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首页> 外文期刊>Journal of Tribology >Bioderived Fuel Blend Dilution of Marine Engine Oil and Impact on Friction and Wear Behavior
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Bioderived Fuel Blend Dilution of Marine Engine Oil and Impact on Friction and Wear Behavior

机译:船用机油的生物衍生燃料共混物稀释及其对摩擦和磨损行为的影响

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摘要

To reduce the amount of petroleum-derived fuel used in vehicles and vessels powered by internal combustion engines (ICEs), the addition of bioderived fuel extenders is a common practice. Ethanol is perhaps the most common bioderived fuel used for blending, and butanol is being evaluated as a promising alternative. The present study determined the fuel dilution rate of three lubricating oils (pure gasoline (E0), gasoline-10% ethanol blend (E10), and gasoline-16% isobutanol blend (i-B16)) in a marine engine operating in on-water conditions with a start-and-stop cycle protocol. The level of fuel dilution increased with the number of cycles for all three fuels. The most dilution was observed with i-B16 fuel, and the least with E10 fuel. In all cases, fuel dilution substantially reduced the oil viscosity. The impacts of fuel dilution and the consequent viscosity reduction on the lubricating capability of the engine oil in terms of friction, wear, and scuffing prevention were evaluated by four different tests protocols. Although the fuel dilution of the engine oil had minimal effect on friction, because the test conditions were under the boundary lubrication regime, significant effects were observed on wear in many cases. Fuel dilution was also observed to reduce the load-carrying capacity of the engine oils in terms of scuffing load reduction.
机译:为了减少由内燃机(ICE)供电的车辆和船舶中使用的石油衍生燃料,添加生物衍生燃料增量剂是一种常见的做法。乙醇也许是最常见的生物来源燃料,用于混合,而丁醇正在被评估为有前途的替代品。本研究确定了在以下条件下运行的船用发动机中,三种润滑油(纯汽油(E0),汽油10%乙醇混合物(E10)和汽油-16%异丁醇混合物(i-B16))的燃料稀释率。带有启动和停止循环协议的水条件。燃料稀释水平随所有三种燃料的循环次数而增加。使用i-B16燃料观察到的稀释度最高,而使用E10燃料观察到的稀释度最低。在所有情况下,燃料稀释都会大大降低机油粘度。通过四种不同的测试方案,评估了燃料稀释以及随之而来的粘度降低对发动机油润滑性能的影响,包括摩擦,磨损和防擦伤。尽管机油的燃料稀释对摩擦的影响很小,但由于测试条​​件是在边界润滑条件下进行的,因此在许多情况下都观察到了对磨损的显着影响。还观察到燃料稀释会降低擦伤负荷,从而降低发动机油的负荷能力。

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