论文标题
用球形谐波产生的模拟粗糙球的接触行为
Contact behaviour of simulated rough spheres generated with spherical harmonics
论文作者
论文摘要
使用有限元方法(FEM)研究了非粘合分形粗糙颗粒之间的正常接触行为。一系列具有杰出粗糙度特征的球形晶粒表面是通过球形谐波产生的。这些表面由两个粗糙度描述符描述,即相对粗糙度(RR)和分形维度(FD)。使用FEM模拟粗糙球与刚性平坦表面的接触行为,以通过关注接触刚度和真实的接触区域来量化表面结构和球体形态的影响。发现正常接触刚度(K)对施加的正常力(F)的依赖性遵循四个数量级的功率定律,并且Alpha和Beta与RR和FD高度相关。随着负载的增加,功率指数会收敛于Hertzian接触,例如1/3,独立于RR。真正接触的区域通过形成新的微接触及其进行性合并而发展,与此同时,各种力量引起的接触岛的区域分布倾向于遵守相似的Weibull分布,这是由于其表面中的分形性质。发现具有较大RR值的触点可以产生具有较高分形维的接触轮廓,该构成方法通过2D盒计算方法计算。我们的结果表明,在研究接触行为时,应考虑准球形粒子中径向长度之间的相关性。
Normal contact behaviour between non adhesive fractal rough particles is studied using a finite element method (FEM). A series of spherical grain surfaces with distinguished roughness features are generated by means of Spherical Harmonics. These surfaces are described by two roughness descriptors, namely, relative roughness (Rr) and fractal dimension (FD). The contact behaviour of rough spheres with a rigid flat surface is simulated using FEM to quantify the influences of surface structure and sphere morphology by focusing on contact stiffness and true contact area. The dependence of normal contact stiffness (k) on applied normal force (F) is found to follow a power law over four orders of magnitude, with both alpha and beta being highly correlated with Rr and FD. With increasing load, the power exponent converges to that of Hertzian contact, e.g., 1/3, independent of Rr. Regions of true contact evolve through the formation of new microcontacts and their progressive merging, meanwhile the area distributions of contact island induced by various forces tend to obey similar Weibull distributions due to fractal nature in their surfaces. Contacts with larger values of Rr are found to produce contact contours with higher fractal dimension as calculated by a 2D box-counting method. Our results suggest that the correlation between radial lengths in a quasi spherical particle should be considered in studying contact behaviour.