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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Development of Micro-Diesel Injector Nozzles via Microelectromechanical Systems Technology and Effects on Spray Characteristics
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Development of Micro-Diesel Injector Nozzles via Microelectromechanical Systems Technology and Effects on Spray Characteristics

机译:微机电系统技术开发微喷油嘴及其对喷雾特性的影响

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Micromachined planar orifice nozzles have been developed using MEMS (micro-electromechanical systems) technology and tested with commercially produced diesel injection systems. Such a system, properly designed, may have the capability to improve the spray characteristics in DI diesel engines due to improved atomization and fuel-air mixing. To demonstrate this process, 14 microplanar orifice nozzles were fabricated with deep X-ray lithography and electroplating (LIGA) technology. The circular orifice diameters were varied from 40 to 260 microns and the number of orifices varied from one to 169. Three plates with noncircular orifices were also fabricated to examine the effect of orifice shape on spray characteristics. These nozzles were then attached to commercial diesel injectors and the associated injection systems were used in the study of drop sizes. The experiments were carried out at two different injection pressures (around 25 MPa and 80 MPa). Local drop sizes were measured by a laser diffraction technique, and the average drop sizes of the whole sprays were measured by a light extinction technique. The drop sizes were found to depend primarily on the total mass flow area. Coalescence droplet collisions among adjacent sprays were apparent for the multiple orifice nozzles. Nonplanar configurations are under development and may show improved performance.
机译:使用MEMS(微机电系统)技术开发了微加工的平面孔口喷嘴,并已通过商业生产的柴油喷射系统进行了测试。经过适当设计的这种系统由于雾化和燃油-空气混合的改善,可能具有改善DI柴油机喷雾特性的能力。为了演示该过程,使用深X射线光刻和电镀(LIGA)技术制造了14个微平面孔口喷嘴。圆形孔的直径从40到260微米不等,孔的数量从1到169不等。还制作了三块带有非圆形孔的板,以检查孔形状对喷雾特性的影响。然后将这些喷嘴连接到商用柴油喷油器,并将相关的喷油系统用于液滴尺寸的研究。实验是在两种不同的注射压力(约25 MPa和80 MPa)下进行的。通过激光衍射技术测量局部液滴尺寸,并且通过消光技术测量整个喷雾的平均液滴尺寸。发现液滴大小主要取决于总质量流面积。对于多个孔喷嘴,相邻喷雾之间的聚结液滴碰撞是明显的。非平面配置正在开发中,可能会显示出更高的性能。

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