On the issue of a new solution of the materials resistance contact problem on compression of elastic cylinders in contact with parallel generators

IF 0.4 Q4 PHYSICS, MULTIDISCIPLINARY
T. Brim, B. Abdeyev, G. Muslimanova, S. Baigereyev, G. Baizakova
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引用次数: 0

Abstract

As a result of logarithmic singularity in the plane classical problem of elastically deformable material mechanics, it is proved that the reference formula for determining the convergence of two statically compressed parallel cylinders made of a homogeneous, isotropic, and physically linear material is not applicable. In the special case of elastic interaction of a cylinder with a half-plane, it is established that the convergence becomes equal to infinity. This paradoxical result confirms the inadequacy of Flaman’s model of a simple radial stress state in determining displacements. Based on this model, it is possible to determine only the stresses in parallel contacting cylinders, while the calculation of displacements, in this case, is not possible. Based on a previously developed and mathematically approximated by the authors flat design scheme of Flaman the algorithm exception of conflicts has been proposed. The algorithm is based on the integral Fredholm equation solution and can be seen as a new fundamental and applied elasticity theory problem, which is of great importance when assessing the contact of refined strength and stiffness of the cylindrical parts of the supporting structures subject to the general and local deformations (cylindrical rollers, gears, pavements with their seal steel rollers, etc.).
关于与并联发电机接触的弹性圆柱受压时材料阻力接触问题的新解
由于弹性变形材料力学平面经典问题中的对数奇异性,证明了确定由均匀、各向同性和物理线性材料构成的两个静压平行圆柱体收敛性的参考公式是不适用的。在圆柱与半平面弹性相互作用的特殊情况下,证明了收敛性趋于无穷大。这一矛盾的结果证实了Flaman的简单径向应力状态模型在确定位移方面的不足。基于该模型,可以只确定平行接触气缸中的应力,而在这种情况下,不可能计算位移。在作者提出的Flaman平面设计方案的基础上,提出了冲突例外算法。该算法基于Fredholm方程的积分解,可以看作是一个新的基础和应用弹性理论问题,对于评估一般变形和局部变形(圆柱滚子、齿轮、路面及其密封钢滚子等)下支撑结构圆柱形零件的精细强度和刚度的接触具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
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