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Experimental and finite element analysis of oblique impacts with different initial spins

机译:不同初始旋转的倾斜冲击的实验和有限元分析

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When a group of particles collide each other, oblique impacts with different initial spins are inescapable. The behavior of particles during and after an impact depends on different parameters such as size, shape and material properties of particles. In this article, the effects of incidence angle and initial spin on the coefficients of normal and tangential restitution were studied. The results including the coefficients of normal and tangential restitution with different incidence angles and spins were obtained through finite element (FE) simulations. The normal coefficient of restitution (COR) was also measured experimentally. The present results showed a contradiction to some of the studies in the literature such as C. Thornton (2009), in which it was claimed that the only effective parameter on the coefficients of restitution is the ratio of tangential to normal velocities at contact point v(t)/v(n), regardless of the incidence angle (w.r.t. centers of mass). In this work, it was found that the normal COR depends on both vt/vn and the incidence angle. However, the tangential COR was observed to be only a function of v(t)/v(n) based on the FEM results in agreement with the previous research. Different processes of stick, stick-slip and slip-stick-reverse slip could be found while the tangential COR varied with v(t)/v(n). The experimental data points corresponding to different vt/v, and impact angles confirmed the numerical results with maximum difference of 6.6%. (C) 2019 Elsevier Ltd. All rights reserved.
机译:当一组颗粒彼此碰撞时,用不同初始旋转的斜冲击是不可避免的。撞击期间和之后的颗粒的行为取决于诸如粒子的尺寸,形状和材料特性的不同参数。在本文中,研究了入射角和初始旋转对正常和切向归因系的初始旋转的影响。通过有限元(Fe)模拟获得包括具有不同入射角和旋转的正态和切向恢复系数的结果。还在实验上测量正常的恢复系数(COR)。本结果对文献中的一些研究表达了诸如C. Thornton(2009)中的一些研究的矛盾,其中据称依赖于恢复系数的唯一有效参数是联络点V的正态速度与正常速度的比率(t)/ v(n),无论发生率角度如何(质量的WRT中心)。在这项工作中,发现正常的COR取决于VT / VN和入射角。然而,观察到切向COR是基于FEM的V(t)/ v(n)的函数,这是与之前的研究一致的达成协议。可以在与V(t)/ v(n)变化的切线圆形变化的同时找到不同的杆,粘滑和滑倒反转滑动过程。对应于不同VT / V的实验数据点,撞击角度确认了数值结果,最大差为6.6%。 (c)2019年elestvier有限公司保留所有权利。

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