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The Cross-section of a Multi-disciplinary Project in View of Smart Textile Design Practice

机译:基于智能纺织品设计实践的多学科项目的横截面

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We describe the development path of a smart textile design method, stemming from a collaborative multi-disciplinary project, with three university departments: chemistry, design and electrical engineering. While the project focus was not originally on textiles, the needs for flexible semiconducting materials led to experiments with a zinc oxide(ZnO) semiconductor deposited over cotton substrate, thus shifting the focus towards textiles. A series of exchanges and actions between the three disciplines raised the awareness of the need for textile design methods regarding electric materials. Taking this as a starting point for generating new knowledge, drawing from the strengths of both textile design and engineering, an approach to develop smart textiles was developed. We conducted preliminary evaluation of this approach, called Teksig method, in three contexts related to the smart textile design practice: exploratory and creative collaboration, smart textile design, and technical measurements. To this end, a workshop was organised, as well as conducting a series of measurements using a mechanical test rig, and designing smart textiles with different types of electroconductive yarns. While the initial findings suggest usefulness, however more thorough examination is needed. In this paper, we discuss the overall project, and identify the key stages in the interdisciplinary collaboration, in terms of textile design practice, while reflecting on the outcomes, which enabled paving the way for interwoven design and scientific knowledge embedded into smart textile design practice.
机译:我们描述了一个智能纺织品设计方法的发展路径,该方法源于一个合作的多学科项目,由三个大学部门组成:化学,设计和电气工程。尽管项目最初的重点不是纺织品,但是对柔性半导体材料的需求导致了在棉质基材上沉积氧化锌(ZnO)半导体的实验,从而将重点转移到了纺织品上。三门学科之间的一系列交流和行动使人们认识到需要有关电子材料的纺织品设计方法。以此为出发点,利用纺织品设计和工程的优势,开发出新的知识,从而开发出一种开发智能纺织品的方法。我们在与智能纺织品设计实践有关的三种情况下对这种方法(称为Teksig方法)进行了初步评估:探索性和创造性协作,智能纺织品设计和技术测量。为此,组织了一个讲习班,并使用机械测试台进行了一系列测量,并设计了具有不同类型导电丝的智能纺织品。虽然最初的发现表明有用,但是需要更彻底的检查。在本文中,我们讨论了整个项目,并在纺织品设计实践方面确定了跨学科协作的关键阶段,同时对结果进行了反思,这为嵌入到智能纺织品设计实践中的交织设计和科学知识铺平了道路。 。

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