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Mechanism of Turbocharger Coking in Gasoline Engines

机译:汽油发动机涡轮增压器焦化机制

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Turbocharged downsized gasoline engines have been widely used in the market as one of the measures to improve fuel economy. Coking phenomena in the lubricating circuit of the turbocharger unit is a well-known issue that may affect turbocharger efficiency and durability. Laboratory rig test such as ASTM D6335 (TEOST 33C) has been used to predict this phenomenon as a part of engine oil performance requirements. On the other hand, laboratory tests sometimes have difficulty reproducing the actual mechanism of coking caused by engine oil degradation. Accumulation of insoluble material is one of the important gasoline engine oil degradation modes. The influence of temperature and insoluble concentration were investigated based on actual used engine oils collected in the field.
机译:涡轮增压较低的汽油发动机已广泛应用于市场,作为改善燃油经济性的措施之一。涡轮增压器单元的润滑电路中的焦化现象是一个众所周知的问题,可能影响涡轮增压器效率和耐用性。实验室钻机测试如ASTM D6335(TEOST 33C)已被用于预测这种现象作为发动机油性能要求的一部分。另一方面,实验室测试有时难以再现发动机油退化引起的焦化的实际机制。不溶性材料的积累是重要的汽油机油降解模式之一。基于在现场收集的实际使用的发动机油研究了温度和不溶性浓度的影响。

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