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Modeling programmable deformation of self-folding all-polymer structures with temperature-sensitive hydrogels

机译:用热敏水凝胶对自折叠全聚合物结构的可编程变形进行建模

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Combination of soft active hydrogels with hard passive polymers gives rise to all-polymer composites. The hydrogel is sensitive to external stimuli while the passive polymer is inert. Utilizing the different behaviors of two materials subject to environmental variation, for example temperature, results in self-folding soft machines. We report our efforts to model the programmable deformation of self-folding structures with temperature-sensitive hydrogels. The self-folding structures are realized either by constructing a bilayer structure or by incorporating hydrogels as hinges. The methodology and the results may aid the design, control and fabrication of 3D complex structures from 2D simple configurations through self-assembly.
机译:软活性水凝胶与硬质被动聚合物的结合产生了全聚合物复合材料。水凝胶对外部刺激敏感,而被动聚合物是惰性的。利用受环境变化影响的两种材料的不同行为,例如温度,会导致软机自折叠。我们报告了我们的努力,以对具有温度敏感性水凝胶的自折叠结构的可编程变形进行建模。通过构造双层结构或通过结合水凝胶作为铰链来实现自折叠结构。该方法论和结果可以帮助从2D简单配置到自组装的3D复杂结构的设计,控制和制造。

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