高密度聚乙烯非织造布在创意服装中的设计实践  

Design practice of TYVEK environmental materials in creative clothing

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作  者:罗森 郭明昊 朱达辉[1] LUO Sen;GUO Minghao;ZHU Dahui(College of Fashion and Design,Donghua University,Shanghai 200051,China;School of Fine Arts,Beijing Institute of Fashion Technology,Beijing 100029,China)

机构地区:[1]东华大学服装与艺术设计学院,上海200051 [2]北京服装学院美术学院,北京100029

出  处:《毛纺科技》2023年第12期52-59,共8页Wool Textile Journal

基  金:国家社会科学基金项目(19BGL130);上海市设计学Ⅳ类高峰学科资助项目(DD18001)

摘  要:后疫情时代与“双碳”目标的双重背景下,集卫生保健性能与环保可持续性能于一体的高密度聚乙烯非织造布(TYVEK材料)脱颖而出,成为各品牌的选材热点,但目前缺乏对高密度聚乙烯非织造布设计方法的理论研究,导致基于TYVEK材料的实际应用较少。针对这一问题,首先通过文献查阅法与专家咨询法,分析了TYVEK材料的服用特点;其次利用面料实验法及案例分析法,归纳总结了TYVEK材料在创意服装设计中以增型装饰法、减型装饰法、立体装饰法及多功能可变形装饰法为主的设计方法;最后以毕加索的画作为设计灵感,探析了TYVEK材料在创意服装中的设计实践,以期丰富TYVEK材料的设计理论与方法,并为探寻环保材料与纺织服装领域的设计融合提供参考。Under the dual background of the post-epidemic era and the carbon peaking and carbon neutrality goals,TYVEK materials,which combine health care performance and environmental protection and sustainable performance,stand out and become the hot material selection of various brands.However,at present,there is a lack of theoretical research on TYVEK material design methods,resulting in few practical applications based on TYVEK materials.To solve this problem,the characteristics of TYVEK was reviewed by literature review and expert consultation in this paper.Then,by using fabric experiment method and case analysis method,the design methods of TYVEK material in creative clothing design were summarized,which mainly included incremental decoration method,subtractive decoration method,three-dimensional decoration method and multi-functional deformable decoration method.Finally,taking Picasso′s painting as design inspiration,the design practice of TYVEK material in creative clothing was analyzed,in order to enrich the design theory and method of TYVEK material,and to provide reference for exploring the design integration of environmental protection materials and textile and clothing field.

关 键 词:TYVEK材料 环保材料 功能面料 创意服装 可持续设计 设计实践 

分 类 号:TS941.11[轻工技术与工程—服装设计与工程] TS941.15

 

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