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The development of anti-heat stress clothing for construction workers in hot and humid weather

机译:炎热天气下建筑工人抗热应激服装的开发

摘要

The purpose of this study was to develop anti-heat stress clothing for construction workers in hot and humid weather. Following DeJonge's functional clothing design process, the design situation was explored, including clothing fabric heat/moisture transporting properties and UV protection and the aspects of clothing ergonomic design (mobility, convenience, and safety). The problem structure was derived from the results of the surveys in three local construction sites, which agreed well with the task requirements and observations. Specifications were consequently described and 30 commercially available fabrics were identified and tested. Fabric testing data and design considerations were inputted in S-smart system to predict the thermal functional performance of the clothing. A new uniform prototype was developed and evaluated. The results of all measurements suggest that the new uniform which incorporated fabrics with superior heat/moisture transporting properties and loose-fitting design could reduce the workers' heat stress and improve their comfort and work performance. Practitioner Summary: The construction workers' uniform currently used in Hong Kong during summer was unsatisfactory. Following DeJonge's functional clothing design process, an anti-heat stress uniform was developed by testing 30 fabrics and predicting clothing thermal functional performance using S-smart system. The new uniform could reduce the workers' heat stress and improve their comfort and work performance.
机译:这项研究的目的是为炎热潮湿的天气中的建筑工人开发抗热应力服装。按照DeJonge的功能性服装设计过程,探讨了设计情况,包括服装织物的热/湿传输特性和紫外线防护以及服装人体工程学设计(移动性,便利性和安全性)方面。问题结构来自三个地方建筑工地的调查结果,这些结果与任务要求和观察结果非常吻合。因此描述了规格,并鉴定和测试了30种市售织物。将织物测试数据和设计考虑因素输入到S-smart系统中,以预测服装的热功能性能。开发并评估了新的制服原型。所有测量的结果表明,这种新的制服结合了具有优异的热/水分传输性能和宽松合身设计的面料,可以减少工人的热应力并改善其舒适度和工作性能。从业人员摘要:夏季在香港目前使用的建筑工人制服并不令人满意。按照DeJonge的功能性服装设计流程,通过测试30种织物并使用S-smart系统预测服装的热功能性能,开发出了抗热应力制服。新的制服可以减轻工人的热量压力,并改善他们的舒适度和工作绩效。

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