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Effect of process parameters on copper droplet ejecting by pneumatic drop-on-demand technology

机译:工艺参数对气动按需滴铜滴的影响

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Stable generation of copper droplets is a key issue in fabricating copper parts by drop-on-demand (DOD) technology. The process parameters such as supply pressure and electronic pulse width have significant effect on pressure variation and droplet formation. In the present work, a pressure acquisition system was first set up to measure the pressure variation in crucible. Then the measured pressure data were applied on a 2D axisymmetric model as inlet conditions to study the influence of process parameters on copper droplet formation. The results indicated that the peak pressure in crucible increased linearly with the increase of supply pressure. As supply pressure increased, the jet velocity and the limiting length increased to critical value and droplet could be generated. The peak width increased with the rise of electronic pulse width. By increasing the electronic pulse width, the time of pressure above threshold value increased and the jet limiting length grew to critical value for breakup. However, if supply pressure and electronic pulse width were too large, satellite droplets would be formed. Pure copper droplet generating experiments were conducted to obtain appropriate parameters. Single droplet was generated while supply pressure was between 60 kPa and 100 kPa and pulse width was between 550 μs and 1550 μs. Also the range of pulse width varied as the supply pressure increased for generating single droplet. The statistics of droplet diameter suggested that droplet diameter increased with the increase of supply pressure. Electronic pulse width had influence on the droplets size and the standard deviation increased with the increase of electronic pulse width. So small supply pressure and electronic pulse width should be used for generating uniform droplets.
机译:铜滴的稳定生成是通过按需滴落(DOD)技术制造铜零件的关键问题。诸如供应压力和电子脉冲宽度之类的工艺参数对压力变化和液滴形成有重大影响。在目前的工作中,首先建立了一个压力采集系统来测量坩埚中的压力变化。然后将测得的压力数据应用于二维轴对称模型作为入口条件,以研究工艺参数对铜滴形成的影响。结果表明,坩埚中的峰值压力随着供应压力的增加而线性增加。随着供应压力的增加,射流速度和极限长度增加到临界值,并可能产生液滴。峰宽随着电子脉冲宽度的增加而增加。通过增加电子脉冲宽度,超过阈值的压力时间会增加,并且射流极限长度会增加到破裂临界值。但是,如果供给压力和电子脉冲宽度太大,则会形成卫星液滴。进行纯铜液滴产生实验以获得合适的参数。当供应压力在60 kPa和100 kPa之间且脉冲宽度在550μs和1550μs之间时,会生成单个液滴。同样,脉冲宽度的范围随着供应压力的增加而变化,以产生单个液滴。液滴直径的统计表明,液滴直径随着供应压力的增加而增加。电子脉冲宽度对液滴尺寸有影响,标准偏差随电子脉冲宽度的增加而增加。因此,应使用较小的供应压力和电子脉冲宽度来生成均匀的液滴。

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