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Displacement Controlled 2D Compliant Mechanisms for use in Morphing Structures

机译:用于变形结构的位移控制2D柔顺机构

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Morphing materials and structures capable of assuming specific shapes under precise conditions have become increasingly relevant for numerous industries, including aerospace. However, a significant limitation of many proposed morphing materials and structures is their manufacturability. Furthermore, many morphing materials are not capable of supporting significant loads independently. It is therefore of interest to develop a methodology to generate support structures for morphing materials that can support specific desired shapes, and can be manufactured easily. This work proposes a methodology for optimizing compliant mechanisms that can be 3D printed using commercially available materials. These mechanisms are designed to lie behind traditional morphing materials such as shape-memory alloys, and assume a specific displacement profile when subjected to certain loading conditions. The methodology is tested on two separate displacement profiles and is compared with respect to buckling constraint severity.
机译:能够在精确条件下呈现特定形状的变形材料和结构对包括航空航天在内的众多行业越来越重要。但是,许多提出的变形材料和结构的显着局限性在于它们的可制造性。而且,许多变形材料不能独立地承受很大的载荷。因此,感兴趣的是开发一种方法,以产生用于变形材料的支撑结构,该支撑结构可以支撑特定的期望形状并且可以容易地制造。这项工作提出了一种优化兼容机制的方法,该机制可以使用市售材料进行3D打印。这些机制被设计为位于诸如形状记忆合金之类的传统变形材料之后,并在承受某些载荷条件时呈现特定的位移轮廓。该方法在两个单独的位移曲线上进行了测试,并就屈曲约束的严重性进行了比较。

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