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Influence and mechanism of spreading and solidification behavior on cross section geometry of tin single tracks formed by liquid metal flow rapid cooling additive manufacturing

机译:液态金属流动快速冷却添加剂制造型锡单轨道横截面几何形状的影响及凝固行为

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摘要

Tin single tracks were formed by a self-developed liquid metal flow rapid cooling additive manufacturing equipment with different superheats. The forming process was simulated by Flow 3D software. The influence and mechanism of the spreading and solidification behavior of molten tin after contacting with the substrate on the cross section geometry of tin single tracks were analyzed. The simulation results were also compared with the experimental results. The results demonstrate that when the superheats of molten tin are 50 degrees C, 100 degrees C and 150 degrees C, the spreading levels before solidification of molten tin are 76%, 80% and 82%, respectively, and the spreading behavior has an important influence on the cross section geometry of tin single tracks. When the superheat of molten tin increases from 50 degrees C to 150 degrees C, the cross section width of tin single tracks increases from 8.5mm to 10.9mm, and the solidification behavior has a certain influence on the cross section geometry of tin single tracks. The molten tin spreads rapidly to both sides after contacting with the substrate, and the spreading time is much shorter than the solidification time. The solidification behavior begins at the middle stage of the spreading behavior, and develops preferentially on both bottom sides of molten tin, which has a certain hindering effect on spreading behavior. The cross section geometry of tin single tracks and the influence of different superheats on cross section width and height of tin single tracks obtained by simulation are consistent with the experimental result, which verifies the reliability of the simulation.
机译:由具有不同过热的自发液态金属流动快速冷却添加剂制造设备形成锡单轨道。通过流动3D软件模拟成形过程。分析了熔融锡在锡型单轨截面几何形状接触后熔融锡的扩散和凝固行为的影响及机理。仿真结果也与实验结果进行了比较。结果表明,当熔融锡的过滤量是50℃,100℃和150℃时,熔融锡凝固前的扩散水平分别为76%,80%和82%,并且扩散行为具有重要意义对锡单轨道横截面几何的影响。当熔融锡的过热增加到50℃至150℃时,锡单轨道的横截面宽度从8.5mm增加到10.9mm,并且凝固行为对锡单轨道的横截面几何形状产生一定影响。在与基板接触后,熔融锡在两侧迅速扩散,并且扩散时间比凝固时间要短得多。凝固行为始于扩散行为的中间阶段,并且优先在熔融锡的底侧上发展,这对扩散行为具有一定的障碍效果。锡单轨道的横截面几何形状和不同过热对通过模拟获得的横截面宽度和锡型轨道高度的影响与实验结果一致,这符合模拟的可靠性。

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