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Experimental Investigation of Spray and Combustion Characteristics by Direct Needle-Driven Diesel Injector in a CRDi Engine

机译:CRDI发动机直接针刺柴油喷射器喷雾和燃烧特性的实验研究

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In common rail diesel fuel injector system, currently there are two kinds of servo-hydraulic type piezo-driven injector; 3-way and bypass-circuit type, in order to amplify the extension of the piezo stack. The pilot valve driven by piezo stack can control the flow of fuel at a pressure chamber, which is accurately regulated by 3-way or bypass-circuit mechanism. Even though fuel injection events are triggered electrically, the main actuation forces to move injector needle inside nozzle are hydraulic force which is the key object aimed to eliminate in this study. In this study, two experiments were carried out using a constant volume chamber and a single cylinder CR direct-injection diesel engine. The driving force for air-fuel mixing process in diesel diffusion combustion is the energy contained within the spray. So, LED back illumination in constant volume chamber experiment for Mie scattering applied on the initial liquid spray visible of a direct needle-driven piezo injector and compared with conventional solenoid-driven injection cases as well. Also, the effects of direct needle-driven single injection was investigated on combustion performance through experiment approach of a single cylinder diesel CR direct-injection engine. As some results, a direct needle-driven diesel injector with no-hydraulic circuit has better control capability, good potential for higher injection rate, and desired accuracy of injected fuel quantity thanks to high performance of the piezo stack.
机译:在共轨柴油燃料喷射器系统中,目前有两种伺服液压型压电驱动喷射器; 3路和旁路电路类型,以放大压电堆的延伸。由压电堆堆驱动的导阀可以控制压力室内的燃料流,这通过三通或旁路电路机构精确调节。尽管燃料喷射事件被电动触发,但是在喷嘴内移动喷射器针的主要致动力也是液压,其是旨在在本研究中消除的关键物体。在该研究中,使用恒定容积室和单缸CR直喷柴油发动机进行两个实验。柴油扩散燃烧中的空气燃料混合过程的驱动力是喷雾内部的能量。因此,恒定音量室实验中的LED背部照明施加在直接针驱动压电喷射器的初始液体喷射上,并与传统的螺线管驱动的注射箱相比。而且,通过单缸柴油CR直喷发动机的实验方法研究了直接针对直喷单喷射的燃烧性能。与某种结果一样,具有无液压回路的直线针驱动的柴油喷射器具有更好的控制能力,较高注射速率的良好潜力,并且由于压电堆的高性能,所需的注入燃料量的所需精度。

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