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Bending device and anticlastic surface measurement of solids under large deformations and displacements

机译:在大变形和位移下弯曲装置和反向表面测量固体

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摘要

Large bending of elastic bodies gives rise to significant transverse effects. Based on a recent theoretical model in the context of finite elasticity, both the longitudinal and anticlastic curvatures in bent solids under large deformation and displacement can be accurately assessed. In order to experimentally investigate the anticlastic deformation induced by large inflexion and corroborate the theoretical predictions, a properly designed mechanical bending device is here proposed. By imposing a rotation at the ends of the sample, both the longitudinal and anticlastic curvatures are measured by DIC (digital image correlation) monitoring instrumentation and compared with the theoretical results, finding good agreement. Compact analytical formulae for assessing the radii of curvature within the thickness of the sample are provided. Conversely to existing studies of the anticlastic surface induced by infinitesimal bending, the present analysis takes into account large through-to-thickness curvature variations, whose knowledg can plays a key role for a wide class of mechanical applications. (C) 2019 Elsevier Ltd. All rights reserved.
机译:弹性体的大弯曲产生了显着的横向效应。基于有限弹性背景下的最近的理论模型,可以精确评估在大变形和位移下弯曲固体中的纵向和抗制性曲率。为了通过实验研究大型inflxion和证实理论预测诱导的反向变形,提出了一种适当设计的机械弯曲装置。通过在样品的末端施加旋转,通过DIC(数字图像相关)监测仪器测量并与理论结果进行比较,找到良好的一致性的旋转。提供了用于评估样品厚度内的曲率半径的紧凑分析公式。相反,对于通过无限弯曲引起的抗扼流结构的现有研究,本分析考虑了大的贯穿厚度曲率变化,其知识可以在广泛的机械应用中发挥关键作用。 (c)2019年elestvier有限公司保留所有权利。

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