部贴合度的方法。这是通过使用描述性和实用研究方法的行动研究策略来实现的。主要使用的研究工具是案例研究,用于演示手动收集的2D人体测量数据如何用于生成以3D形式表示这些数据的计算机模型。案例研究的产品是已被引入商业手饰制造环境的设计和制造过程中的工具。该工具已成功用于通过两种不同的制造方法生产手套,并经过评估以评估其适合性。手套的贴合性改进已通过用户试用进行了量化,以确定提供给佩戴者的性能提高水平。案例研究得出的结论表明,人体测量数据与CAD / CAM的集成可以极大地影响手饰的合身性,并改善其设计的迭代过程。但是,仅凭数据并不能实现这一目标,因为需要增加与手套设计有关的隐性知识的集成,以确保包括正确的属性以满足目标人群的需求。案例研究中开发的方法有可能应用于其他产品,在这些产品中,与人体的贴合和相互作用是重要的设计考虑因素。

著录项

  • 作者

    Williams Gavin L;

  • 作者单位
  • 年度 2007
  • 总页数
  • 原文格式 PDF
  • 正文语种 English
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