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Rolling behavior of a micro-cylinder in adhesional contact

机译:粘合接触中微气缸的滚动行为

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摘要

Understanding the rolling behavior of a micro-object is essential to establish the techniques of micro-manipulation and micro-assembly by mechanical means. Using a combined theoretical/computational approach, we studied the critical conditions of rolling resistance of an elastic cylindrical micro-object in adhesional contact with a rigid surface. Closed-form dimensionless expressions for the critical rolling moment, the initial rolling contact area, and the initial rolling angle were extracted after a systematic parametric study using finite element method (FEM) simulations. The total energy of this system is defined as the sum of three terms: the elastic energy stored in the deformed micro-cylinder, the interfacial energy within the contact area, and the mechanical potential energy that depends on the external moment applied to the cylindrical micro-object. A careful examination of the energy balance of the system surprisingly revealed that the rolling resistance per unit cylindrical length can be simply expressed by “work of adhesion times cylindrical radius” independent of the Young’s modulus. In addition, extending a linear elastic fracture mechanics based approach in the literature, we obtained the exact closed-form asymptotic solutions for the critical conditions for initial rolling; these asymptotic solutions were found in excellent agreement with the full-field FEM results.
机译:了解微观对象的滚动行为对于通过机械手段建立微观操纵和微观组装技术至关重要。使用理论/计算相结合的方法,我们研究了与刚性表面粘附接触的弹性圆柱微物体滚动阻力的临界条件。在使用有限元方法(FEM)模拟进行系统参数研究之后,提取了关键轧制力矩,初始轧制接触面积和初始轧制角的闭合形式的无量纲表达式。该系统的总能量定义为三个项的总和:存储在变形的微圆柱体中的弹性能,接触区域内的界面能以及取决于施加到圆柱微体上的外部力矩的机械势能-宾语。仔细检查系统的能量平衡,令人惊讶地发现,每单位圆柱长度的滚动阻力可以简单地由“附着力乘以圆柱半径”来表示,而与杨氏模量无关。另外,在文献中扩展了基于线性弹性断裂力学的方法,我们为初始轧制的临界条件获得了精确的闭合形式渐近解。发现这些渐近解与全场有限元结果非常吻合。

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