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Normal contact analysis for spherical pump based on fractal theory

机译:基于分形理论的球面泵正常接触分析

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摘要

Spherical pump has a ball-in-socket contact pattern between piston and cylinder. Therefore, traditional Hertz contact theory is not applicable and fractal theory is employed to investigate the conformal contact between piston and cylinder in this paper. The asperities contact on roughness surface is regarded as Hertz contact and friction effects are considered. Besides, the contact coefficient is proposed, which is affected by the structural parameters of piston radius and radial clearance as well as the material properties. Effects of fractal parameters, structural parameters, material property and friction coefficient on normalized normal contact stiffness are investigated and analyzed. Results indicate the normal contact stiffness can be improved by enlarging piston radius, material hardness and decreasing radial clearance, friction coefficient.
机译:球形泵在活塞和圆柱之间具有滚珠接触模式。 因此,传统的赫兹接触理论不适用,采用分形理论来研究本文活塞和气缸之间的共形接触。 粗糙度接触的粗糙表面被认为是赫兹接触和摩擦效应。 此外,提出了接触系数,其受活塞半径和径向间隙的结构参数以及材料特性的影响。 研究和分析了分形参数,结构参数,材料性能和摩擦系数对归一化正常接触刚度的影响。 结果表明通过扩大活塞半径,材料硬度,降低径向间隙,摩擦系数,可以提高正常接触刚度。

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