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Porosity Effect of Sintered Steel on the Frictional Performance of Conformal and Nonconformal Lubricated Contacts

机译:烧结钢对保形和不可于润滑触点的摩擦性能的孔隙效应

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摘要

The effect of surface topography on lubricated systems plays a crucial role in terms of friction performance, because surface micro-irregularities can improve the load-carrying capacity of mechanical parts in lubricated conformal and nonconformal contacts. Sintered materials, which can be applied to manufacturing several mechanical components such as gears, axial thrust bearings, and disc brake pads, are interesting candidates, because they present pores that could be somewhat compared to microcavities produced by surface texturing techniques. This work aims at studying the influence of surface pores originated from the sintering process on the frictional performance of lubricated contacts under different lubrication regimes and slide-to-roll ratios (SRR). The research contributes to understanding how random micro-irregularities could change lubrication conditions and promote effects similar to those of more expensive and precise surface features produced by texturing techniques. The experimental results showed that a decrease in porosity led to a reduction in the coefficient of friction. Furthermore, less porous samples promoted friction reduction compared to nonporous materials due to the probable additional load support caused by small-scale surface pores. Therefore, in addition to the traditional appeal of the use of sintered materials to reduce production costs, the present contribution reveals that this type of material could also be used to reduce friction in contacting mechanical components operating under certain tribological conditions.
机译:表面形貌对润滑系统的影响在摩擦性能方面起着至关重要的作用,因为表面微不平的距离可以提高润滑的保形和非格制触点中机械部件的承载能力。烧结材料可以应用于制造诸如齿轮,轴向推力轴承和盘式制动衬块的诸如齿轮,轴向止推轴承和盘式制动衬块的烧结材料是有趣的候选者,因为它们存在与通过表面纹理技术产生的微腔比较的孔隙。这项工作旨在研究表面孔的影响源自烧结过程对不同润滑制度下的润滑触点的摩擦性能和滑动对滚动比(SRR)。该研究有助于了解随机微不平的性能如何改变润滑条件,并促进与通过纹理技术产生的更昂贵和精确的表面特征类似的效果。实验结果表明,孔隙率降低导致摩擦系数的降低。此外,由于由小规模表面孔引起的可能的附加负载支撑,较少的多孔样品促进了与无孔材料相比的摩擦降低。因此,除了传统吸引烧结材料的吸引力之外,目前的贡献揭示了这种类型的材料还可用于减少在某些摩擦学条件下接触操作的机械部件的摩擦。

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