首页> 外文期刊>Journal of Adhesion Science and Technology: The International Journal of Theoredtical and Basic Aspects of Adhesion Science and Its Applications in All Areas of Technology >A comprehensive study on the droplet formation processes and its influencing factors of a tubular piezoelectric print head
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A comprehensive study on the droplet formation processes and its influencing factors of a tubular piezoelectric print head

机译:管状压电打印头的液滴形成过程综合研究及其影响因素

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摘要

Various inks with different properties are widely used in the printed electronic industry. In order to obtain high quality inkjet printing, it is necessary to study the droplet formation process and its influencing factors comprehensively. Only in this way, the incentive conditions and liquid physical parameters of droplet ejection can be obtained and optimized. Firstly, the calculation model of the droplet ejection process is established for a tubular print head and the boundary conditions are set according to the driving characteristics. Secondly, the free surface flow is calculated in the simulation software and sequential pictures of the droplet formation processes are captured to validate the availability of the numerical algorithm. Finally, the droplet formation processes of the tubular piezoelectric print head are simulated under different incentive conditions, different viscosities and different surface tensions. Too small a driving energy is insufficient to cause the head to eject droplets. Excessive excitation energy will result in larger or multiple satellite droplets. Additionally, the thinning process of the liquid neck is examined carefully in this paper. Results show that surface tension and viscosity have a significant effect on the thinning speed of the liquid neck, but the effect is not as significant as previous studies.
机译:具有不同性质的各种油墨广泛用于印刷电子工业。为了获得高质量的喷墨印刷,必须全面研究液滴形成过程及其影响因素。仅以这种方式,可以获得并优化液滴喷射的激励条件和液体物理参数。首先,为管状打印头建立液滴喷射过程的计算模型,并且根据驱动特性设定边界条件。其次,在仿真软件中计算自由表面流程,并且捕获液滴形成过程的顺序图片以验证数值算法的可用性。最后,在不同的激励条件下模拟管状压电打印头的液滴形成过程,不同的粘度和不同的表面张力。太小的驱动能量不足以使头部弹出液滴。过度激励能量会导致较大或多个卫星液滴。另外,本文仔细检查液体颈部的稀释过程。结果表明,表面张力和粘度对液体颈部的稀释速度有显着影响,但效果并不像先前的研究那么重要。

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