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Effect of Stand-Off Distance on Impact Pressure of High Speed Water Jets

机译:脱水距离对高速水喷射冲击压力的影响

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High speed liquid jets may be applied to jet cutting, drilling and cleaning. Recently, in the automotive industries, the spray injection pressure becomes higher and higher to enhance the fuel mixing for the improved combustion efficiency. However, the ultra high injection pressure may cause the damage to the nozzle and also the combustion chamber. In the medical application, the high speed liquid injection might be applied for the drug delivery through the skin where the needle is not required anymore. From the above mentioned application, the investigation on the impact pressure of the high speed liquid jet relative to the stand-off distant is significant. The high speed liquid jets are generated by the projectile impact driven method. The high speed projectile is launched by the horizontal single stage powder gun. The experimental study focuses on the stand-off between 1.5 cm to 6.0 cm, while the nozzle contains approximately 1.5 cm~3 of water in its cavity. The nozzle conical angles are 30° and 60° with the orifice diameter of 0.7 mm. The jet velocities are measured by laser beam interruptions method. The target material is the Polymethyl Methacrylate (PMMA) which the impact pressure is measured by using a piezoelectric Polyvinylidene Fluoride (PVDF) film. From the experiments, the maximum water jet velocity of 2290 SS can be obtained from the 30° conical angle nozzle. The maximum impact pressures of nozzle conical angle of 30° and 60° are 3.4 GPa and 2.6 GPa respectively, at stand-off distance 3 cm. However, at the stand-off distance mom than 3 cm, the impact pressure significantly decreases, because of aerodynamic drag, jets core break-up, and atomization of the water.
机译:高速液体射流可以被施加到射流切割,钻孔和清洁。最近,在汽车行业中,喷雾注入压力越来越高,以提高燃料的改进的燃烧效率混合。然而,超高注射压力可能导致喷嘴的损伤,并且还燃烧室。在医疗应用中,高速液体喷射可能被应用于通过其中不再需要在针的皮肤药物递送。从上面提到的应用中,高速相对于所述液体射流的冲击压力的调查对峙遥远是显著。高速液体射流由弹冲击驱动方法产生的。高速弹丸是由卧式单级式火药枪发射。的实验研究的重点是对峙1.5厘米之间至6.0厘米,而喷嘴包含大约在其空腔的水1.5厘米〜3。喷嘴锥形角是30°和60°为0.7mm的孔的直径。射流速度由激光光束中断方法测量。靶材料是聚甲基丙烯酸甲酯(PMMA),它的冲击压力是通过使用压电聚偏氟乙烯(PVDF)膜进行测定。从实验中,可从30°圆锥角的喷嘴来获​​得2290 SS的最大水射流速度。的30喷嘴锥角°和60的最大冲击压力分别°是3.4 GPA和2.6 GPA,在间隔距离3厘米。然而,在对峙距离妈超过3厘米,冲击压力显著降低,因为空气阻力,喉核分手,和水的雾化。

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