首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >The effect of lubricating oil condition on the friction and wear of piston ring and cylinder liner materials in a reciprocating bench test
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The effect of lubricating oil condition on the friction and wear of piston ring and cylinder liner materials in a reciprocating bench test

机译:在往复式试验台中,润滑油条件对活塞环和气缸套材料的摩擦磨损的影响

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摘要

A test method has been developed to evaluate the friction and wear behavior of candidate piston ring and cylinder liner materials for heavy-duty diesel engine applications. Oil condition and its effects are important aspects of this test method and are the focus of this work. The test uses actual piston ring segments sliding on flat specimens of liner material to simplify alignment and to multiply the stress to the level normally seen in engine operation. Reciprocating tests were conducted at 10 Hz and 10mm stroke at 100 ℃. Test oils consisted of fully formulated lubricating oils that were conditioned in ASTM standard engine tests. The point contact between the ring segment and flat counter-face, the applied load and elevated temperature, all result in boundary lubrication, which simulates the environment near top-ring-reversal. The oil condition was defined by variables, such as spectroscopic elemental concentrations, soot level, oxidation, and contaminant particle concentration. Compared with engine-measured wear rates, ring wear was magnified by at least an order of magnitude and the liner by about 1.5-2 orders of magnitude as needed for an accelerated test. However, the basic wear mechanism, abrasive wear, was the same as in the engine. The soot concentration also had a strong effect on liner wear but no effect on ring wear. The oil viscosity has a mild effect on the friction at high load in boundary lubrication conditions. The viscosity of the conditioned oils tested here was related to the soot content rather than the oxidation levels.
机译:已经开发出一种测试方法来评估重型柴油机应用中候选活塞环和气缸套材料的摩擦磨损性能。油的状况及其影响是该测试方法的重要方面,并且是这项工作的重点。该测试使用实际的活塞环段在衬里材料的扁平样品上滑动,以简化对准并将应力增加到发动机运行中通常看到的水平。往复试验在100 Hz下以10 Hz和10mm的行程进行。测试油由完全配制的润滑油组成,这些润滑油在ASTM标准发动机测试中进行了调节。环段和平面相对的点接触,施加的载荷和高温都会导致边界润滑,从而模拟了顶环反转附近的环境。油质状况由变量定义,例如光谱元素浓度,烟灰水平,氧化和污染物颗粒浓度。与发动机测得的磨损率相比,根据加速测试的要求,齿圈磨损至少放大了一个数量级,而衬套则放大了大约1.5-2个数量级。但是,基本磨损机制(磨料磨损)与发动机相同。烟灰浓度对衬套磨损也有很强的影响,但对环磨损没有影响。在边界润滑条件下,机油粘度对高负荷下的摩擦有轻微的影响。此处测试的调理油的粘度与烟灰含量有关,而不与氧化水平有关。

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