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Mathematical modeling of molten metal dispensing: A study of a pneumatically actuated diaphragm-driven pump

机译:熔融金属分配的数学模型:气动隔膜驱动泵的研究

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This study describes a lumped-element model for a pneumatically actuated, diaphragm-driven pump. The pump was developed to dispense molten metal for automotive electronic circuit manufacturing. In place of a CFD analysis, which proved to involve excessively long computations because of a large range of length scales, we created a lumped-element representation of the physics. The pump has five main region volumes: an air filling chamber, a solder reservoir, an adjustable throttle valve, a main pumping chamber, and a dispensing nozzle or set of nozzles. The pumping process employs a compressed gas pulse, which fills the air chamber and deforms a diaphragm, which then displaces molten solder in the main pumping chamber. The description of the dispensing process requires the coupling of three physical domains: pneumatic, mechanical, and hydraulic. The fluid motion in the pump is modeled by creating lumped fluid elements from control volumes, some with deformable surfaces. The equations for the fluid elements are derived from Bernoulli's equation, when viscous effects are not important, or from the general integral momentum balance, when viscous effects are important. A parametric study describing the relationships between variables is presented, and experimental data is used to confirm the validity of the model.
机译:这项研究描述了气动隔膜驱动泵的集总模型。该泵专门用于分配熔融金属,用于汽车电子电路制造。代替了CFD分析(由于长度范围很大,该分析被证明涉及过长的计算),我们创建了物理学的集总元素表示。该泵具有五个主要区域容积:空气填充室,焊锡储存器,可调节节流阀,主泵送室以及分配喷嘴或一组喷嘴。泵送过程使用压缩气体脉冲,该脉冲充满气室并使隔膜变形,然后隔膜将熔化的焊料置换到主泵送室中。分配过程的描述需要三个物理领域的耦合:气动,机械和液压。通过从控制体积中创建集总的流体元素来建模泵中的流体运动,其中一些具有可变形的表面。当粘性效应不重要时,流体元素的方程式可从伯努利方程导出;当粘性效应重要时,流体方程可从一般的积分动量平衡中导出。提出了描述变量之间关系的参数研究,并使用实验数据来确认模型的有效性。

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