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Elastic postbuckling response of axially-loaded cylindrical shells with seeded geometric imperfection design

机译:具有种子几何缺陷设计的轴向加载圆柱壳的弹性后屈曲响应

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Elastic instabilities (such as buckling) have been recognized as a promising phenomenon to design smart materials and mechanical systems. Thin-walled cylindrical shells under axial compression can attain multiple bifurcation points in their postbuckling regime due to the natural transverse deformation restraint provided by their geometry; but harnessing such behavior for smart purposes is lacking extensive study due to its notoriously high imperfection sensitivity. In this paper, the concept of seeded geometric imperfection (SGI) design is proposed to modify and control the elastic postbuckling behavior of cylindrical shells. Eigenvalue-based mode shapes were used as basic geometric forms to generate a seeded imperfection. Prototyped SGI cylindrical shells were fabricated through 3D printing and tested under loading-unloading cycles. Numerical and experimental results suggest that the SGI cylindrical shells are less sensitive to initial imperfections and load variation than uniform ones. Cylindrical shells with seeded geometry can be potentially used in the design of smart devices and mechanical systems such as energy harvesters and self-powered sensors. (c) 2015 Elsevier Ltd. All rights reserved.
机译:弹性不稳定性(例如屈曲)已被认为是设计智能材料和机械系统的有希望的现象。薄壁圆柱壳在轴向压缩下,由于其几何形状所提供的自然的横向变形约束,在其后屈曲状态下可以达到多个分叉点。但是由于众所周知的高缺陷敏感性,将这种行为用于智能目的尚缺乏广泛的研究。本文提出了种子几何缺陷(SGI)设计的概念,以修改和控制圆柱壳的弹性后屈曲行为。基于特征值的模态形状被用作基本的几何形式,以产生种子缺陷。原型SGI圆柱壳是通过3D打印制造的,并经过装卸循环测试。数值和实验结果表明,SGI圆柱壳对初始缺陷和载荷变化的敏感性低于均匀的壳。具有种子几何形状的圆柱壳可潜在地用于智能设备和机械系统(例如能量收集器和自供电传感器)的设计中。 (c)2015 Elsevier Ltd.保留所有权利。

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