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Determination of the response time of new generation electromagnetic injectors as a function of fuel pressure using the internal photoelectric effect

机译:用内部光电效应确定新一代电磁注射器作为燃料压力函数的响应时间

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Very strict requirements referring to emission standards, the pollution of which is closely related to the quality of the combustion process, forces the manufacturers to introduce new solutions in the field of fuel injection, as well as adapt existing to more stringent standards. A noticeable trend in self-ignition engines is the return to injectors with electromagnetic control, due to the longer durability of the control element in relation to injectors with piezoelectric control. The use of electromagnetic injectors, however, required the introduction of numerous changes, resulting in a reduction in the number and weight of moving elements, which allowed to achieve greater precision of control and multiplication of the fuel dose. Due to the wide range of injector work pressures, it is necessary to determine the delay between the coil override and the beginning of the injection process, so that it is possible to precisely control the supply of fuel at each point of the engine's operation. In order to characterize the delay as a function of fuel pressure, the authors used the photoelectric effect. At the moment when the fuel stream interrupts the light source in the photoactive element, there is a voltage drop, on the basis of which it is possible to determine the actual start of the injection. The authors managed to show that the increase in fuel pressure in the reservoir significantly reduces the response time of the injector. Using the waveform curves, the relationship between the increase in the fuel dose for the measured cross section and the voltage drop in the photoactive element was also determined. It was also found, that the method basing on the use of a radiation source and a photoactive element can be used in the diagnostics of injectors to identify damaged friction pairs needle - body.
机译:非常严格的要求提及排放标准,污染与燃烧过程质量密切相关,迫使制造商在燃油喷射领域引入新的解决方案,以及适应更严格的标准。自点火发动机中的明显趋势是通过电磁控制的返回喷射器,这是由于控制元件与具有压电控制的喷射器的更长的耐久性。然而,使用电磁喷射器需要引入多种变化,导致移动元件的数量和重量减小,这使得可以实现更高的控制精度和燃料剂量的倍增。由于各种喷射器工作压力,需要确定线圈覆盖和喷射过程的开始之间的延迟,从而可以精确地控制发动机操作的每个点处的燃料供应。为了表征延迟作为燃料压力的函数,作者使用了光电效应。在燃料流中断光源元件中的光源时,存在电压降,基于该电压降,可以确定进入的实际开始。作者设法表明,储层中的燃料压力的增加显着降低了喷射器的响应时间。使用波形曲线,还确定了测量横截面的燃料剂量增加与光活性元件中的电压降的关系。还发现,基于使用辐射源和光活性元件的方法可以用于喷射器的诊断中,以识别受损的摩擦对针脚。

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