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Ultra-precision cutting of an aluminum alloy Improvement of the cutting edge shape using a straight diamond tool

机译:铝合金的超精密切削使用直形金刚石工具改善切削刃形状

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In recent years, optical scanning parts are in demand for use in high-performance information systems for reducing optical aberration, scatter, and diffraction rays. Laser printers use many scanning optical system parts, such as polygon mirrors and photoconductor drums. Polygon mirrors are created by polishing a plating or glassy material to a mirror finish. In this study, we shorten the manufacturing process to improve the productivity and ultra-precision cutting technology of polygon mirrors made of aluminum. It is necessary to improve geometric surface roughness and remove tear marks and scratch marks that are caused during the mirror cutting of the Aℓ alloys in this study. Generally, the mirror cutting of Aℓ alloys use a straight diamond tool that is inclined. However, this method is difficult because of the short range of the tool setting angle. Therefore, a straight diamond tool is attached to a double end cutting edge to extend the tool setting angle and the influence of surface defects is examined. In addition, the influence of the rake angle, side rake angle, depth of cut on the surface roughness and cutting force are considered for the ultra-precision cutting of the Aℓ alloys, which is made easier by the use of a double facet tool.
机译:近年来,为了减少光学像差,散射和衍射射线,需要在高性能信息系统中使用光学扫描部件。激光打印机使用许多扫描光学系统零件,例如多角镜和感光鼓。多边形镜是通过将镀层或玻璃状材料抛光至镜面而制成的。在这项研究中,我们缩短了制造过程,以提高铝制多角镜的生产率和超精密切割技术。在这项研究中,有必要改善几何表面粗糙度并去除在镜面切割Aℓ合金时引起的撕裂痕和划痕。通常,Aℓ合金的镜面切割使用倾斜的笔直金刚石工具。但是,由于刀具设定角度的范围短,因此该方法很困难。因此,将直的金刚石工具安装在双头切削刃上,以扩大工具的安装角度,并检查表面缺陷的影响。此外,在超精密切削Aℓ合金时,考虑了前角,侧前角,切削深度对表面粗糙度和切削力的影响,通过使用双面刀具可以更容易地进行切削。

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