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Laser Polishing of Metallic Freeform Surfaces

机译:激光抛光金属自由外形

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As a new approach for automated polishing of metallic freeform surfaces, laser polishing could support or replace time-consuming and cost intensive manual polishing in the near future. This new technique is based on using laser radiation to remelt a thin surface layer. Due to the surface tension, material flows from the peaks to the valleys, thus causing the surface to resolidify, smoothed. To assess laser polishing of freeform surfaces, the Fraunhofer Institute for Laser Technology has developed and tested two industrial polishing machine tools and a continuous CAM-NC-data chain. This new polishing technology could be applied in any field where metallic surfaces have to be polished to a medium quality (Ra=0.1-0.5 μm). Initial industrial applications for laser polishing already exist in the automotive industry and in mold making. Several different materials can be polished with laser radiation: for example, hot work steels for the die and molding industries or titanium alloys for medical engineering. This paper provides an overview on the development of the laser polishing technique over the last 10 years at the Fraunhofer Institute for Laser Technology.
机译:作为金属自动抛光的新方法,激光抛光可以在不久的将来支持或更换耗时和成本密集的手动抛光。这种新技术基于使用激光辐射来重温薄表面层。由于表面张力,材料从峰值流到山谷,从而使表面改变,平滑。为了评估自由形状表面的激光抛光,Fraunhofer激光技术研究所开发并测试了两个工业抛光机床和连续CAM-NC数据链。这种新的抛光技术可以应用于必须抛光到介质质量的金属表面(RA =0.1-0.5μm)的任何领域。激光抛光的初始工业应用已经存在于汽车行业和模具制造中。使用激光辐射抛光几种不同的材料:例如,用于模具和模塑行业的热量工作钢或医疗工程的钛合金。本文概述了在弗劳恩霍夫激光技术研究所在过去10年中开发激光抛光技术的概述。

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