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A Chemical and Morphological Study of Diesel Injector Nozzle Deposits - Insights into their Formation and Growth Mechanisms

机译:柴油喷射器喷嘴沉积的化学和形态学研究 - 洞察中的形成和生长机制

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Modern diesel passenger car technology continues to develop rapidly in response to demanding emissions, performance, refinement, cost and fuel efficiency requirements. This has included the implementation of high pressure common rail fuel systems employing high precision injectors with complex injection strategies, higher hydraulic efficiency injector nozzles and in some cases <100μm nozzle hole diameters. With the trend towards lower diameter diesel injector nozzle holes and reduced cleaning through cavitation with higher hydraulic efficiency nozzles, it is increasingly important to focus on understanding the mechanism of diesel injector nozzle deposit formation and growth. In this study such deposits were analysed by cross-sectioning the diesel injector along the length of the nozzle hole enabling in-depth analysis of deposit morphology and composition change from the inlet to the outlet, using state-of-the-art electron microscopy techniques. Deposits produced in the injector nozzles of the industry standard fouling test (CEC F-98-08 DW10B bench engine) were compared with those formed in a vehicle driven on a chassis dynamometer, using a drive cycle more representative of real world vehicle conditions, to explore the effects of differing drive cycles and engine technologies. Fouling in all tests was accelerated with the addition of 1ppm zinc neodecanoate, as specified in the CEC DW10B test. This in-depth characterisation revealed a complex multi-layered system of deposits inside the diesel injector nozzle. Through analysing these layers the mechanisms enabling the initial deposit formation and growth can be postulated.
机译:现代柴油乘用车技术继续迅速发展,以应对要求苛刻的排放,性能,细化,成本和燃油效率要求。这包括实施高压共轨燃料系统,采用具有复杂注入策略的高精度喷射器,液压效率注射器喷嘴更高,在一些情况下<100μm喷嘴孔直径。通过朝向低直径柴油喷射器喷嘴孔的趋势,通过高液压效率喷嘴降低清洁,越来越重要,专注于理解柴油喷射器喷嘴沉积物沉积物形成和生长的机理。在该研究中,通过沿着喷嘴孔的长度横向切割柴油喷射器来分析这种沉积物,从而能够使用最先进的电子显微镜技术,通过沿喷嘴孔的长度进行深入分析沉积形态和组成的深入分析。 。将工业标准污垢测试(CEC F-98-08 DW10B台发动机)的喷射器喷嘴中产生的沉积物与在底盘测力计上的车辆中形成的那些进行比较,使用更具现实世界车辆条件的驱动循环探索不同驱动循环和发动机技术的影响。根据CEC DW10B试验中规定,所有测试中的污垢加速了1ppm锌新癸酸盐。这种深入的表征揭示了柴油喷射器喷嘴内部的复杂多层系统的沉积物。通过分析这些层,可以假设能够初始沉积形成和增长的机制。

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