Study on an injection quantity sensor. II: Evaluation of the sensing element

Schmid, Seidel
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引用次数: 9

Abstract

For further optimization of the combustion process, the information about the actually injected fuel quantity is desirable, especially in diesel engines equipped with direct injection technology. A miniaturized hot-film anemometer with a titanium/platinum metallization on a low-temperature co-fired ceramics substrate was developed and integrated into a Common Rail injection nozzle. The micro-flow sensor proved its high performance and its capability over the complete fuel quantity map of a high pressure hydraulic injection system where drive pulses for the operation of the injector range between 0.3 ms and 1.5 ms at injection pressures up to 135 MPa (1350 bar). In correspondence with measurements of an injection amount indicator integrated into the hydraulic test bench, the injected fuel quantity and the opening behaviour of the orifice were derived from the sensor signals as a function of injection parameters. Assuming a power law dependence on the fluid velocity for the flow-sensitive portion of the heat-transfer coefficient, a value of 0.5 for the exponent was determined experimentally, in excellent agreement with theoretical predictions.
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一种注射量传感器的研究。II:传感元件的评估
为了进一步优化燃烧过程,需要获得实际喷射燃油量的信息,特别是在配备直喷技术的柴油发动机中。研制了一种低温共烧陶瓷基板上钛/铂金属化的小型化热膜风速计,并将其集成到共轨喷射喷嘴中。在高压液压喷射系统的完整燃油量图中,微流量传感器证明了其高性能和能力,在高达135 MPa (1350 bar)的喷射压力下,喷油器运行的驱动脉冲范围在0.3 ms至1.5 ms之间。根据集成在液压试验台中的喷油量指示器的测量结果,从传感器信号中得出喷油量和喷口的开启行为,作为喷射参数的函数。假设传热系数的流动敏感部分与流体速度呈幂律关系,则实验确定的指数值为0.5,与理论预测非常吻合。
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