Singh Harmeet
Laboratory for Computation and Visualization in Mathematics and Mechanics, Institute of Mathematics, École Polytechnique Fédérale de Lausanne, 1015 Lausanne, Switzerland.
J Elast. 2022;151(2):321-346. doi: 10.1007/s10659-022-09939-8. Epub 2022 Oct 14.
We present a study on planar equilibria of a terminally loaded elastic rod wrapped around a rigid circular capstan. Both frictionless and frictional contact between the rod and the capstan are considered. We identify three cases of frictionless contact - namely where the rod touches the capstan at one point, along a continuous arc, and at two points. We show that, in contrast to a fully flexible filament, an elastic rod of wrapped around a capstan does not require friction to support unequal loads at its two ends. Furthermore, we classify rod equilibria corresponding to the three aforementioned cases in a limit where the length of the rod is much larger than the radius of the capstan. In the same limit, we incorporate frictional interaction between the rod and the capstan, and compute limiting equilibria of the rod. Our solution to the frictional case fully generalizes the to include the effects of finite thickness and bending elasticity of a flexible filament wrapped around a circular capstan.
The online version contains supplementary material available at 10.1007/s10659-022-09939-8.
我们展示了一项关于缠绕在刚性圆形绞盘上的末端加载弹性杆的平面平衡的研究。考虑了杆与绞盘之间的无摩擦和有摩擦接触两种情况。我们确定了无摩擦接触的三种情况,即杆在一点、沿连续弧以及在两点处与绞盘接触。我们表明,与完全柔性的细丝不同,缠绕在绞盘上的弹性杆在其两端支撑不等载荷时不需要摩擦力。此外,我们在杆的长度远大于绞盘半径的极限情况下,对上述三种情况对应的杆平衡进行了分类。在相同极限下,我们考虑了杆与绞盘之间的摩擦相互作用,并计算了杆的极限平衡。我们对有摩擦情况的解决方案全面推广了[相关内容],以包括缠绕在圆形绞盘上的柔性细丝的有限厚度和弯曲弹性的影响。
在线版本包含可在10.1007/s10659-022-09939-8获取的补充材料。