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Rethinking the habitability of a fabrication lab by including fixture-based components

机译:通过包含基于夹具的组件来重新思考制造实验室的可居住性

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摘要

This thesis is about defining a fixture-based system that can be adapted into a digital fabrication production system of friction fit assembly. It is inspired by the work and research conducted by the Digital Design Fabrication Group at MIT, specifically the work related to the Cabin House and the Instant House. The building industry in recent decades has experienced a fluctuation of different delivery methods; within that variation has been prefabricated construction. Numerous examples, academic and professional, have demonstrated the benefits of prefabrication construction and as result this delivery method has gradually become more attractive to those considering alternative building types. I am interested in proposing a fixture-based system that would assist in electrical components, storage, and lightings and openings in order to improve the usability and flexibility of FabLab that is deployed as friction fit build. Modular systems of architecture have to a large extent remained in the combination of mono-material assemblies; therefore, this thesis asks the question, can mono-material assemblies be flexible enough to include other kinds of fixtures that support the addition of such amenities as electrical appliances, lighting, storage, and expandability?
机译:本论文是关于定义一种基于夹具的系统,该系统可适用于摩擦配合组件的数字制造生产系统。它的灵感来自麻省理工学院的数字设计制造小组进行的工作和研究,特别是与客舱和即食屋有关的工作。近几十年来,建筑行业经历了不同交付方式的波动。在这种变化中,预制建筑。学术界和专业界的许多例子都证明了预制建筑的好处,结果,这种交付方式对于那些考虑替代建筑类型的人们逐渐变得更具吸引力。我有兴趣提出一种基于夹具的系统,该系统将有助于电气部件,存储以及照明和开口,以改善作为摩擦配合构建而部署的FabLab的可用性和灵活性。模块化的体系结构在很大程度上已经保留在单一材料组件的组合中。因此,本文提出一个问题,单材料组件是否可以灵活地包含其他种类的固定装置,以支持增加电器,照明,存储和可扩展性等便利性?

著录项

  • 作者

    Nunez Joseph Gabriel;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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