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Design-to-fabrication with thermo-responsive shape memory polymer applications for building skins

机译:具有用于建筑皮肤的热响应形状记忆聚合物应用的设计 - 制造

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摘要

Smart materials are studied for climate-responsive building skins due to internal changeable properties stimulated by material-specific input. This research focuses on shape memory polymer (SMP) and temperature as its activating stimulus for dynamic shading devices with mechanisms of opening and closing. From case-studies, four design strategies are presented in this paper. Design research and 3D printing fabrication tests of SMP prototypes were conducted by the research-through-design approach. Prototypes were comparatively analyzed for development and optimization in architectural applications. It is challenging to train permanent shapes, to program temporary shapes and to design repetitive material behaviours. Measures to achieve reversible reiterative shape-changing materials are required for practical implementation. For further design-fabrication research on the actual temperature and the material behaviours of designed elements, the SMP with glass transition at 35°C was applied. Later, it would be necessary to simulate the environmental effects and validate the performance of thermo-responsive SMP building skins.
机译:由于材料特异性输入刺激的内部可变性能,研究了气候响应性建筑皮肤的智能材料。该研究侧重于形状记忆聚合物(SMP)和温度作为其具有打开和关闭机构的动态遮蔽装置的激活刺激。从案例研究中,本文提出了四种设计策略。通过研究 - 通过设计方法进行了SMP原型的设计研究和3D印刷制造测试。在建筑应用中的开发和优化相比分析了原型。培训永久形状是挑战,以编程临时形状并设计重复的材料行为。实际实施需要实现可逆重复形状更换材料的措施。对于对实际温度和设计元件的材料行为的进一步设计制造研究,施加35℃下具有玻璃化转变的SMP。后来,有必要模拟环境效应并验证热响应SMP建筑皮肤的性能。

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