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Cavitation erosion reduction strategy for valve member and fuel injector utilizing same

机译:阀构件和燃料喷射器的气蚀减少策略

摘要

A mechanically actuated electronically controlled unit injector includes an electronically controlled spill valve to precisely control timing of fuel pressurization within a fuel pressurization chamber. Cavitation bubbles may be generated in the region of the valve seat when the spill valve member is closed to raise fuel pressure in the fuel injector. This cavitation can cause erosion on the spill valve member and the surrounding injector body. In order to preempt cavitation damage, the valve member may be modified to include a compound annulus that includes a small annulus that corresponds to an identified cavitation damage pattern. Although the generation of cavitation bubbles may continue after such a strategy, cavitation erosion, and the associated liberation of metallic particles into the fuel system can be reduced, and maybe eliminated, by the preemptive cavitation reduction strategy.
机译:机械致动的电子控制的单元喷射器包括电子控制的溢流阀,以精确地控制燃料增压室内的燃料增压正时。当溢流阀构件关闭以提高燃料喷射器中的燃料压力时,在阀座的区域中可能会产生气蚀气泡。这种气蚀会导致溢流阀构件和周围的喷油器主体受到腐蚀。为了防止气蚀损害,可以将阀构件修改为包括复合环,该复合环包括与识别出的气蚀损害模式相对应的小环。尽管在这种策略之后,气蚀气泡的产生可能会继续,但是通过抢先的气蚀减少策略,可以减少甚至可以消除气蚀,以及伴随的金属颗粒向燃料系统的释放。

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