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Open System Tribology and Influence of Weather Condition

机译:开放系统摩擦学与天气状况的影响

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摘要

The tribology of an open system at temperatures ranging between 3 °C and −35 °C, with and without snow, was investigated using a pin-on-disc tribometer mounted in a temperature-controlled environmental chamber. The relationship between the microstructure and ductility of the materials and the tribology at the contacting surfaces was investigated. The study shows that during continuous sliding, pressure causes snow particles to melt into a liquid-like layer, encouraging the generation of oxide flakes on the contact path. The friction coefficient and wear rate are dramatically reduced through an oxidative friction and wear mechanism. In the absence of snow, the tribological process is controlled by the low temperature brittleness of steel in the temperature range from 3 °C to −15 °C. At these temperatures, cracks are prone to form and extend on the worn surfaces, resulting in the spalling of bulk scraps, which are crushed into debris that increases the friction coefficient and wear rate due to strong abrasion. When the temperature falls to −25 °C, an ice layer condenses on the metal surfaces and relaxes the tribological process in the same way as the added snow particles, which significantly decreases the friction and wear.
机译:使用安装在温度可控环境室内的针盘式摩擦计,研究了开放系统在3 C和-35 C之间的温度(有无雪)下的摩擦学。研究了材料的微观结构和延展性与接触表面的摩擦学之间的关系。研究表明,在连续滑动过程中,压力导致积雪颗粒融化成液体状层,从而促进了在接触路径上生成氧化物薄片。通过氧化摩擦磨损机理,摩擦系数和磨损率大大降低。在没有雪的情况下,摩擦过程受钢在3 C至-15 C范围内的低温脆性控制。在这些温度下,容易在磨损的表面上形成裂纹并在其上扩展,导致散装碎屑散裂,这些碎屑被压碎成碎屑,由于强烈的磨损而增加了摩擦系数和磨损率。当温度降至-25°C时,冰层会凝结在金属表面,并以与添加的雪粒相同的方式放松摩擦过程,从而显着降低摩擦和磨损。

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