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Micropolar 2D Elastic Cables with Applications to Smart Cables and Textiles

机译:微极性二维弹性电缆及其在智能电缆和纺织品中的应用

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Elastic cables are structural elements with a one-sided constitutive law (compression is not allowed) that obtain their equilibrium configuration by adjusting their shape to satisfy static equilibrium. The loading of a cable is applied through body-type forces and through appropriate boundary conditions at its ends. The classic cable constitutive law is easily implemented by assuming small strains and a coordinate system that follows the rigid-body motion. This approach was selected in the present analysis in the context of micropolar elasticity. The analysis is two-dimensional (2D) and static. The results indicate the important role of the couple-type body forces in the cable's deformation. This, in turn, is very advantageous in the design of smart cables and textiles that can utilize electromagnetic fields to actuate couple body forces and in this way exert control on their deformation. (C) 2014 American Society of Civil Engineers.
机译:弹性电缆是具有单面本构律(不允许压缩)的结构元件,它们通过调整形状以满足静态平衡来获得其平衡构造。电缆的载荷是通过体型力并通过其端部的适当边界条件施加的。通过假设较小的应变和遵循刚体运动的坐标系,可以轻松实现经典的电缆本构定律。本方法是在微极性弹性的背景下选择该方法的。分析是二维(2D)和静态的。结果表明,耦合体力在电缆变形中的重要作用。反过来,这在智能电缆和纺织品的设计中非常有利,该电缆和纺织品可以利用电磁场来驱动耦合体力,并以此方式控制其变形。 (C)2014美国土木工程师学会。

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