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Application 0f design for disassembly in men's jacket A study on sustainable apparel design

机译:0f设计在男式外套拆卸中的应用可持续服装设计研究

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Purpose - Combining of natural and synthetic materials in apparel products caused problems with material recovery, reuse, recycling, or composting at the end of product life. The purpose of this paper is to investigate the application of design for disassembly methods in the design and construction of men's jacket. With this type of design, consumers and manufacturers can easily compost, recycle, or reuse different materials and components at the end of the garment's usable life. Design/methodology/approach - After analyzing the men's jackets available in the market and identifying obstacles to disassembly, the authors designed and constructed a man's jacket that can be easily disassembled. The jacket design for disassembly focused on material selection, jacket design, and stitch evaluation and selection. The disassembly time was also measured. Findings - It was found that minimizing material diversity and sewing similar materials together whenever possible, replacing fusible interfacing with blind hemming stitches under the collar and on the backside of the lapel, and using an appropriate low density stitch to sew the wool outer shell and polyester lining together, can make the jacket disassemble easily into a compostable outer shell and recyclable lining within 1.5 min. Originality/value - This research provided a pilot study demonstration of applying "design for disassembly" in apparel design and construction. The findings could be employed in different apparel products to help reduce environmental pollution and resource depletion problems related to the apparel industry.
机译:目的-服装产品中天然和合成材料的结合会在产品寿命结束时导致材料回收,再利用,回收或堆肥方面的问题。本文的目的是研究拆卸方法在男式夹克设计和建造中的应用。通过这种类型的设计,消费者和制造商可以在服装使用寿命结束时轻松地堆肥,回收或再利用不同的材料和组件。设计/方法/方法-分析了市场上可用的男式夹克并确定了拆卸障碍之后,作者设计并制造了易于拆卸的男式夹克。用于拆卸的夹克设计着重于材料选择,夹克设计以及针迹评估和选择。还测量了拆卸时间。发现-发现可以最大程度地减少材料多样性,并在可能的情况下将相似的材料缝合在一起,用衣领下面和翻领背面的盲折边针迹来取代易熔的接口,并使用适当的低密度针迹来缝制羊毛外壳和聚酯纤维衬里在一起,可使夹克在1.5分钟内轻松分解成可堆肥的外壳和可回收衬里。原创性/价值-这项研究提供了在服装设计和制造中应用“拆卸设计”的试点研究演示。研究结果可用于不同的服装产品中,以减少与服装行业有关的环境污染和资源枯竭问题。

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