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Material processing with fiber based ultrafast pulse delivery

机译:基于光纤超快脉冲输送的材料处理

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摘要

We report on TRUMPF's ultrafast laser systems equipped with industrialized hollow core fiber laser light cables. Beam guidance in general by means of optical fibers, e.g. for multi kilowatt cw laser systems, has become an integral part of laser-based material processing. One advantage of fiber delivery, among others, is the mechanical separation between laser and processing head. An equally important benefit is given by the fact that the fiber end acts as an opto-mechanical fix-point close to successive optical elements in the processing head. Components like lenses, diffractive optical elements etc. can thus be designed towards higher efficiency which results in better material processing. These aspects gain increasing significance when the laser system operates in fundamental mode which is usually the case for ultrafast lasers. Through the last years beam guidance of ultrafast laser pulses by means of hollow core fiber technology established very rapidly. The combination of TRUMPF's long-term stable ultrafast laser sources, passive fiber coupling, connector and packaging forms a flexible and powerful system for laser based material processing well suited for an industrial environment. In this article we demonstrate common material processing applications with ultrafast lasers realized with TRUMPF's hollow core fiber delivery. The experimental results are contrasted and evaluated against conventional free space propagation in order to illustrate the performance of flexible ultrafast beam delivery.
机译:我们报告了配备工业化空心芯纤维激光电缆的TrumpF的超快激光系统。梁引导一般通过光纤,例如光纤。对于多千瓦CW激光系统,已成为基于激光的材料处理的组成部分。其中纤维输送的一个优点是激光和加工头之间的机械分离。通过纤维端作为靠近加工头中的连续光学元件的光学机械修订点来给出同样重要的好处。因此,可以设计透镜,衍射光学元件等的组件,从而提高效率,从而导致更好的材料处理。当激光系统以基本模式运行时,这些方面增加了显着性,这通常是超快激光器的情况。通过中空核心光纤技术的超快激光脉冲的最后几年光束引导非常迅速。 Trumpf的长期稳定超快激光源,被动光纤联轴器,连接器和封装的组合形成了一种灵活而强大的系统,适用于基于激光的基于Lemporation加工,适用于工业环境。在本文中,我们展示了具有使用TrumpF的空心芯纤维传递的超快激光器的常用材料处理应用。实验结果与传统的自由空间传播对比和评估,以说明柔性超快射束递送的性能。

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