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作 者:钱静 赵蒙蒙 党天华 QIAN Jing;ZHAO Mengmeng;DANG Tianhua(College of Textiles and Fashion, Shanghai University of Engineering Science, Shanghai 201620, China)
机构地区:[1]上海工程技术大学纺织服装学院,上海201620
出 处:《纺织学报》2022年第4期133-139,共7页Journal of Textile Research
基 金:国家自然科学基金项目(1908349);现代服装设计与技术教育部重点实验室(东华大学)开放课题项目(KLCDT2020-06)。
摘 要:为研究服装开口方式和风扇风速对通风服衣下空气层的体积、厚度及分布的影响,采用三维扫描法得到人体和服装的几何模型,通过逆向工程软件Geomagic Control对模型进行处理,分析不同条件下空气层厚度和体积的差异,以及空气层的分布规律。结果表明:风扇风速对平均空气层厚度的影响比开口方式更明显;风扇风速对整体和局部空气层的厚度影响显著,风扇风速越大,一些部位的空气层厚度越厚,且分布得更加均匀;从胸部和腰部2个部位空气层的二维比较结果可以看出,随风速和开口的改变,胸部的空气层厚度变化并不明显,而腰部发生了明显变化。In order to study the influence of clothing with different opening position and wind speeds on the volume,thickness and distribution of air layer under an air ventilation clothing,three-dimensional scanning method was adopted to obtain geometric models of human body and clothing.The model was then processed by reverse engineering software,Geomagic Control,to analyze the difference in thickness and volume of air layer and obtain the distribution regularities of air layer under different conditions.The results show that the influence of wind speed on the average air layer thickness is more obvious than that of the opening mode.The wind speeds of the fans have a significant effect on the overall and local air layer thickness.The higher is the wind speed,the thicker is the air layer in body part,and more evenly distributed is the air layer.From the two-dimensional comparison of the air layer in the chest and waist areas,it can be seen that the thickness of the air layer in the chest does not change significantly with the changes of the wind speed and the opening,while the air layer in the waist is affected significantly.
关 键 词:通风服 三维扫描法 逆向工程软件 分布规律 空气层厚度
分 类 号:TS941.731[轻工技术与工程—服装设计与工程]
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