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    • 1. 发明授权
    • Method for producing a polygon mirror
    • 多角镜的制造方法
    • US5463503A
    • 1995-10-31
    • US163036
    • 1993-12-06
    • Sunao KawadaMasataka InagiYoshio IwamuraToyotsugu ItohTakayoshi Hashimoto
    • Sunao KawadaMasataka InagiYoshio IwamuraToyotsugu ItohTakayoshi Hashimoto
    • B23B27/20G02B26/12G02B5/08B23B3/00
    • B23B27/20Y10T407/27Y10T82/10
    • A polygon mirror is produced using a diamond tool. The diamond tool includes a major cutting edge and an end cutting edge. The major cutting edge is formed straight by a rake face and a side flank, the major cutting edge having a first side and a second side. The end cutting edge is formed straight by the rake face and a front flank, the end cutting edge having a third side. A microscopic cutting edge is arranged between the second side and the third side so that the major cutting edge and the microscopic cutting edge together create a first corner at the second side, and the end cutting edge and the microscopic cutting edge create a second corner at the third side. The rake face is inclined downward from the second corner to the first side. The microscopic cutting edge is between 0.1 mm and 0.4 mm in a direction of the end cutting edge. The microscopic cutting edge at the first corner is swept back by an amount between 0.21 .mu.m and 0.6 .mu.m from an extended line of the end cutting edge in a direction perpendicular to the extended line. The material being operated on by the diamond cutting tool is held and fed relatively to the diamond tool so that the material is cut with the major cutting edge, is thereafter microscopically cut with the microscope cutting edge, and is thereafter burnish-finished with the end cutting edge.
    • 使用金刚石工具生产多面镜。 金刚石工具包括主切削刃和端切削刃。 主切削刃由前刀面和侧齿形成直线,主切削刃具有第一侧和第二侧。 末端切削刃由前刀面和前侧面形成为直线,端切削刃具有第三侧。 在第二侧和第三侧之间布置微观切削刃,使得主切削刃和微切削刃一起在第二侧产生第一角,并且端切削刃和微切削刃在第 第三面。 前刀面从第二角向下倾斜到第一侧。 微切割刃在端切削刃的方向上为0.1mm至0.4mm。 第一角处的微观切削刃沿着与延伸线垂直的方向从末端切削刃的延长线扫过0.21μm至0.6μm之间的量。 通过金刚石切割工具操作的材料相对于金刚石工具保持并进给,使得材料用主切削刃切割,然后用显微镜切割刃进行显微切割,然后用端部进行抛光加工 前沿。