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Simulation of transference regimes in BA-LIFT of water-glycerol and LIFT of high-viscosity silver pastes

机译:水 - 甘油BA升力中的转移制度模拟,高粘度银浆料升降

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Laser-Induced Forward Transfer (LIFT) is a direct-write laser technique for the transference of material in an enormous range of viscosities and rheological behaviors, from solid-state to low-density inks. Furthermore, LIFT enables the transference of small volumes of material (as low as picoliters) with a high lateral spatial resolution (down to a few micrometers) to produce printed patterns with great flexibility. In this work, simulations using a finite-element model involving Phase Field tracking method are presented and compared with experimental results. Specifically, two LIFT processes are studied: a modified model is used to reproduce the secondary effects (such as bulgy shapes and secondary jets) observed after several us in Blister-Actuated LIFT (BA-LIFT) of glycerol/water mixtures, and a model for LIFT transference of high-viscosity metallic pastes employed to study the different regimes observed in experiments (non-transference, explosive, cluster, dot, and bridge transfer).
机译:激光诱导的正向转印(升力)是一种直接写入激光技术,用于从巨大范围的粘度和流变行为中的材料转移,从固态到低密度油墨。此外,升力使得能够以高横向空间分辨率(下降到几微米)来转移小体积的材料(低于皮热物),以产生具有极大柔韧性的印刷图案。在这项工作中,呈现了使用涉及相场跟踪方法的有限元模型的模拟,并与实验结果进行比较。具体地,研究了两种升力过程:改进的模型用于再现在甘油/水混合物的水疱驱动升力(BA升升)之后观察到的二次效果(如剧性形状和次级喷射),以及模型用于高粘度金属浆料的提升转移,用于研究实验中观察到的不同制度(非转移,爆炸,簇,点和桥梁转移)。

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