首页> 外文会议>ASME Internal Combustion Engine Division fall technical conference 2010 >CYLINDER HEAD GASKET WITH INTEGRATED MINIATURE COMBUSTION PRESSURE SENSORS
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CYLINDER HEAD GASKET WITH INTEGRATED MINIATURE COMBUSTION PRESSURE SENSORS

机译:集成微型燃烧压力传感器的气缸盖垫片

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摘要

The design and preliminary performance of a multi layer metal cylinder head gasket with integrated 1.7mm diameter combustion pressure sensors is described. The pressure sensors are either removable from the gasket without need for engine head removal or permanently fixed to the gasket. The gasket design is suitable for all sizes and types of internal combustion engines including gasoline, diesel, or alternative fuel, with peak pressures ranging from lOObar to 350bar. The sensors' diaphragms are positioned semi-flush with the gasket surface exposed to combustion gasses while the sensors' sealing surfaces are located 5mm-7mm from the diaphragms. The devices miniature signal conditioners are mounted inside a gasket extension protruding beyond the engine block. The miniature fiber optic pressure sensor operates on the principle of light intensity changes transmitted by two fibers upon reflection from a metal diaphragm deflecting under the effect of cylinder pressure. Preliminary test results are reported here collected on a 4-cylinder gasoline engine demonstrating good agreement with a reference transducer. When optimized, it is expected that a gasket integrated sensor will offer the accuracy of +/-1.5% enabling advanced engine controls based on Indicated Mean Effective Pressure (IMEP), Mass Fraction Burned (MFB), Peak Pressure as well as control of pilot fuel injection and virtual Mass Air Flow and NOx sensing.
机译:描述了带有集成的1.7mm直径燃烧压力传感器的多层金属气缸盖垫片的设计和初步性能。压力传感器可以从垫片上卸下而无需拆卸发动机缸盖,也可以永久地固定在垫片上。垫片设计适用于所有尺寸和类型的内燃发动机,包括汽油,柴油或替代燃料,其峰值压力为100bar至350bar。传感器的隔膜放置在半平齐的位置,垫圈表面暴露在燃烧气体中,而传感器的密封表面距离隔膜5mm-7mm。这些设备的微型信号调节器安装在突出于发动机缸体的垫圈延伸部分内。微型光纤压力传感器的工作原理是,在金属膜片的反射作用下,在气缸压力的作用下发生偏转时,两根光纤传输的光强度会发生变化。此处报告的初步测试结果是在4缸汽油发动机上收集的,表明与参考传感器具有很好的一致性。经过优化后,预计垫圈集成传感器将提供+/- 1.5%的精度,从而可以基于指示平均有效压力(IMEP),燃烧的质量分数(MFB),峰值压力以及先导控制进行高级发动机控制燃油喷射以及虚拟质量空气流量和NOx感应。

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