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基于针织的可变形结构的数值模拟方法:针织形态。

Methods for numerical simulation of knit based morphable structures: knitmorphs.

机构信息

Department of Mechanical Engineering, Northwestern University, Evanston, IL, 60208, USA.

出版信息

Sci Rep. 2022 Apr 22;12(1):6630. doi: 10.1038/s41598-022-09422-3.

Abstract

Shape morphing behavior has applications in many fields such as soft robotics, actuators and sensors, solar cells, tight packaging, flexible electronics, and biomedicine. The most common approach to achieve shape morphing structures is through shape memory alloys or hydrogels. These two materials undergo differential strains which generate a variety of shapes. In this work, we demonstrate the novel concept that 2D knits comprising of yarns from different materials can be morphed into different three-dimensional shapes thereby forming a bridge between traditional knitting and shape changing structures. This concept is referred to as Knitmorphs. Our computational analysis acts as the proof of concept revealing that knitted patterns of varying materials morph into complex shapes, such as saddle, axisymmetric cup, and a plate with waves when subjected to thermal loads. Two-dimensional circular models of plain and rib developed on CAD packages are imported to the finite element analysis software Abaqus, followed by post-processing into wires and assigning fiber material properties of different thermal coefficients of expansion and stiffness. We also propose potential applications for the concept of programmable knits for developing robots based upon jellyfish like locomotion, and complex structures similar to wind turbine blades. This novel concept is meant to introduce a new field for design when considering morphable structures.

摘要

形状变形行为在许多领域都有应用,如软机器人、执行器和传感器、太阳能电池、紧密包装、柔性电子和生物医学。实现形状变形结构最常见的方法是通过形状记忆合金或水凝胶。这两种材料经历不同的应变,产生各种形状。在这项工作中,我们展示了一个新的概念,即由不同材料的纱线组成的 2D 针织品可以变形为不同的三维形状,从而在传统针织和形状变化结构之间架起桥梁。这个概念被称为 Knitmorphs。我们的计算分析充当概念验证,揭示了当受到热负荷时,不同材料的针织图案可以变形为复杂的形状,如鞍形、轴对称杯和带有波浪的板。在 CAD 软件包上开发的平纹和罗纹的二维圆形模型被导入有限元分析软件 Abaqus,然后进行后处理成线材,并分配不同热膨胀系数和刚度的纤维材料特性。我们还提出了可编程针织的概念在开发基于水母运动和类似于风力涡轮机叶片的复杂结构的机器人方面的潜在应用。这个新的概念旨在在考虑可变形结构时为设计引入一个新的领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c1b9/9033797/f1ec0cbafb85/41598_2022_9422_Fig1_HTML.jpg

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