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Exact and approximate mechanisms for pure bending of sheets

机译:纯弯曲的精确和近似机制

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Direct measurement of the moment-curvature response of sheets or wires up to high curvatures can aid in modeling creasing, pleating, and other forming operations. We consider theoretical issues related to the geometry of pure bending. We present a linkage design that, for homogeneous deformation of the sample, results in an exact pure bending state up to arbitrarily high curvature, by combining a cochleoidal trajectory with an angle-doubling mechanism. The full mechanism is single degree of freedom and position controlled, a desirable feature for measurement of soft materials. We also present an optimal approximation to the cochleoid using a more easily implemented circular trajectory, and compare this with an existing commercial system for fabric testing. We quantify the error of the approximate test by calculating the deformation of an Euler elastica, a structure with linear moment-curvature response. While the circular mechanism can approximate the exact boundary conditions quite well up to moderately large curvatures, the resulting curvature of the test sample still deviates significantly from homogeneous response. We also briefly discuss expectations of localization behavior in pure bending tests. (C) 2020 Elsevier Ltd. All rights reserved.
机译:直接测量纸张或电线的力矩曲率响应,高达高曲率可以有助于建模卷烟,褶皱和其他成形操作。我们考虑与纯弯曲的几何形状相关的理论问题。我们提出了一种连杆设计,即通过将坐脊椎轨迹与角度倍增机构组合来实现精确的纯度弯曲状态,从而使得精确纯弯曲状态直到任意高曲率。完整机制是单一的自由度和位置控制,可用于测量软材料的理想特征。我们还使用更容易实现的圆形轨迹对科学轨道提供最佳近似,并将其与现有的商业系统进行比较以进行织物测试。通过计算欧拉Elastica的变形,通过线性力矩曲率响应的结构来量化近似测试的误差。虽然圆形机制可以近似于适度的大曲率,但是测试样品的所得曲率仍然从均匀反应显着偏离。我们还简要介绍纯弯曲试验中本地化行为的预期。 (c)2020 elestvier有限公司保留所有权利。

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