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Laser surface structuring with 100 W of average power and sub-ps pulses

机译:激光表面结构,具有100W平均功率和子PS脉冲

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High throughput still represents a key factor for industrial use of ultrashort pulses in the field of surface structuring. Reliable systems with average powers up to 100W are today available. It has already been proved that metals, especially steel having a low threshold fluence, can be machined with excellent surface quality at average powers of more than 40W and a spot radius of about 25 mu m, if a polygon line scanner, offering fast scanning speeds, is used. A further scale- up into the 100W regime should be possible for metals showing a threshold fluence of about 0.2 J/cm(2) or higher. But, it will lead to problems with heat accumulation in the case of steel and a straight forward scale- up is not possible. In order to keep a good surface quality, the machining strategy has to be adapted. A maximum flexibility can be obtained with an "interlaced" mode by using very high marking speeds of several 100 m/s and repetition rates of several tenths of MHz. As this is at the edge of today available technologies, alternative strategies are additionally investigated. Enlarging the spot size represents the most simple approach to reduce the heat accumulation in the case of steel but also multispots represent an attractive alternative. (C) 2016 Laser Institute of America.
机译:高吞吐量仍然代表了表面结构领域的超短脉冲工业用途的关键因素。今天可提供具有高达100W的平均功率的可靠系统。已经证明,金属,尤其是具有低阈值流量的钢,可以以优异的表面质量为低于40W的平均功率和大约25 mu m的光斑半径,如果是多边形线扫描仪,提供快速扫描速度, 用来。对于阈值流量约为0.2J / cm(2)或更高的金属,金属应该进一步扩展到100W方案中。但是,在钢的情况下,它将导致蓄热的问题,并且不可能直接缩放。为了保持良好的表面质量,必须调整加工策略。通过使用几个100 m / s的重复速度和几十的MHz的重复速度的非常高的标记速度,可以获得具有“隔行扫描”模式的最大灵活性。因为这是今天可用技术的边缘,另外调查了替代策略。扩大点尺寸代表了最简单的方法,以减少钢的情况下的热量,而且多点代表有吸引力的替代品。 (c)2016年激光研究所。

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