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Effect of pore ensemble statistics on load support of mechanical seals with pore-covered faces

机译:孔隙整体统计对具有孔隙覆盖面的机械密封的载荷支撑的影响

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A mathematical model was developed for predicting the performance of laser-textured seals with pores. A solution of the two-dimensional steady-state Reynolds equation was given for rectangular and exponential pores, as well as expressions for thehydrodynamic pressure distribution over the control cell and for the cell load support. The difference between the two pore shapes can be reduced from a factor of multiple times to 30 percent at most-if the pore volume is kept constant. It was also shownthat the total hydrodynamically induced load-carrying capacity can be obtained with accuracy, even if the pore radius of the seal surface is assumed to vary over a wide interval about its mean value, as it does in reality. Diameters in an ensemble of over 4·10{sup}4 pores were run at random for 500 seal faces. It was established for the first time that load support of an ensemble exceeds by 22 percent the one determined for N identical pores. The model for the entire pore population as an ensemble withsize variation is more realistic, and substantiates the possibilities and advisability of pore size diversity, hitherto considered undesirable in the pore production process. In general, the pore ensemble is an essential aspect in exact determination ofthe load support and better insight into the tribologic behavior of pore-covered surfaces.
机译:开发了数学模型来预测带有孔的激光纹理密封的性能。给出了矩形和指数孔的二维稳态雷诺方程的解,以及控制单元上的水动力压力分布和单元负载支持的表达式。如果保持恒定的孔体积,则两个孔形状之间的差异最多可以从多倍减少到30%。还显示出,即使假定密封表面的孔半径在其平均值附近在很宽的范围内变化,也可以像实际上那样精确地获得总的流体动力诱导的承载能力。在500个密封面中随机分布了4个以上10×4个孔的集合中的直径。首次确定,整体的负载支持量超过为N个相同的孔所确定的负载支持量的22%。整个孔径总体上具有大小变化的模型更为实际,并且证实了孔径多样性的可能性和可取性,而迄今为止,孔径多样性在孔隙生产过程中是不可取的。通常,在准确确定载荷支持和更好地洞悉被孔隙覆盖的表面的摩擦学行为方面,孔隙集合是必不可少的方面。

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