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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Experimental investigation of dwell time characteristics in high-pressure double-solenoid-valve fuel injection system
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Experimental investigation of dwell time characteristics in high-pressure double-solenoid-valve fuel injection system

机译:高压双螺线管阀燃料喷射系统停留时间特性的实验研究

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摘要

The double-solenoid-valve fuel injection system consists of an electronic unit pump and an electronic injector. It can realize the separate control of fuel supply and injection and has the advantages of adjusting pressure by cycle and flexible controlling of the injection rate. The interval angle between the pilot and main injection directly affects the action degree and the characteristics of two adjacent injections, affecting engine performance. This work realizes multiple injection processes on the test platform of a high-pressure double-solenoid-valve fuel injection system, with maximum injection pressure reaching 200 MPa. In this study, the interval between driven current signal of pilot injection termination and that of main injection initiation is defined as the signal interval (DT1), whereas the interval between pilot injection termination and main injection initiation is defined as the injection interval (DT2). The differences between the signal and the injection intervals are calculated, and the variation rule of the difference with respect to the signal interval is analyzed. Results show that the variation rule of the difference with the signal interval first decreases, then increases, and finally decreases. The variation rule of the delay angle from the start of needle movement to the start of fuel injection is found to be the root cause of this rule. The influence of the injection pressure on needle deformation and fuel flow rate of the nozzle results in the variation rule. In addition, the influence of the cam speed, temperature, and pipe length on the difference between the signal and injection interval is determined. This research provides guidance for an optimal control strategy of the fuel injection process.
机译:双螺线管阀燃料喷射系统由电子单元泵和电子喷射器组成。它可以实现燃料供应和注入的单独控制,并通过循环调节压力和柔性控制注射速率的优点。导频和主喷射之间的间隔角度直接影响两个相邻喷射的动作程度和特性,影响发动机性能。这项工作实现了高压双螺线管阀燃料喷射系统的测试平台上的多个注射过程,最大喷射压力达到200MPa。在该研究中,导频注射终端的驱动电流信号与主喷射起始的间隔被定义为信号间隔(DT1),而导频注射终止和主喷射开始之间的间隔被定义为注入间隔(DT2) 。计算信号和注入间隔之间的差异,分析了与信号间隔的差异的变化规则。结果表明,信号间隔的差异变化规则首先降低,然后增加,最后减少。发现从针运动开始到燃料喷射开始的延迟角的变化规则是该规则的根本原因。喷射压力对喷嘴针变形和燃料流速的影响导致变化规则。另外,确定凸轮速度,温度和管长对信号和注入间隔之间的差的影响。本研究为燃油喷射过程的最佳控制策略提供了指导。

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