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Laser Polishing

机译:激光打磨

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摘要

A new approach to polish metallic freeform surfaces is polishing by means of laser radiation. In this technology a thin surface layer is molten and the surface tension leads to a material flow from the peaks to the valleys. No material is removed but reallocated while molten. As the typical processing time is 1 min/cm~2 laser polishing is up to 30 times faster than manual polishing. Reducing the roughness by laser polishing is achieved for several different materials such as hot work steels for the die and molding industries or titanium alloys for medical engineering. Enhancing the appearance of design surfaces is achieved by creating a dual-gloss effect by selective laser polishing (SLP). In comparison to conventional polishing processes laser polishing opens up the possibility of selective processing of small areas (< 0.1 mm~2). A dual-gloss effect is based on a space-resolved change in surface roughness. In comparison to the initial surface the roughness of the laser polished surface is reduced significantly up to spatial wavelengths of 80 microns and therefore the gloss is raised considerably. The surface roughness is investigated by a spectral analysis which is achieved by a discrete convolution of the surface profile with a Gaussian loaded function. The surfaces roughness is split into discrete wavelength intervals and can be evaluated and optimized. Laser polishing is carried out by using a special tailored five-axis mechanical handling system, combined with a three axis laser scanning system and a fibre laser.
机译:抛光金属自由曲面的一种新方法是通过激光辐射进行抛光。在这种技术中,薄的表面层是熔融的,表面张力导致材料从峰流向谷点。不会除去任何材料,但在熔化时会重新分配。由于典型的处理时间为1分钟/厘米〜2,因此激光抛光的速度比手动抛光快30倍。对于几种不同的材料,例如用于模具和模塑行业的热作钢,或用于医学工程的钛合金,都可以通过激光抛光来降低粗糙度。通过选择激光抛光(SLP)产生双重光泽效果,可以增强设计表面的外观。与常规抛光工艺相比,激光抛光开辟了选择性加工小面积(<0.1 mm〜2)的可能性。双重光泽效果基于表面粗糙度的空间分辨变化。与初始表面相比,在80微米的空间波长处,激光抛光表面的粗糙度显着降低,因此光泽度显着提高。通过光谱分析来研究表面粗糙度,该光谱分析是通过表面轮廓与高斯加载函数的离散卷积实现的。表面粗糙度分为离散的波长间隔,可以进行评估和优化。激光抛光是通过使用专门定制的五轴机械处理系统以及三轴激光扫描系统和光纤激光器进行的。

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