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The state of stress induced by the plane frictionless cylindrical contact. I. The case of elastic similarity

机译:平面无摩擦圆柱接触引起的应力状态。一,弹性相似的情况

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摘要

The contact problem between cylindrical conformal surfaces, modelling for instance a fastener joint, is studied. A closed form solution is obtained in Part I of the paper for the case of elastic similarity, improving (i) the solution obtained by Persson (On the Stress Distribution of Cylindrical Elastic Bodies in Contact, Ph.D. dissertation, 1964), which was also limited to identical materials, and (ii) the results of Noble and Hussain (Int. J. Engng. Sci. 7 (1969) 1149), which were limited to the case of perfect fit of contacting materials. The variation of the contact area, pressure distribution and maximum sustainable load is given for the complete range of possible dimensionless loading parameter E(1)(*)DeltaR/Q and first Dundurs' material parameter, alpha. Under conditions of initial clearance, the contact area are, E, increases with load from zero to a limiting value, epsilon (lim), which depends only on the material parameter alpha. Vice versa, under conditions of initial interference, the contact is complete until there is detachment and the contact area starts to decrease with load up to the same limiting value, epsilon (lim), which is also the only possible value of contact area for neat-fit conditions, under-any applied load. Finally, a complete assessment of the strength of the contact is given for the entire range of working conditions. As expected, the strength of the joint decreases rapidly if the extent of the contact area reduces, and finally tends to the limit predicted by the Hertzian theory when the are of contact is smaller than about 30 degrees. The optimal conditions for avoiding yielding are reached for a contact are smaller than the limiting are epsilon (lim): this means that it is not possible to reach the optimum from a configuration of initial interference. (C) 2001 Elsevier Science Ltd. Ah rights reserved. [References: 11]
机译:研究了圆柱共形表面之间的接触问题,例如对紧固件接头进行建模。对于弹性相似的情况,在论文的第一部分中获得了封闭形式的解,它改进了(i)Persson所获得的解(关于接触中的圆柱弹性体的应力分布,博士学位论文,1964年),也仅限于相同的材料,(ii)Noble和Hussain的研究结果(Int。J. Engng。Sci。7(1969)1149),仅限于接触材料的完美配合。对于可能的无量纲加载参数E(1)(*)DeltaR / Q和第一个Dundurs材料参数alpha的完整范围,给出了接触面积,压力分布和最大可持续负载的变化。在初始游隙的条件下,接触面积E随载荷从零增加到极限值ε(lim),后者仅取决于材料参数alpha。反之亦然,在初始干扰的条件下,接触完成直到分离,并且接触面积随着负载上升而减小,直到达到相同的极限值ε(lim),这也是纯净接触面积的唯一可能值-适合条件,任何施加的载荷下。最后,对整个工作条件范围内的接触强度进行了全面评估。如预期的那样,如果接触区域的范围减小,则接头的强度迅速降低,并且当接触区域小于大约30度时,最终趋于达到赫兹理论所预测的极限。为避免接触而达到避免屈服的最佳条件小于极限(ε)(ε):这意味着不可能从初始干涉的配置中达到最佳。 (C)2001 Elsevier Science Ltd.版权所有。 [参考:11]

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