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Liquid ejection characteristics of piezoelectric inkjet printhead for varied work liquids

机译:多种工作液体的压电喷墨打印头的液体喷射特性

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This research applied computational fluid dynamics in the study of liquid ejection characteristics of a piezoelectric inkjet printhead for varied work liquids. The results of the fixed work liquid viscosity coefficient and the change of surface tension showed that larger surface tension increases the flying speed of the ejected droplet, but irregularity may occur if the viscosity coefficient is too small. Also, given fixed surface tension of the work liquid and changed viscosity coefficient, larger viscosity coefficient increases the tendency of the liquid surface in the nozzle to move toward the pressure chamber, and decreases the flying speed of the ejected droplet. When the nozzle diameter is changed, smaller nozzle diameter produces faster ejected droplet flying speed.
机译:这项研究将计算流体动力学应用于各种工作液体的压电喷墨打印头的液体喷射特性研究中。固定工作液粘度系数和表面张力变化的结果表明,较大的表面张力会增加喷射液滴的飞行速度,但是如果粘度系数太小,则可能会出现不规则现象。同样,在给定工作液体的表面张力固定且粘度系数改变的情况下,较大的粘度系数会增加喷嘴中液体表面向压力室移动的趋势,并降低喷射液滴的飞行速度。更改喷嘴直径时,较小的喷嘴直径会产生较快的喷射液滴飞行速度。

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