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A discrete element approach to evaluate stresses due to line loading on an elastic half-space

机译:离散元素方法评估弹性半空间上的线荷载引起的应力

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摘要

A new approach to computing sub-surface stresses in an elastic half-space subjected to a line loading is presented. The approach is based on the discrete element method (DEM) in which the material continuum is replaced by a set of convex, rigid, interacting elements connected through visco-elastic fibers. A Hertzian pressure profile with, and without surface traction is applied to a semi-infinite domain created by gluing together discrete elements. Stresses are calculated from the inter-element joint forces that develop due to relative motion of the elements. Newton’s laws are employed to simulate the motion of each element. The stress distribution obtained from the discrete element model compares very well with that obtained from continuum elasticity models. The paper illustrates the applicability of the DEM to analysis of contacts at the microlevel and serves as a foundation to further studies in fracture and fatigue of bearing materials.
机译:提出了一种新的方法来计算承受线荷载的弹性半空间中的次表面应力。该方法基于离散元素方法(DEM),其中材料连续体被一组通过粘弹性纤维连接的凸的,刚性的,相互作用的元素代替。将具有和不具有表面牵引力的赫兹压力分布应用于通过将离散元素粘合在一起而创建的半无限域。应力是根据单元之间的相对运动而产生的单元间关节力计算得出的。牛顿定律被用来模拟每个元素的运动。从离散单元模型获得的应力分布与从连续弹性模型获得的应力分布非常好。本文说明了DEM在微观水平上的接触分析的适用性,并为进一步研究轴承材料的断裂和疲劳奠定了基础。

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