{"title":"Temporalities of a DIY biocomposite through material exploration","authors":"Deniz Tümerdem, Leman Figen Gül","doi":"10.1080/14606925.2023.2257534","DOIUrl":null,"url":null,"abstract":"AbstractThe paper aims to unravel a do-it-yourself biocomposite’s relationship with time and its various implications from a theoretical standpoint. The study derives from shrinkage & warpage behaviour of bioplastics which are regarded as obstacles, especially in mass production. Controllable within tolerance, these inherent behaviours are proposed as a production method to design non-Euclidean bioplastic surfaces. Temporal by nature; the wooden frame-based biocomposite warps and finds its form over time and eventually biodegrades. This paper first introduces materials’ time in relation to polymers & biopolymers as a manifestation of the future by drawing attention to the nonlinear relationship between materials, authorship, and architecture. Secondly, parallels between recipes’ time and the openness of the future are emphasised. Thirdly, experiments’ time is discussed regarding the ‘artisan phase’ of crafting materials and heterogeneity. Lastly, building on an ecological realist view and with deep time thinking, the crisis’ time is considered as an opportune time to propose sustainable strategies.Keywords: DIY materialscrafting materialsbioplasticsbio-based materialsbiocompositetemporalitymaterials experienceDIY bioplasticseco-design Disclosure statementNo potential conflict of interest was reported by the author(s).Additional informationNotes on contributorsDeniz TümerdemDeniz Tümerdem received her bachelor’s degree in architecture & landscape architecture from Istanbul Technical University in 2010. She holds a master’s in advanced architecture degree from the Institute for Advanced Architecture of Catalonia where her research line focused on Digital Tectonics (2011-12). She is a PhD candidate at Istanbul Technical University in the Architectural Design Computing Program. Her current research focuses on material-based design and bio-based material research and design.Leman Figen GülDr. Leman Figen Gül is a Professor of Architecture in the Department of Architecture and Architectural Design Computing Program at Istanbul Technical University since 2014. She completed her PhD in Architecture at the Key Centre of Design Computing and Cognition at the University of Sydney in 2007. Her research interests include parametric design and fabrication technologies, game and serious games, the use of virtual-world technology in the construction industry, virtual environments, augmented reality, artificial intelligence as design assistance, navigation, human design behaviour, collaborative design and cognitive design studies.","PeriodicalId":46826,"journal":{"name":"Design Journal","volume":"47 1","pages":"0"},"PeriodicalIF":0.8000,"publicationDate":"2023-09-19","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"1","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Design Journal","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1080/14606925.2023.2257534","RegionNum":4,"RegionCategory":"艺术学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"0","JCRName":"ART","Score":null,"Total":0}
引用次数: 1
Abstract
AbstractThe paper aims to unravel a do-it-yourself biocomposite’s relationship with time and its various implications from a theoretical standpoint. The study derives from shrinkage & warpage behaviour of bioplastics which are regarded as obstacles, especially in mass production. Controllable within tolerance, these inherent behaviours are proposed as a production method to design non-Euclidean bioplastic surfaces. Temporal by nature; the wooden frame-based biocomposite warps and finds its form over time and eventually biodegrades. This paper first introduces materials’ time in relation to polymers & biopolymers as a manifestation of the future by drawing attention to the nonlinear relationship between materials, authorship, and architecture. Secondly, parallels between recipes’ time and the openness of the future are emphasised. Thirdly, experiments’ time is discussed regarding the ‘artisan phase’ of crafting materials and heterogeneity. Lastly, building on an ecological realist view and with deep time thinking, the crisis’ time is considered as an opportune time to propose sustainable strategies.Keywords: DIY materialscrafting materialsbioplasticsbio-based materialsbiocompositetemporalitymaterials experienceDIY bioplasticseco-design Disclosure statementNo potential conflict of interest was reported by the author(s).Additional informationNotes on contributorsDeniz TümerdemDeniz Tümerdem received her bachelor’s degree in architecture & landscape architecture from Istanbul Technical University in 2010. She holds a master’s in advanced architecture degree from the Institute for Advanced Architecture of Catalonia where her research line focused on Digital Tectonics (2011-12). She is a PhD candidate at Istanbul Technical University in the Architectural Design Computing Program. Her current research focuses on material-based design and bio-based material research and design.Leman Figen GülDr. Leman Figen Gül is a Professor of Architecture in the Department of Architecture and Architectural Design Computing Program at Istanbul Technical University since 2014. She completed her PhD in Architecture at the Key Centre of Design Computing and Cognition at the University of Sydney in 2007. Her research interests include parametric design and fabrication technologies, game and serious games, the use of virtual-world technology in the construction industry, virtual environments, augmented reality, artificial intelligence as design assistance, navigation, human design behaviour, collaborative design and cognitive design studies.
摘要:本文旨在从理论的角度揭示自制生物复合材料与时间的关系及其各种含义。该研究源于生物塑料的收缩和翘曲行为,这被认为是大规模生产的障碍。在公差范围内可控,这些固有行为被提出作为设计非欧几里得生物塑料表面的生产方法。暂时的:本质上暂时的;木质框架为基础的生物复合材料随着时间的推移会扭曲并形成形状,最终会被生物降解。本文首先介绍了材料的时间与聚合物和生物聚合物的关系,通过关注材料、作者和建筑之间的非线性关系来表现未来。其次,强调食谱的时代与未来的开放性之间的相似之处。第三,实验的时间是关于制作材料的“工匠阶段”和异质性的讨论。最后,基于生态现实主义的观点和深刻的时间思考,认为危机时期是提出可持续发展战略的时机。关键词:DIY材料;雕刻材料;生物塑料;生物基材料;deniz t merdemdeniz t merdem于2010年在伊斯坦布尔技术大学获得建筑与景观设计学士学位。她拥有加泰罗尼亚高级建筑研究所高级建筑硕士学位,她的研究方向是数字构造(2011-12)。她是伊斯坦布尔技术大学建筑设计计算专业的博士研究生。目前主要研究方向为基于材料的设计和基于生物材料的研究与设计。Leman Figen gdr。Leman Figen g, 2014年起担任伊斯坦布尔技术大学建筑与建筑设计计算专业教授。她于2007年在悉尼大学设计计算与认知重点中心完成了建筑学博士学位。她的研究兴趣包括参数化设计和制造技术、游戏和严肃游戏、虚拟世界技术在建筑行业的应用、虚拟环境、增强现实、人工智能作为设计辅助、导航、人类设计行为、协作设计和认知设计研究。