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Experimental investigation of transient and thermal effects on lubricated non-conformal contacts

机译:润滑非保形触点瞬态和热效应的实验研究

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In this work, thermal and transient effects on non-conformal lubricated contacts are investigated through experimental analyses. Experiments between a ball and a plane surface of a disc are described. Friction coefficients and film thicknesses are measured (the film thickness only for the glass-on-steel contact). A paraffin base mineral oil is used as a lubricant.rnFirst experiments are carried out under steady-state conditions. To include effects due to different thermal properties of contacting materials, a steel-on-steel and a glass-on-steel contact with different slide-to-roll ratios are tested. If the contacting materials have different thermal properties, as in the case of a glass-on-steel contact, thermal effects like the temperature-viscosity wedge action could clearly be shown. It is found that the friction coefficients are influenced by the slide-to-roll ratio and the thermal properties of the contacting materials.rnUnder transient conditions, the entraining velocity is varied with a sinusoidal law. Squeeze effects explain 'loops' of friction and film thickness found also in previous works. The formation of friction loops is related to the measured film thickness differences. However, also under non-steady-state conditions, thermal effects, like the temperature-viscosity wedge action, influence the friction coefficients.
机译:在这项工作中,通过实验分析研究了对非共形润滑触点的热效应和瞬态效应。描述了在球和圆盘的平面之间进行的实验。测量摩擦系数和膜厚(仅玻璃钢接触件的膜厚)。石蜡基矿物油用作润滑剂。第一个实验在稳态条件下进行。为了包括由于接触材料的不同热性能而产生的影响,测试了具有不同滑动比的钢对钢和玻璃对钢的接触。如果接触材料具有不同的热性能,例如在钢上玻璃接触的情况下,则可以清楚地显示出诸如温度-粘度楔形作用之类的热效应。结果表明,摩擦系数受滑动比和接触材料热性能的影响。在瞬态条件下,夹带速度随正弦规律变化。挤压效应解释了在以前的工作中也发现的摩擦和薄膜厚度的“回路”。摩擦环的形成与测得的薄膜厚度差有关。但是,同样在非稳态条件下,热效应(如温度-粘度楔形作用)也会影响摩擦系数。

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