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A Study on the Influence of the Nozzle Lead Angle on the Performance of Liquid Metal Electromagnetic Micro-Jetting

机译:喷嘴导程角对液态金属电磁微喷性能的影响研究

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To improve the jetting performance of liquid metals, an electromagnetic micro-jetting (EMJ) valve that realizes drop-on-demand (DOD) jetting while not involving any valve core or moving parts was designed. The influence of the lead angle of the nozzle on the jetting of liquid metal gallium (Ga) was investigated. It was found that the Lorentz force component parallel to the nozzle that jets the electrified liquid Ga is always larger than its internal friction; thus, jet can be generated with any lead angle but with different kinetic energies. Experimental results show that the mass of the jetting liquid, the jetting distance, the initial velocity of the jet, and the resulting kinetic energy of the jet increase first and then decrease. When the lead angle is 90???°, the mass of the jetting liquid and the kinetic energy are at their maximum. When the angle is 80???°, the initial velocity achieves its maximum, with a calculated value of 0.042 m/s. Moreover, very close and comparatively high kinetic energies are obtained at 80???° and 90???°, indicating that angles in between this range can produce a preferable performance. This work provides an important theoretical basis for the design of the EMJ valve, and may promote the development and application of micro electromagnetic jetting technology.
机译:为了提高液态金属的喷射性能,设计了一种电磁微喷射(EMJ)阀,该阀在不涉及任何阀芯或运动部件的情况下实现了按需滴(DOD)喷射。研究了喷嘴的导程角对液态金属镓(Ga)喷射的影响。已经发现,平行于喷射带电液体Ga的喷嘴的洛伦兹力分量总是大于其内部摩擦力。因此,可以以任何超前角但具有不同的动能来产生射流。实验结果表明,喷射液体的质量,喷射距离,喷射的初始速度以及所产生的喷射动能先增大后减小。当超前角为90°角时,喷射液体的质量和动能最大。当角度为80°角时,初始速度达到最大值,计算值为0.042 m / s。此外,在80°和90°角处获得非常接近且相对较高的动能,这表明在该范围内的角度可以产生较好的性能。这项工作为EMJ阀的设计提供了重要的理论依据,并可能促进微电磁喷射技术的发展和应用。

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