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Laser beam micro-welding of dissimilar metals

机译:激光束微焊的异种金属

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The combination of dissimilar materials like brass and stainless steel is often needed in watch movements due to tribologic aspects. For mass production in automotive applications, a joining technique for alloyed copper with alloyed steel is needed. Laser beam micro welding offers an alternative to conventional joining techniques like press fit or soldering. Depending on the joining geometry, two different welding techniques are investigated: seam and spot welding. High strength and reproducibility are the main objective of joining dissimilar metals. Cracks and spillings are affected by the metallic continuity and should be avoided. Lap- and T-joints can be produced by the SHADOW-Welding technique. The length of the continuous welding seams are up to 15.7 mm at a feed rate of up to 60 m/min with a pulsed laser source. The weld width attained ranges from 50 to 250 μm and a weld depth from 20 to 150 μm. This low energy joining process with minimized heat input results in low distortion of the parts joined. Applying spot welding, the pulse forming capability is needed especially for highly reflective metals like copper. The welded joints have a higher strength than the basic material.
机译:由于摩擦方面,腕表运动通常需要像黄铜和不锈钢等不同材料的组合。对于汽车应用中的批量生产,需要一种合金铜与合金钢的连接技术。激光束微焊接提供了常规连接技术,如压配合或焊接等常规连接技术。根据连接几何形状,研究了两种不同的焊接技术:接缝和点焊。高强度和再现性是加入异种金属的主要目标。裂缝和溢出受金属连续性的影响,应避免。 LAP和T关节可以通过阴影焊接技术生产。连续焊接接缝的长度以高达60米/分钟的进料速率高达15.7毫米,脉冲激光源。焊接宽度达到50至250μm,焊接深度为20至150μm。这种低能量连接过程具有最小化的热输入,导致连接的部件的低失真。施加点焊,需要脉冲形成能力,特别是对于铜等高反射金属。焊接接头具有比基本材料更高的强度。

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