论文标题

微浪漫影响对理想化的划痕的形态和动力学

Morphologies and dynamics of micro-droplet impact onto an idealised scratch

论文作者

Al-Ghaithi, Khaled H. A., Harlen, Oliver G., Kapur, Nikil, Wilson, Mark C. T.

论文摘要

随着喷墨技术的发展以生产较小的液滴,诸如意外划痕或制造缺陷之类的基材特征可能会影响打印的结果,尤其是对于需要连续轨道的印刷电子设备。在这里,研究了微滴滴的沉积到相应尺寸的划痕上。划痕被认为是矩形横截面的凹槽,矩形侧脊代表了从基板移位的材料,并且由于惯性扩散,接触线钉,吸收到划痕和毛细血管流中,因此确定了七个平衡形态。制度图是根据刮擦深度和宽度构建的,并且通过调整液滴扩散法以使平面表面的液滴扩散法以说明进入划痕的液体来开发政权边界的理论估计。良好的一致性与使用GPU加速的三维多相晶格玻尔兹曼模型获得的数值结果可以看到,该模型验证了针对已发表的实验的验证,并探索了雷诺数数量,Weber数字,前进的数量以及恢复接触角的影响。通过跨越划痕的打印多个模拟,讨论并说明了结果对打印应用程序的负面和积极含义。

As inkjet technology develops to produce smaller droplets, substrate features such as accidental scratches or manufacturing defects can potentially affect the outcome of printing, particularly for printed electronics where continuous tracks are required. Here, the deposition of micro-droplets onto a scratch of commensurate size is studied. The scratch is considered as a groove of rectangular cross-section, with rectangular side ridges representing material displaced from the substrate, and seven equilibrium morphologies are identified as a result of inertial spreading, contact-line pinning, imbibition into the scratch and capillary flow. A regime map is constructed in terms of scratch depth and width, and theoretical estimates of the regime boundaries are developed by adapting droplet spreading laws for flat surfaces to account for liquid entering the scratches. Good agreement is seen with numerical results obtained using a GPU-accelerated three-dimensional multiphase lattice Boltzmann model validated against published experiments, and the influences of Reynolds number, Weber number and advancing and receding contact angles are explored. Negative and positive implications of the results for printing applications are discussed and illustrated via multiple-droplet simulations of printing across and along scratches.

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