首页> 外文会议>9th biennial conference on engineering systems design and analysis 2008 >A RIGID PUNCH ON AN ELASTIC HALF-SPACE UNDER THE EFFECT OF FRICTION - A FINITE DIFFERENCE SOLUTION
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A RIGID PUNCH ON AN ELASTIC HALF-SPACE UNDER THE EFFECT OF FRICTION - A FINITE DIFFERENCE SOLUTION

机译:摩擦作用下弹性半空间上的刚性凸点-有限差分法

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摘要

The accuracy of the finite difference technique in solving frictionless and frictional advancing contact problems is investigated by solving the problem of a rigid punch on an elastic half-space subjected to normal loading. Stick and slip conditions between the elastic and the rigid materials are added to an existing numerical algorithm which was previously used for solving frictionless and frictional stationary and receding contact problems. The numerical additions are first tested by applying them in the solution of receding and stationary contact problems and comparing them to known solutions. The receding contact problem is that of an elastic slab on a rigid half-plane; the stationary contact problem is that of aflat rigid punch on an elastic half-space. In both cases the influence of friction is examined. The results are compared to those of other investigations with very good agreement observed. Once more it is verified that for both receding and stationary contact, load steps are not required for obtaining a solution if the loads are applied monotonically, whether or not there is friction.rnNext, an advancing contact problem of a round rigid punch on an elastic half-space subjected to normal loading, with and without the influence of friction is investigated. The results for frictionless advancing contact, which are obtained without load steps, are compared to analytical results, namely the Hertz problem; excellent agreement is observed. When friction is present,rnload steps and iterations for determining the contact area within each load step, are required. Hence, the existing code, in which only iterations to determine the contact zone were employed, was modified to include load steps, together with the above mentioned iterations for each load step. The effect of friction on the stress distribution and contact length is studied. It is found that when stick conditions appear in the contact zone, an increase in the friction coefficient results in an increase in the stick zone size within the contact zone. These results agree well with semi-analytical results of another investigation, illustrating the accuracy and capabilities of the finite difference technique for advancing contact.
机译:通过解决承受法向载荷的弹性半空间上的刚性冲头问题,研究了有限差分技术在解决无摩擦和摩擦前进接触问题中的准确性。弹性材料和刚性材料之间的粘滑条件被添加到现有的数值算法中,该算法先前用于解决无摩擦和摩擦的固定和后退接触问题。首先通过将它们应用于后退和固定接触问题的解决方案并将其与已知解决方案进行比较来测试这些数字加法。后退的接触问题是在刚性半平面上的弹性平板的问题。固定的接触问题是在弹性半空间上的扁平刚性冲头。在这两种情况下,都检查了摩擦的影响。将结果与其他调查的结果进行比较,观察到的一致性很高。再一次证明,对于后退接触和固定接触,如果载荷是单调施加的,则无论是否存在摩擦,都不需要载荷步骤来获得解决方案。接下来,圆形刚性冲头在弹性件上的接触问题不断发展。研究了在有或没有摩擦影响的情况下,承受法向载荷的半空间。无负载前进接触的结果(无负载步长)与分析结果(即赫兹问题)进行了比较;观察到极好的一致性。当存在摩擦时,需要进行载荷步骤和迭代以确定每个载荷步骤内的接触面积。因此,现有的代码(其中仅采用迭代来确定接触区域)被修改为包括负载步骤,以及每个负载步骤的上述迭代。研究了摩擦对应力分布和接触长度的影响。已经发现,当在接触区域中出现粘着状态时,摩擦系数的增加导致接触区域内的粘着区域大小的增加。这些结果与另一项研究的半分析结果非常吻合,说明了有限差分技术用于推进接触的准确性和功能。

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  • 来源
  • 会议地点 Haifa(IL);Haifa(IL);Haifa(IL)
  • 作者单位

    Faculty of Mechanical Engineering,Technion - Israel Institute of Technology,32000, Haifa, ISRAEL;

    The Dreszer Fracture Mechanics Laboratory,Department of Solid Mechanics, Materials and Systems,The Fleischman Faculty of Engineering,Tel Aviv University, 69978 Ramat Aviv, ISRAEL;

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