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首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >An Inverse Design Method of Buckling-Guided Assembly for Ribbon-Type 3D Structures
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An Inverse Design Method of Buckling-Guided Assembly for Ribbon-Type 3D Structures

机译:带式3D结构的屈曲引导组件的逆设计方法

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摘要

Mechanically guided three-dimensional (3D) assembly based on the controlled buckling of pre-designed 2D thin-film precursors provides deterministic routes to complex 3D mesostructures in diverse functional materials, with access to a broad range of material types and length scales. Existing mechanics studies on this topic mainly focus on the forward problem that aims at predicting the configurations of assembled 3D structures, especially ribbon-shaped structures, given the configuration of initial 2D precursor and loading magnitude. The inverse design problem that maps the target 3D structure onto an unknown 2D precursor in the context of a prescribed loading method is essential for practical applications, but remains a challenge. This paper proposes a systematic optimization method to solve the inverse design of ribbon-type 3D geometries assembled through the buckling-guided approach. In addition to the torsional angle of the cross section, this method introduces the non-uniform width distribution of the initial ribbon structure and the loading mode as additional design variables, which can significantly enhance the optimization accuracy for reproducing the desired 3D centroid line of the target ribbon. Extension of this method allows the inverse design of entire 3D ribbon configurations with specific geometries, taking into account both the centroid line and the torsion for the cross section. Computational and experimental studies over a variety of elaborate examples, encompassing both the single-ribbon and ribbon-framework structures, demonstrate the effectiveness and applicability of the developed method.
机译:基于预先设计的2D薄膜前体的受控屈曲的机械引导的三维(3D)组装为复杂的三维思科在不同的功能材料中提供了确定性的路线,可以访问广泛的材料类型和长度尺度。考虑到初始2D前体和装载幅度的配置,本主题的现有力学研究主要关注预测组装3D结构,尤其是色带形结构的配置。将目标3D结构映射到未知2D前体在规定的加载方法的上下文中将目标3D结构映射到实际应用的必要条件,但仍然是一个挑战。本文提出了一种系统优化方法,解决通过屈曲引导方法组装的带式3D几何形状的逆设计。除了横截面的扭转角度之外,该方法还将初始带状结构的不均匀宽度分布和加载模式引入了额外的设计变量,这可以显着提高再现所需3D质心线的优化精度目标丝带。该方法的扩展允许具有特定几何形状的整个3D色带配置的逆设计,考虑到质心线和横截面的扭转。在各种精细的实施例中计算和实验研究,包括单带和带状框架结构,证明了开发方法的有效性和适用性。

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