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Frictional Characteristics of IF-WS_2 Nanoparticles in Simulated Engine Conditions

机译:模拟发动机工况下IF-WS_2纳米颗粒的摩擦特性

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The efficacy of inorganic fullerene-like (IF) tungsten disulfide (WS2) nanoparticles as engine oil friction modifier additive was investigated using a high-stroke reciprocating piston ring-cylinder bore bench test system. Frictional characteristics of various IF-WS_2 nanoparticle concentrations in mineral oil were experimentally analyzed in simulated engine conditions controlling oil temperature, speed, and normal load. Though the effect of IF-WS2 nanoparticles on piston ring and cylinder bore friction was minor in low concentrations, after a running period in a mixed lubrication regime with 10% additive, a considerable reduction in friction coefficient was observed when the IF-WS2 formulated oil was used. This reduction remains to some extent with reference mineral oil after solvent cleaning of the mating components. The results show that a thin tribofilm gradually forms on the piston ring and the cylinder bore surfaces, reducing the friction coefficient in a mixed lubrication regime. However, in order to obtain the friction reduction there seems to be a threshold in the concentration of IF-WS2 in mineral oil and film development period. The effects of lubrication regime, contact load, speed, and surface roughness on tribofilm formation are also discussed. The presence of WS_2 tribofilm formed on the piston ring and the cylinder bore surfaces was further verified using Raman spectroscopy.
机译:使用高行程往复活塞环-缸膛试验台系统研究了类无机富勒烯(IF)二硫化钨(WS2)纳米颗粒作为发动机机油摩擦改进剂添加剂的功效。在控制机油温度,速度和正常负载的模拟发动机条件下,通过实验分析了矿物油中各种IF-WS_2纳米颗粒浓度的摩擦特性。尽管在低浓度下IF-WS2纳米颗粒对活塞环和气缸孔摩擦的影响很小,但是在添加了10%添加剂的混合润滑条件下运行一段时间后,当IF-WS2配制的机油观察到摩擦系数显着降低被使用了。溶剂在清洁配对组件后,这种减少程度在一定程度上仍与参考矿物油有关。结果表明,在活塞环和气缸孔表面上逐渐形成了一层很薄的摩擦膜,从而降低了混合润滑条件下的摩擦系数。然而,为了获得降低的摩擦,似乎在矿物油和膜显影阶段中IF-WS2的浓度存在阈值。还讨论了润滑方式,接触载荷,速度和表面粗糙度对摩擦膜形成的影响。使用拉曼光谱进一步验证了在活塞环和气缸孔表面上形成的WS_2摩擦膜的存在。

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