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首页> 外文期刊>Tribology letters >Ionic Liquids as Lubricants of Titanium-Steel Contact. Part 2: Friction, Wear and Surface Interactions at High Temperature
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Ionic Liquids as Lubricants of Titanium-Steel Contact. Part 2: Friction, Wear and Surface Interactions at High Temperature

机译:离子液体作为钛钢接触润滑剂。第2部分:高温下的摩擦,磨损和表面相互作用

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The tribological behaviour and surface interactions of titanium sliding against AISI 52100 steel have been studied at 200 and 300℃ in the presence of two commercial imidazolium room temperature ionic liquid (ILs): 1-octyl-3-methylimidazolium tetrafluoroborate (L108) and 1-hexyl-3-methylimidazolium hexafluoro-phosphate (LP106). L108 presents the higher thermal stability but gives higher friction coefficients and wear rates than LP106, with long running-in periods and high friction values, both at 200 and 300℃. Friction and wear rates for LP106 are lower and decrease as the temperature increases from 25 to 200℃. At 200℃, LP106 shows a constant friction coefficient, without running-in, produces a mild wear on titanium and no surface damage on steel. LP106 fails at 300℃, close to its degradation temperature, due to tribochemical decomposition through partial dissociation of the hexafluorophosphate anion, with formation of a phosphorus-rich layer on the steel ball, while the titanium wear track surface is heterogeneous, showing regions with the presence of fluoride and others with the presence of phosphate. When the steel ball is substituted for a ruby sphere under the same conditions at 300℃, a low friction coefficient and mild wear is observed, due to the higher stability of the LP106 lubricant at the ruby-titanium interface. The friction coefficients, wear mechanisms and surface interactions have been studied by means of friction-distance records, SEM, EDX and XPS.
机译:在两种商业化的咪唑室温离子液体(ILs):1-辛基-3-甲基咪唑四氟硼酸盐(L108)和1-二甲基咪唑室温离子液体的存在下,研究了钛在AISI 52100钢上滑动的摩擦学行为和表面相互作用。己基-3-甲基咪唑六氟磷酸盐(LP106)。与LP106相比,L108具有更高的热稳定性,但具有更高的摩擦系数和磨损率,在200和300℃均具有较长的磨合期和较高的摩擦值。 LP106的摩擦磨损率会降低,并随着温度从25升高到200℃而降低。在200℃时,LP106表现出恒定的摩擦系数,无磨合,对钛产生轻微的磨损,对钢没有表面损伤。 LP106在接近其降解温度的300℃时失效,这是由于六氟磷酸根阴离子的部分离解导致了摩擦化学分解,并在钢球上形成了富磷层,而钛的磨损道表面却是异质的,显示了具有存在氟化物,其他存在磷酸盐。在相同条件下于300℃下用钢球代替红宝石球时,由于LP106润滑剂在红宝石-钛界面上具有更高的稳定性,因此观察到低摩擦系数和轻度磨损。借助摩擦距离记录,SEM,EDX和XPS研究了摩擦系数,磨损机理和表面相互作用。

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