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Snap-through behaviour of a bistable structure based on viscoelastically generated prestress

机译:基于粘弹性产生的预应力的双稳态结构的捕捉行为

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A novel form of shape-changing bistable structure has been successfully developed through the use of viscoelastically generated prestress. Bistability is achieved through pairs of deflecting viscoelastically prestressed polymeric matrix composite (VPPMC) strips, which are orientated to give opposing cylindrical configurations within a thin, flexible resin-impregnated fibreglass sheet. This arrangement enables the structure to 'snap through' between one of two states by external stimulation. Deflection from the VPPMC strips occurs through compressive stresses generated from the non-uniform spatial distribution of nylon 6,6 fibres undergoing viscoelastic recovery. In this study, snap-through behaviour of the bistable structure is investigated both experimentally and through finite element (FE) analysis. By using experimental results to calibrate FE parameter values, the modelling has facilitated investigation into the development of bistability and the influence of modulus ratio (fibreglass sheet: VPPMC strip) on the snap-through characteristics. Experimental results and FE simulation show good agreement with regard to snap-through behaviour of the bistable structure and from this, the bistability mechanisms are discussed. (C) 2017 Elsevier Ltd. All rights reserved.
机译:通过使用粘弹性产生的预应力,已经成功地开发了一种新型的可变形双稳态结构。通过成对挠曲的粘弹性预应力聚合物基复合材料(VPPMC)条带实现双稳性,这些条带被定向为在薄的,柔软的,树脂浸渍的玻璃纤维板中提供相对的圆柱形构造。这种布置使该结构能够通过外部刺激在两个状态之一之间“跳过”。 VPPMC条的挠曲是由于经历了粘弹性恢复的尼龙6,6纤维的空间分布不均匀而产生的压应力产生的。在这项研究中,通过实验和通过有限元(FE)分析来研究双稳态结构的快速捕捉行为。通过使用实验结果校准FE参数值,该模型有助于研究双稳性的发展以及模量比(玻璃纤维板:VPPMC条)对搭扣特性的影响。实验结果和有限元模拟表明,在双稳态结构的咬合行为方面有很好的一致性,并从中讨论了双稳态机制。 (C)2017 Elsevier Ltd.保留所有权利。

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