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    • 21. 发明专利
    • ORBITAL GRINDER WITH SUCTION RING
    • JP2003145405A
    • 2003-05-20
    • JP2002328944
    • 2002-11-13
    • MARTON MIKSA
    • MIKSA MARTON
    • B24B23/04B24B23/03B24B55/10
    • PROBLEM TO BE SOLVED: To provide a rotary orbital sander including a motor having a rotary shaft with radially off-set portion. SOLUTION: A suction housing 22 is mounted to the motor 16 arround a motor shaft and connectable with a vacuum source. A sanding pad assembly 26 including a backing pad 48 having a plurality of apertures there through and an annular frame 34 having a circumferential side wall 36 including first and second circumferential edges is mounted to the radially off-set portion of the shaft. A circular back wall 42 extends from one of the circumferential edges 40, and has an opening 44 sealable with the suction housing. The other circumferential edge 38 is attached to the backing pad. This sanding pad assembly resists flapping at high rotational speeds. A sanding disk 52 having a size and a shape complimentary to that of the sanding pad and a plurality of holes 54 aligning with the apertures 50 in the sanding pad is mountable on the sanding pad. The vacuum source draws sanding waste through the aligned apertures and out the suction housing.
    • 23. 发明专利
    • Longitudinally cutting high speed cutter
    • 长期切割高速切割机
    • JP2003011051A
    • 2003-01-15
    • JP2001194511
    • 2001-06-27
    • Chuzaburo Ichiyoshi市吉 忠三郎
    • ICHIYOSHI CHUZABURO
    • B24B23/04
    • PROBLEM TO BE SOLVED: To solve a problem in a conventional high speed cutter wherein the cutter can cut a long material in the direction orthogonal to the longitudinal direction or up to about 45 degrees safely, but cannot cut it in the longitudinal direction safely. SOLUTION: A feed mechanism is attached to a high speed cutter, and a workpiece is fixed in the direction of width and can move forward and backward in the longitudinal direction so that a steel material can be safely cut in the longitudinal direction by attaching the feed mechanism to the high speed cutter of a power tool.
    • 要解决的问题:为了解决传统的高速切割机中的问题,其中刀具可以在与纵向方向正交的方向上切割长材料或者高达约45度的方向切割长材料,但是不能在纵向方向上安全地切割。 解决方案:进给机构安装在高速切割机上,工件沿宽度方向固定,可沿纵向方向前后移动,使钢材沿长度方向安全切割,方法是将进料 电动工具高速切割机构。
    • 24. 发明专利
    • Air sanding machine
    • 空气压缩机
    • JP2002370151A
    • 2002-12-24
    • JP2001185458
    • 2001-06-19
    • Kuken:Kk株式会社空研
    • KAJIMOTO AKINOBUOKUNO YASUOMI
    • B24B23/04
    • PROBLEM TO BE SOLVED: To provide an air sanding machine capable of highly efficiently and accurately grinding a spot-welded weld protrusion and a convex part. SOLUTION: An eccentric shaft 6 is directly coupled to the lower end of s rotor shaft 2a of an air motor 2. The central part of a circular polishing pad 5 is integrally fixed on the eccentric shaft 6 not through a bearing, rotation of the air motor 2 is transmitted directly to the circular polishing pad 5, and the circular polishing pad 5 is rotated at a high speed as it is caused to effect revolution movement. With the circular polishing pad 5 inclined obliquely downward toward a front, its front edge part is brought into a touch with a substance A to be ground, such as a weld protrusion, as it is moved in a longitudinal direction at intervals of a very short time, and the substance A to be ground is intermittently ground.
    • 要解决的问题:提供一种能够高效精确地研磨点焊焊接突起和凸部的空气砂光机。 解决方案:偏心轴6直接联接到气动马达2的转子轴2a的下端。圆形抛光垫5的中心部分不通过轴承一体地固定在偏心轴6上,空气的旋转 电动机2被直接传递到圆形抛光垫5,并且圆形抛光垫5在使其产生旋转运动时以高速旋转。 当圆形抛光垫5朝向前方倾斜向下倾斜时,其前边缘部分与待研磨的物质A(例如焊接突起)接触,因为其沿纵向方向以非常短的间隔移动 时间,待研磨的物质A被间歇地研磨。
    • 28. 发明专利
    • FIXTURE FOR COATED ABRASIVE
    • JP2000176818A
    • 2000-06-27
    • JP36201798
    • 1998-12-21
    • YKK CORP
    • TAKIZAWA TOSHIAKIAKENO MITSURU
    • B24B23/00B24B23/04B24D15/00
    • PROBLEM TO BE SOLVED: To provide a coated abrasive fixture for portable polishing machines, which allows hook-like engaging elements to be exactly and preferently arranged at the parts to which Hook-and-Loop fasteners are not required to be adhesive bonded and with which polishing is directly concerned. SOLUTION: An engagingly fastening surface FS is provided by forming plural Hook-and-Loop fastener engaging element-rows ER parallel to the wrapping direction of coated abrasive integrally with an engagingly fastening part 10b of a fixture 10, and a cavity part 10c is formed inside the engagingly fastening part. Thus, since the need for a troublesome work of integrally joining a male Hook-and-Loop fastener to the fixture 10 by an adhesive, is eliminated, and the Hook-and-Loop fastener engaging element-rows ER can be optionally and integrally formed on necessary places on the surface of the engagingly fastening part 10b of the fixture 10, the engagingly fastening surface FS formed of the Hook-and-Loop fastener engaging element-rows ER can be exactly formed only on the parts in which the engagingly fastening strength to the coated abrasive is required to be ensured, and the engagingly fastening surface FS is not formed at the parts at which the engaging fastening strength is unnecessary. As a result, cost can be reduced.
    • 30. 发明专利
    • POLISHING TOOL
    • JPH10277908A
    • 1998-10-20
    • JP8847497
    • 1997-04-07
    • U H T KK
    • FURUTA MASATO
    • B24B23/04
    • PROBLEM TO BE SOLVED: To polish the bottom of a hole of an appropriate shape by constituting a shaft-shaped main body for supporting a grinding wheel in such a state as being elastically deformed from the grinding wheel part across the intermediate part. SOLUTION: A main body 1 of a polishing tool A is so formed as being divided into a fork shape from an intermediate part 12 of a flexible synthetic resin material of a rectangular cross section so as to be elastically deformed. Respective deformed parts 11 are so set as to become gradually thinner from the intermediate part 12 toward the tip so as to secure a uniform strength and a little bent toward the outside. The base part 13 of the polishing tool A is held and attached to a chuck part b6 of a reciprocating type hand polisher B and then the hand polisher B is reciprocated. When a grinding wheel part 2 is pushed against the bottom face W of a square hole in the direction for crossing at right angles with the longitudinal direction of the main body 1 and elastically deformed, the opposed grinding wheel parts 2 are reciprocated by repeatedly approaching to and separating from each other linearly along the bottom face W of the square hole so as to perform the polishing work.