469 / 2018-12-30 22:33:20
Numerical study on drop-on-demand droplet formation dynamics
DOD droplet, VOF, non-dimensional parameter, stability
全文录用
Maoguo Zhu / 西安交通大学
Dongtong Chong / 西安交通大学
Quanbin Zhao / 西安交通大学
Weixiong Chen / 西安交通大学
Junjie Yan / 西安交通大学
Inkjet printing technology has been applied in many industrial fields for its significant usefulness. The drop-on-demand droplet formation dynamics was studied numerically based on the VOF and CSF method. Droplet formation was modeled by imposing a vertical velocity pulse waveform perturbation. The effects of printhead geometry and fluid properties on droplet ejection stability were analyzed. Simulation results make clear that choosing an appropriate printing fluid with relatively lower density and viscosity or higher surface tension can improve the droplet ejection stability. Designing the printhead with a larger inclination of outlet is also a key way to improve the droplet ejection stability. In addition, droplet ejection stability becomes better as Z increased or Ca decreased.
重要日期
  • 会议日期

    10月21日

    2019

    10月25日

    2019

  • 10月20日 2019

    初稿截稿日期

  • 10月25日 2019

    注册截止日期

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浙江大学
昆明理工大学
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