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    • 5. 发明授权
    • Method of polishing hard disc and polishing apparatus therefor
    • 抛光硬盘及抛光装置的方法
    • US6116987A
    • 2000-09-12
    • US125665
    • 1998-08-19
    • Yuzo Kubo
    • Yuzo Kubo
    • B24B29/04B24B49/14B04B1/00
    • B24B49/14B24B29/04
    • A method and apparatus for polishing hard discs uniformly while minimizing frictional electricity between the discs and polishing materials as well as preventing from frictionally heated deformation. A turntable for placing a disc thereon is freely rotatable without being connected to any motor or other driving force. A polishing material rotates horizontally and polishes the surface of the disc by contacting with the surface. The turntable relatively slides against the surface of the polishing material. A spindle of the polishing material is slightly inclined toward the center of the turntable from a vertical axis of the disc. The turntable is rotated in a direction opposite to the rotating direction of the disc. The rotation of the turntable is induced by the rotation of the polishing material transmitted by the friction between disc and turntable. The disc is substantially electrically connected to the ground during the polishing.
    • PCT No.PCT / JP97 / 00633 Sec。 371日期1998年8月19日 102(e)1998年8月19日PCT PCT 1997年2月28日PCT公布。 出版物WO97 / 32691 日期1997年9月12日用于均匀地抛光硬盘的方法和装置,同时最小化盘和抛光材料之间的摩擦力,同时防止摩擦加热变形。 用于在其上放置盘的转台可自由旋转,而不用连接到任何电动机或其他驱动力。 抛光材料水平旋转并通过与表面接触来抛光盘的表面。 转盘相对于抛光材料的表面相对滑动。 研磨材料的主轴从盘的垂直轴向转盘的中心稍微倾斜。 转台沿与盘旋转方向相反的方向旋转。 转台的转动是由于通过盘与转台之间的摩擦传递的抛光材料的旋转引起的。 该盘在抛光期间基本上电连接到地面。
    • 6. 发明授权
    • Microfinishing apparatus and method
    • 精加工装置及方法
    • US4682444A
    • 1987-07-28
    • US785498
    • 1985-10-08
    • Norman R. JudgeEdward E. Judge, Jr.Arthur G. Reiser
    • Norman R. JudgeEdward E. Judge, Jr.Arthur G. Reiser
    • B24B21/00B24B5/42B24B21/02B24B21/16B24B35/00B24D3/00B24D11/00B24B1/00B24B29/04
    • B24B35/00B24B21/02B24B5/42B24D3/002
    • A microfinishing apparatus and method is disclosed particularly useful for microfinishing workpiece surfaces such as are found in journal bearings and cylinder bores. This invention improves over conventional machines and methods wherein coated abrasive tape is brought into contact with a relatively rotating workpiece surface and is pressed against that surface by an elastomeric plastic insert. According to this invention, the insert is made from a relatively rigid substance such as honing material stone. Since the insert is made from a rigid material, the insert surface shape is generated in the workpiece surface and therefore geometry corrections in the workpiece surface can be accomplished. In alternate embodiments of this invention, the rigid inserts have relieved portions or noncylindrical surfaces such that a desired surface profile in the workpiece surface is generated. In another embodiment, one or more flexible inserts are added to the rigid insert enabling the fillet radius area to be microfinished. In yet another embodiment, coated abrasive tape includes a multiplicity of perforations thereby permitting the exchange of cutting fluids between the surfaces. Finally, several structures for supporting the rigid inserts for slight rotation relative to the workpiece surface are described.
    • 公开了一种显微处理装置和方法,其特别适用于精加工工件表面,例如在轴颈轴承和气缸孔中。 本发明与传统的机器和方法相比改进,其中涂覆的砂带与相对旋转的工件表面接触并且通过弹性体塑料插入件压靠在该表面上。 根据本发明,插入件由诸如珩磨材料石之类的相对刚性的物质制成。 由于插入物是由刚性材料制成的,因此在工件表面上产生插入物表面形状,因此能够实现工件表面的几何校正。 在本发明的替代实施例中,刚性插入件具有释放部分或非圆柱形表面,使得产生工件表面中期望的表面轮廓。 在另一个实施例中,将一个或多个柔性插入件添加到刚性插入件中,使得圆角半径区域能够被微细整理。 在另一个实施例中,涂覆的砂带包括多个穿孔,从而允许在表面之间交换切割流体。 最后,描述了用于支撑相对于工件表面稍微旋转的刚性插入件的若干结构。