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Fuel Transport across the Piston Ring Pack: Measurement System Development and Experiments for Online Fuel Transport and Oil Dilution Measurements

机译:穿过活塞环包装的燃料运输:测量系统开发和在线燃料运输和油稀释测量的实验

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The limitation of fuel entry into the oil sump of an internal combustion engine during operation is important to preserve the tribological properties of the lubricant and limit component wear. For observation and quantification of the effects leading to fuel entry, a highly sensitive and versatile measurement system is essential. While oil sampling from the sump followed by laboratory analysis is a common procedure, there is no system for automatic sampling of all the positions and fast online analysis of the samples. For the research project ‘Fuel in Oil’, a measurement system was developed especially for the described tasks. The system is placed next to the engine in the test cell. Sampling points are the target point of the fuel injector jet and the liner below, the oil sump and the crankcase ventilation system. The system consists of a microliter volume and an aerosol sampling setup, a probe evaporator, an isothermal gas chromatograph and a triple quadrupole mass spectrometer with a modified ion source. To quantify the fuel emission from the cylinder wall into the exhaust, an online exhaust gas measurement was carried out using a direct inlet system with the same mass spectrometer. With the use of the described setup, it was possible to observe and quantify the effects leading to fuel entry into the oil sump as well as fuel leaving the sump.
机译:在操作期间,燃料进入内燃机油槽的燃料进入的限制对于保持润滑剂和限制部件磨损的摩擦学性质是重要的。为了观察和定量导致燃料进入的效果,高度敏感和多功能的测量系统至关重要。虽然来自贮槽的油采样,但实验室分析是一个常见的程序,但没有系统可以自动采样所有位置和对样品的快速在线分析。对于研究项目的“石油燃料”,特别为所描述的任务开发了一种测量系统。系统旁边放置在测试单元中的发动机旁边。采样点是燃料喷射器喷射器的目标点和下方的衬里,油槽和曲轴箱通风系统。该系统由微升体积和气溶胶采样设置,探针蒸发器,等温气相色谱仪和具有改进的离子源的三重四极杆质谱仪组成。为了量化气缸壁进入排气的燃料发射,使用具有相同质谱仪的直接入口系统进行在线废气测量。通过使用所描述的设置,可以观察和量化导致油槽的燃料进入的效果以及离开贮槽的燃料。

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