【2h】

Ribbon curling via stress relaxation in thin polymer films

机译:通过薄聚合物薄膜中的应力松弛使碳带卷曲

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摘要

The procedure of curling a ribbon by running it over a sharp blade is commonly used when wrapping presents. Despite its ubiquity, a quantitative explanation of this everyday phenomenon is still lacking. We address this using experiment and theory, examining the dependence of ribbon curvature on blade curvature, the longitudinal load imposed on the ribbon, and the speed of pulling. Experiments in which a ribbon is drawn steadily over a blade under a fixed load show that the ribbon curvature is generated over a restricted range of loads, the curvature/load relationship can be nonmonotonic, and faster pulling (under a constant imposed load) results in less tightly curled ribbons. We develop a theoretical model that captures these features, building on the concept that the ribbon under the imposed deformation undergoes differential plastic stretching across its thickness, resulting in a permanently curved shape. The model identifies factors that optimize curling and clarifies the physical mechanisms underlying the ribbon’s nonlinear response to an apparently simple deformation.
机译:包裹礼物时,通常使用通过将丝带绕过锋利的刀片来卷曲丝带的过程。尽管它无处不在,但仍缺乏对这种日常现象的定量解释。我们使用实验和理论来解决这个问题,研究色带曲率对叶片曲率的依赖性,施加在色带上的纵向载荷以及提拉速度。在固定载荷下在刀片上稳定拉动碳带的实验表明,碳带曲率是在有限的载荷范围内产生的,曲率/载荷关系可以是非单调的,并且在固定载荷下,提速更快不太紧紧卷曲的丝带。我们建立了一个捕捉这些特征的理论模型,其原理是,在施加变形的碳带上,碳带在厚度方向上会经历不同的塑性拉伸,从而形成永久弯曲的形状。该模型确定了优化卷曲的因素,并阐明了碳带对明显简单的变形的非线性响应所基于的物理机制。

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