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Laser welding with long focal length optics

机译:具有长焦距光学的激光焊接

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Industrial lasers have gained acceptance as effective and reliable production tools. However, up until recent years either power or beam quality limitations have constrained welding focus optics to relatively short focal lengths. Since the advent of CO{sub}2 lasers with excellent beam quality (M{sup}2 up to 1.2) a few years ago, now both relatively high power and near perfect beam quality are available in the same laser. This has allowed the use of extremely long focal lengths for laser welding, even for keyhole welding, which (for extremely long focal lengths) was something unheard of just a few years ago. The unusually long focal length, combined with the extraordinarily long depth of focus, has demonstrated equally extraordinary welding results. By comparing the welding results with conventional systems using relatively short focal lengths, some surprising observations have been noted. This topic has been investigated with the use of the remote welding system (RWS), which is a system utilizing an extremely long focal length lens and scanning mirrors to produce a three dimensional (pyramid shaped) work envelope. The results of this work, along with benefits, drawbacks and possible optimizations of long focal length systems, are discussed in the text that follows.
机译:工业激光器获得了有效可靠的生产工具的验收。但是,直到近年来,功率或光束质量限制都有受限制的焊接焦点光学到相对短的焦距。自Co {Sub} 2的出现,几年前具有出色的光束质量(M {SUP} 2最高为1.2),因此在相同的激光器中提供了相对高的功率和近乎完美的光束质量。这允许使用极长的激光焊接的焦距,即使对于锁孔焊接,这是(对于极度巨大的焦距)就在几年前的闻所未闻。与非常长的焦点相结合的异常长的焦距已经表现出同样非凡的焊接结果。通过使用相对短的焦距与常规系统的焊接结果进行比较,已经注意到了一些令人惊讶的观察。本主题已经通过使用远程焊接系统(RWS)来调查,该系统是利用极长的焦距透镜和扫描镜以产生三维(金字塔形)工作信封的系统。在遵循的文本中讨论了这项工作的结果以及长焦距系统的益处和可能的优化优化。

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