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SHADOW ― A New Welding Technique

机译:阴影 - 一种新的焊接技术

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The new welding technique "SHADOW ― Stepless High Speed Accurate and Discrete One Pulse Welding" is introduced. SHADOW means the use of a single pulse to generate a quasi continuous weld of several millimeters in length. The processing time is defined by the pulse duration of the pulsed laser. At present, a state-of-the-art laser is capable of a maximum pulse duration of 20 ms. The variation of the laser power depending on time is a vital capability of the pulsed laser to adapt the energy deposition into the workpiece (pulse shaping). Laser beam welds of several watch components were successfully performed (for further information see paper 4637-77 "New Applications of Laser Beam Micro Welding in Watch Industry"). Similar metals like crowns and axes made out of stainless steel have been welded using pulsed laser radiation. Applying a series of about 130 single pulses for the crown-axis combination the total energy accumulates to 19.5 J, The use of the SHADOW welding technique reduces the energy to 2.5 J. While welding dissimilar metals like stainless steel and brass, the SHADOW technique has even more advantages. Gearwheels made out of brass have been joined to axes made out of stainless steel. Common pulse mode welding generates a considerable amount of contamination but SHADOW welding reduces drastically the contamination as well as the distortion. Laser beam welding of copper has a low process reliability due to the high reflection and the high thermal conductivity. SHADOW welds of 3.6 mm length were performed on 250 μm thick copper plates with very high reproducibility. As a result, a pilot plant for laser beam welding of copper plates has been set up. The work to be presented has partly been funded by the European Commission in a project under the contract BRPR-CT-0634.
机译:介绍了新的焊接技术“阴影 - 无级高速和离散的一个脉冲焊接”。阴影意味着使用单个脉冲,产生长度的数毫米的准连续焊缝。处理时间由脉冲激光器的脉冲持续时间限定。目前,最先进的激光能够最大脉冲持续时间为20毫秒。激光功率根据时间的变化是脉冲激光器适应能量沉积到工件中的重要能力(脉冲整形)。成功进行了几种手表组件的激光束焊缝(有关详细信息,请参阅手表行业激光束微焊的新应用“)。使用脉冲激光辐射焊接不同的类似金属和由不锈钢制成的轴。应用一系列约130个单个脉冲用于冠轴组合,总能量累积到19.5 j,使用荫焊技术将能量降低到2.5 J.焊接不同的金属如不锈钢和黄铜,影子技术有更具优势。由黄铜制成的齿轮已加入由不锈钢制成的轴。常见的脉冲模式焊接产生相当大的污染,但暗影焊接急剧减少污染以及失真。由于高反射和高导热率,铜的激光束焊接具有低的过程可靠性。在250μm厚的铜板上进行3.6毫米长度的阴影焊缝,具有非常高的再现性。结果,已经建立了一种用于铜板的激光束焊接的试验装置。要提出的工作已经部分由欧洲委员会在合同BRPR-CT-0634下的项目中资助。

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