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Laser beam machining (LBM), state of the art and new opportunities

机译:激光束加工(LBM),最新技术和新机遇

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An overview is given of the state of the art of laser beam machining in general with special emphasis on applications of short and ultrashort lasers. In laser welding the trend is to apply optical sensors for process control. Laser surface treatment is mostly used to apply corrosion and wear resistant layers, but also for repair of engine and machine parts. In micro-machining, shorter pulses reduce heat-affected damage of the material and opens new ways for nanometer accuracy. Even 40 years after the development of the laser there is a lot of effort in developing new and better performing lasers. The driving force is higher accuracy at reasonable cost, which is realised by compact systems delivering short laser pulses of high beam quality. Another trend is the shift towards shorter wavelengths, which are better absorbed by the material and which allows smaller feature sizes to be produced. Examples of new products, which became possible by this technique, are given. The trends in miniaturisation as predicted by Moore and Taniguchi are expected to continue over the next decade too thanks to short and ultrashort laser machining techniques.
机译:总体上概述了激光束加工的技术水平,特别着重于短和超短激光的应用。在激光焊接中,趋势是将光学传感器应用于过程控制。激光表面处理主要用于施加腐蚀和耐磨层,还用于修复发动机和机械零件。在微加工中,较短的脉冲减少了材料对热影响的损害,并为纳米精度开辟了新途径。激光开发后甚至40年,人们仍在努力开发出性能更好的新型激光器。驱动力以合理的成本获得了更高的精度,这是通过紧凑的系统实现了高光束质量的短激光脉冲的实现。另一个趋势是转向更短的波长,该波长可以更好地被材料吸收并允许生产更小的特征尺寸。给出了通过该技术成为可能的新产品的示例。 Moore和Taniguchi预测的小型化趋势在未来十年也将继续,这要归功于短和超短激光加工技术。

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