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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >Aspects of thrust cone tribology. Part I: effects of slide to roll ratio on surface failure mechanisms in twin-disc tests
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Aspects of thrust cone tribology. Part I: effects of slide to roll ratio on surface failure mechanisms in twin-disc tests

机译:推力锥摩擦学的各个方面。第一部分:双盘试验中滑动比对表面破坏机理的影响

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This paper describes mineral oil lubricated twin-disc tests with nominal point or line contact at rolling (mean surface) speeds in the range 3-23 m/s and slide-roll ratios in the range 15-80 per cent. The results identify a regime in thesliding/rolling speed domain in which failure of EN36A (750 DPN) and EN24U (350 DPN) is predominantly by scuffing preceded by running-in, which delays scuffing to relatively severe operating conditions. At speed combinations above the identified regime,the steels fail by scuffing in, or close to, mixed lubrication conditions with little or no running-in, so that the conventional failure criterion based on a film thickness to r.m.s. surface roughness value of three is appropriate. At speed combinationsbelow the identified regime, load intensity becomes sufficient so that general plastic deformation intervenes before failure by scuffing can occur and a shakedown-based criterion becomes appropriate. Observations of contact frequency variations suggestthat with steel surfaces at 650 and 750 DPN running-in is produced by rubbing of asperity tips and that with steel surfaces at 350 and 450 DPN it is produced by hydrodynamic ripple pressures. For the latter materials at low slide-roll ratios, macro- andmicropitting are likely concomitants of plastic deformation.
机译:本文介绍了矿物油润滑双盘试验,在滚动(平均表面)速度范围为3-23 m / s且滑移比为15-80%的情况下,标称点或线接触。结果确定了在滑动/滚动速度域中的一种状态,其中EN36A(750 DPN)和EN24U(350 DPN)的故障主要是通过磨合后再进行磨合,从而将磨合延迟到相对严苛的工作条件。在高于确定状态的速度组合下,钢会在很少或没有磨合的情况下磨入或接近混合润滑条件而失效,因此常规的失效标准基于膜厚至r.m.s。表面粗糙度值以三为宜。在确定的速度以下的速度组合下,载荷强度变得足够大,以至于一般的塑性变形会在发生擦伤导致的破坏发生之前介入,并且基于振动的判据变得合适。接触频率变化的观察结果表明,在650和750 DPN的钢表面磨合是通过粗糙尖端的磨擦产生的,而在350和450 DPN的钢表面磨合是由流体动力波纹压力产生的。对于低滑动比的后一种材料,宏观和微观点蚀可能伴随塑性变形。

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