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一种新型喷嘴结构对小尺度射流的影响

Influence of a new type of nozzle structure on small scale jet

  • 摘要: 为了提高小尺度水射流的稳定长度,利用相关软件,采用两相流流体体积模型,通过设置参数,对直径60 μm~100 μm的水射流进行了计算流体动力学仿真,研究水射流在不同情景下的有效长度,设计了一种主动生成的气体保护层的喷嘴结构。结果表明,当喷孔直径为100 μm、压强在30 MPa以下时,由于加工精度的影响,传统的尖锐直角形成收缩水射流方式不可行, 而本文中的方法可在0.7 MPa压强下生成较为稳定的水射流。该方法加工难度小、所需压强低,对于水导激光加工的喷嘴结构设计制造有参考价值。

     

    Abstract: In order to improve the stable length of small-scale water jets, relevant software and two-phase fluid volume model were used. By setting relevant parameters, a diameter of 60 μm~100 μm of water jet was simulated on computational fluid dynamics. The effective length of water jet in different scenarios was studied. A new type of nozzle structure for actively generating a gas protective layer was designed. The results indicate that, when the nozzle diameter is 100 μm, the pressure is below 30 MPa, the traditional method of forming a contracted water jet with sharp right angles is not feasible due to the influence of machining accuracy. A relatively stable water jet at a pressure of 0.7 MPa can be generated. This method has low processing difficulty and requires low pressure, which has the reference value for the design and manufacturing of nozzle structures in water guided laser processing.

     

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