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On the mechanism of exhaust gas recirculation valve sticking in diesel engines

机译:柴油机排气再循环阀卡死的机理

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Research was conducted on a means of responding to the issue of sticking of exhaust gas recirculation valves resulting from the occurrence of high concentrations of hydrocarbons when the exhaust gas recirculation operating range is expanded. The chemical components responsible for the phenomenon were identified, and exhaust gas and deposits were analyzed. From the tendency of deposition and the results of analyses of deposits, it was conjectured that the type of hydrocarbons present, and their dew points, were the major factors in the sticking of exhaust gas recirculation valves. In order to confirm that the dew points of the hydrocarbons were the major factor, tests were conducted to synthesize deposits in a batch furnace. When the hydrocarbons involved in deposit-forming reactions reached their dew points and did liquefy, the chemical reactions were checked. The conditions in which valve sticking occurs in engines were determined to correlate with the dew points of the hydrocarbons in question. The relationship between the dew points of the hydrocarbons and exhaust gas recirculation valve wall temperature was studied, and a method of avoiding valve sticking by applying control to maintain the temperature of the valve walls above the dew points was proposed.
机译:针对当扩大排气再循环操作范围时由于高浓度的碳氢化合物的出现而引起的排气再循环阀的粘附问题的应对方法进行了研究。确定了造成该现象的化学成分,并对废气和沉积物进行了分析。从沉积的趋势和沉积物的分析结果推测,存在的碳氢化合物的类型及其露点是造成废气再循环阀粘滞的主要因素。为了确认烃的露点是主要因素,进行了在间歇式炉中合成沉积物的测试。当参与沉积物形成反应的碳氢化合物达到露点并液化时,检查化学反应。确定发动机中发生气门粘滞的条件与所讨论的碳氢化合物的露点相关。研究了碳氢化合物的露点与废气再循环阀壁温度之间的关系,提出了一种通过控制使阀壁温度保持在露点以上来避免阀卡住的方法。

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