首页> 外文会议>ASME international manufacturing science and engineering conference >4D PRINTING: DESIGN AND FABRICATION OF 3D SHELL STRUCTURES WITH CURVED SURFACES USING CONTROLLED SELF-FOLDING
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4D PRINTING: DESIGN AND FABRICATION OF 3D SHELL STRUCTURES WITH CURVED SURFACES USING CONTROLLED SELF-FOLDING

机译:4D打印:使用可控自折叠设计并制造具有弯曲表面的3D外壳结构

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Self-folding structures such as origami-based structures have been studied by artists, mathematicians and engineers. New applications are emerging in fields such as biomedical and electronics. Self-folding structures can potentially extend three-dimensional (3D) printing into four-dimensional (4D) printing by intelligently designed material distribution in order to achieve controlled shape deformation over time. Traditionally, self-folding structures are folded along pre-defined hinges such that neighboring facets can transform their shapes. In this study, we present a new design and fabrication approach of self-folding structures with no foldable hinges. A significant benefit is its capability in fabricating shapes with smooth curved surfaces. Our self-folding method is based on a thermally responsive mechanism, where a thermal responsive film is used as the active material while another polymer material coated on the film is used as the constraining material. When the structure is heated, the two sides of the film will shrink differently due to the constraining material. Consequently the structure will fold. By changing the constraining patterns and coated material properties, the film can be self-folded into different shapes. Three types of folding features are presented in our study. Based on them, an unfolding algorithm is presented for a given shell structure with curved surfaces. Theoretical analysis and experimental tests are presented to demonstrate the capability of the self-folding method. Its limitation and future work are also discussed.
机译:艺术家,数学家和工程师已经研究了诸如基于折纸的结构之类的自折叠结构。生物医学和电子学等领域正在出现新的应用。自折叠结构可以通过智能设计的材料分布将三维(3D)打印扩展为三维(4D)打印,以实现随时间变化的受控形状变形。传统上,自折叠结构沿预定义的铰链折叠,以便相邻的小平面可以改变其形状。在这项研究中,我们提出了一种没有折叠铰链的自折叠结构的新设计和制造方法。一个显着的好处是它具有制造具有光滑曲面的形状的能力。我们的自折叠方法基于热响应机制,其中将热响应膜用作活性材料,而将涂覆在该膜上的另一种聚合物材料用作约束材料。加热结构时,由于约束材料的作用,薄膜的两侧会有所不同地收缩。因此,该结构将折叠。通过改变约束图案和涂覆材料的性质,可以将膜自折叠成不同的形状。我们的研究提出了三种类型的折叠特征。基于它们,针对给定的具有曲面的壳结构,提出了展开算法。进行理论分析和实验测试以证明自折叠方法的能力。还讨论了它的局限性和未来的工作。

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