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The effects of capillary tip geometry on solder jetting accuracy in laser solder ball jetting process

机译:激光焊球喷射过程中毛细管尖端几何形状对焊锡喷射精度的影响

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The effects of capillary tip geometry on solder ball jetting accuracy in laser solder ball jetting process were studied in order to review the molten ball behavior. In the experiment, the micro-scale lead free solder ball was melted by laser energy inside three difference types of capillary categorized by tip geometry. A capillary type A was a conventional tip. Type B was manufactured by using micro-fabrication process to form the chamfer tip. And type C was micro-fabricated to have the fillet tip. The molten solder ball was jetted out from the capillary by pressure of inert gas onto substrate. The high-speed camera was used to capture the jetting behavior. The semi-auto visualization method was used to analyze solder droplet deposition on the substrate and compare between these capillary types. Then by using SEM, the quality of solder droplets on the substrate was compared. The results showed that the solder ball, jetted from different capillary types, was not melted completely when it started moving out from capillary tip. Its temperature kept increasing after it was ejected from capillary tube. The ball then reached the melting point, the “glowing” point, when it was totally ejected from capillary tube. The molten solder ball shape still was in spherical shape while dropped onto the target. The conventional capillary tip was given better accuracy than the other two capillaries. And SEM images showed that surface of solder droplet from the conventional capillary was smoother than the surface of the solder droplet that performed by the other two capillary types.
机译:研究了毛细管尖端的几何形状对激光锡球喷射过程中锡球喷射精度的影响,以评估熔融球的行为。在实验中,微型无铅锡球在尖端几何形状归类的三种不同类型的毛细管中被激光能量熔化。 A型毛细管是传统的针尖。 B型是通过微加工工艺制成的,以形成倒角尖端。然后将C型微加工为具有圆角尖端。通过惰性气体的压力将熔融的焊料球从毛细管中喷出到基板上。高速相机用于捕获喷射行为。半自动可视化方法用于分析焊料滴在基板上的沉积并比较这些毛细管类型。然后,通过使用SEM,比较了基板上焊料滴的质量。结果表明,从不同毛细管类型喷射的焊球从毛细管尖端移出时并未完全融化。从毛细管中排出后,其温度持续升高。然后,当球从毛细管中完全弹出时,球达到熔点(“发光”点)。熔化的焊锡球形状当掉落到靶上时仍为球形。与其他两个毛细管相比,常规毛细管尖端的精度更高。 SEM图像显示,传统毛细管产生的焊料滴表面比其他两种毛细管产生的焊料滴表面更光滑。

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