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The design of hydrodynamically lubricated journal bearings against yield

机译:液压屈服滑动轴承的设计

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The stress field induced by the half-Sommerfield pressure distribution in an infinitely elongated bearing is studied in detail. A complex potential formulation for the stress field is employed to solve the elasticity problem, with the intention to compute the required strength according to the classical von Mises criterion. Example contour plots of the yield parameter (√J_2)/p_m are given and the position and magnitude of the maximum normalized von Mises parameter are determined for a range of working conditions, analytically when they are on the surface, i.e. for eccentricity ratios ε < 0.6, and semi-analytically for the cases where they are located subsurface, i.e. ε>0.6. Surprisingly simple results are obtained for eccentricity ratios lower than about 0.7, namely a maximum of the von Mises parameter proportional to the mean pressure, permitting a simple rule to be developed for the design of bearings against yielding if the bearing works with eccentricity ratios smaller than 0.7, and the average pressure is smaller than l.22k, where k is the yield stress of the material in pure shear, then yielding is avoided. When bearings are used in the range of very high eccentricity ratios, a more refined calculation is needed, taking into account the actual value of the maximum von Mises parameter and the paper provides design charts for this purpose.
机译:详细研究了无限拉长轴承中半索姆菲尔德压力分布引起的应力场。采用复杂的应力场势公式来解决弹性问题,以根据经典的冯·米塞斯(von Mises)准则计算所需的强度。给出了屈服参数(√J_2)/ p_m的示例轮廓图,并针对一定范围的工作条件确定了最大归一化冯·米塞斯参数的位置和大小,并分析了它们在表面上时的解析度,即偏心率ε< 0.6,对于位于地下的情况则为半解析,即ε> 0.6。偏心率低于约0.7(即与标准平均压力成比例的von Mises参数的最大值)时,获得了令人惊讶的简单结果,从而允许开发一个简单的规则来设计轴承,以防止如果轴承的偏心率比小于0.7,并且平均压力小于1.22k,其中k是纯剪切时材料的屈服应力,因此避免了屈服。当在非常高的偏心比范围内使用轴承时,需要考虑最大von Mises参数的实际值,因此需要进行更精确的计算,并且为此目的提供了设计图表。

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