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    • 1. 发明专利
    • Cutting tool position determination device and method
    • 切割工具位置确定装置和方法
    • JP2012016805A
    • 2012-01-26
    • JP2010157078
    • 2010-07-09
    • Honda Motor Co Ltd本田技研工業株式会社
    • SATO SHIHOSAITO KOJIIDE MASATOMASUZAKI MASAHIKO
    • B23B49/00B23C9/00
    • PROBLEM TO BE SOLVED: To provide a cutting tool position determining technique for determining a cutting tool position, with which the cutting tool position can be determined more simply with high accuracy.SOLUTION: In Fig.(a), a hole 27 into which a tool 38 for turning a screw 21 in a direction orthogonal to the center axis of a tool, is arranged on the wall 26 of a jig 25 and a spring 31 for pushing out the cutting tool 16 is housed in a pocket 17. In Fig.(b), when the screw 21 is loosened by the tool 38, the cutting tool 16 is pushed out by the spring 31 and a cutting edge 19 is abutted on the surface 41 of a hole 24 of the jig 25. The cutting tool 16 is fixed by the screw 21 in such a state that the cutting edge 19 is abutted on the surface 41. The tool can be accurately positioned with respect to the jig 25 and the jig 25 can be manufactured with manufacturing tolerance of micron units. Since the cutting edge 19 is abutted on the surface 41 and the cutting tool position is determined, the highly accurate cutting tool position can be obtained. The cutting tool position can be simply and highly accurately determined.
    • 要解决的问题:提供一种用于确定切削刀具位置的切削刀具位置确定技术,通过该刀具位置,可以更加简单地以高精度确定切削刀具位置。 解决方案:在图(a)中,在夹具25的壁26上布置有用于将螺钉21沿与工具的中心轴线正交的方向转动的工具38的孔27和弹簧 在图(b)中,当螺钉21被工具38松开时,切割工具16被弹簧31推出,切割刃19是 抵靠在夹具25的孔24的表面41.切削工具16通过螺钉21以切削刃19抵靠在表面41上的状态固定。工具可以相对于 夹具25和夹具25可以制造具有微米单位的制造公差。 由于切削刃19抵接在表面41上并且确定了切削刀具位置,所以可以获得高精度的刀具位置。 可以简单高精度地确定切削刀具位置。 版权所有(C)2012,JPO&INPIT
    • 2. 发明专利
    • Inner diameter processing tool
    • 内径加工工具
    • JP2010234484A
    • 2010-10-21
    • JP2009085602
    • 2009-03-31
    • Honda Motor Co Ltd本田技研工業株式会社
    • UTSUMI REIMATSUNAGA NAOYAMASUZAKI MASAHIKOSAITO KOJI
    • B24B33/08B24B33/02
    • B24B33/022B23B29/02B23B29/03446B23B29/03457B23B41/12B24B33/08
    • PROBLEM TO BE SOLVED: To provide an inner diameter processing tool simply adjusting the projection amount of each grindstone (cutting tool) in the radial direction. SOLUTION: An arm 21 has a shape embracing part of a tool holder 7 in the circumferential direction thereof, is joined to the tool holder 7 by inserting a bolt 23 through a mounting hole 22 provided on the base end side, and is formed with screw holes 25 for replaceably mounting the grindstone 24 as the cutting tool on the front end side. A groove 26 is formed in the arm 21 at a portion closer to the base end thereof in the width direction. The groove 26 extends parallel to the axis of the tool holder 7 in a state the arm 21 is mounted on the tool holder 7. When an external force is applied, the arm 21 acts as an elastic hinge, and this causes the grindstone 24 to be expanded or reduced in diameter with the grindstone 24 being maintained parallel to the axis of a tool. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种仅在径向上调整每个磨石(切削工具)的投影量的内径加工工具。 解决方案:臂21在其周向上具有包围工具夹具7的形状的部分,通过将螺栓23穿过设置在基端侧的安装孔22而与工具夹具7接合,并且是 形成有螺纹孔25,用于可替换地将作为切削工具的砂轮24安装在前端侧。 在臂21的宽度方向上靠近基端的部分形成有槽26。 凹槽26在臂21安装在工具夹具7上的状态下平行于工具夹具7的轴线延伸。当施加外力时,臂21用作弹性铰链,这使得磨石24 在磨石24保持平行于工具的轴线的状态下,其直径被扩大或缩小。 版权所有(C)2011,JPO&INPIT
    • 3. 发明专利
    • Inner surface grinding tool
    • 内表面研磨工具
    • JP2010214498A
    • 2010-09-30
    • JP2009062421
    • 2009-03-16
    • Honda Motor Co Ltd本田技研工業株式会社
    • KUME MASAOSAITO KOJI
    • B24B5/40
    • PROBLEM TO BE SOLVED: To provide a tool improving machining efficiency by simultaneously machining a plurality of regions to be worked when grinding their inner surfaces, and assuring machining accuracy of all worked regions. SOLUTION: In an inner surface grinding tool 1 coaxially including a plurality of machining units 3, each machining unit 3 is equipped with: an external threaded member 13 rotatable by a servo motor 12 with a decelerator; and an internal threaded cylinder 14 advancing and retreating by rotation of the external threaded member 13. Slope grooves 16 axially inclined are provided symmetrically at an upper part and a lower part of the internal threaded cylinder 14. Engaging parts 18 of a pair of cutting tools 17 are engaged with the respective slope grooves 16, whereby the pair of cutting tools 17 radially expand and contract by advance/retreat of the internal threaded cylinder 14. Thus, the respective servo motors 12 with the decelerator are individually driven by remote control. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供通过在研磨其内表面时同时加工多个待加工区域并提供所有加工区域的加工精度来提高加工效率的工具。 解决方案:在同轴地包括多个加工单元3的内表面研磨工具1中,每个加工单元3配备有:通过伺服马达12与减速器可旋转的外螺纹构件13; 以及通过外螺纹构件13的旋转而前进和后退的内螺纹圆筒14.轴向倾斜的斜槽16对称地设置在内螺纹圆筒14的上部和下部。一对切削工具的接合部18 17与相应的斜槽16接合,由此一对切削工具17通过内螺纹缸14的前进/后退而径向地膨胀和收缩。因此,具有减速器的各个伺服电动机12由遥控器分别驱动。 版权所有(C)2010,JPO&INPIT
    • 5. 发明专利
    • Grinding stone
    • 磨石
    • JP2010234487A
    • 2010-10-21
    • JP2009085762
    • 2009-03-31
    • Honda Motor Co Ltd本田技研工業株式会社
    • MASUZAKI MASAHIKOSATO SHIHOUTSUMI REIASAI NOBUHIROSAITO KOJI
    • B24D3/00
    • PROBLEM TO BE SOLVED: To provide a grinding stone which attains a small grinding amount of abrasive grain.
      SOLUTION: A grinding stone 125 is formed by attaching abrasive grain 60 of a polyhedron shape having opposing faces in parallel to each other and distances between opposing faces different depending upon the faces on a base material 93. The abrasive grains 60 are arranged so that a minimum one of distances therebetween is a height protruding from the base material 93. In the grinding stone, one side of the face forming a minimum distance of each abrasive grain 60 adheres to the base material 93. Thus, the height of the abrasive grain protruding from the base material 93 of the abrasive grain 60 is arranged to be a minimum height of the abrasive grain 60 and, in arranging the height, the grinding amount of the abrasive grain 60 can be reduced.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种研磨磨料的研磨量小的磨石。 解决方案:磨石125通过将具有相对面的多面体形状的磨粒60彼此平行地附接并且根据基材93上的面而不同的相对面之间的距离而形成。磨粒60布置 使得它们之间的距离中的至少一个距离是从基材93突出的高度。在研磨石中,形成每个磨料颗粒60的最小距离的表面的一侧粘附到基材93.因此, 从磨料颗粒60的基材93突出的磨料颗粒被设置为磨粒60的最小高度,并且在布置高度时,可以减少磨粒60的研磨量。 版权所有(C)2011,JPO&INPIT
    • 7. 发明专利
    • Laser cladding apparatus for valve seat portion
    • 用于阀座部件的激光封盖装置
    • JP2008149326A
    • 2008-07-03
    • JP2006336891
    • 2006-12-14
    • Honda Motor Co Ltd本田技研工業株式会社
    • SAITO KOJISATO HIDEJIMATSUO NOBUKI
    • B23K26/34B23K26/02B23K26/03B23K26/42F01L3/02F02F1/24
    • PROBLEM TO BE SOLVED: To accurately and excellently carry out a required laser cladding treatment for respective valve seat portions without being affected by thermal deformation, etc. SOLUTION: A laser cladding apparatus 10 comprises a carrying and driving mechanism 28 which supports a cylinder head 12 and carries its respective valve seat portions 16a to a treatment position to be irradiated with a semiconductor laser beam 22, and can turn about the centers of the treating surfaces of the respective valve seat portions 16a, an image capture mechanism 30 for picking-up the image of the valve seat portions 16a to be arranged at the treatment position, and a control mechanism 32 which processes the image picked-up by the image capture mechanism 30, and calculates the positions of the picked-up valve seat portions 16a, and can adjust the positions of the valve seat portions 16a based on the calculated result. COPYRIGHT: (C)2008,JPO&INPIT
    • 解决方案:激光熔覆设备10包括一个承载和驱动机构28,该激光熔覆设备包括一个传送和驱动机构28, 其支撑气缸盖12并将其各自的阀座部分16a运送到要被半导体激光束22照射的处理位置,并且可以围绕各个阀座部分16a的处理表面的中心旋转,图像捕获机构 30,用于拾取待设置在处理位置的阀座部分16a的图像;以及控制机构32,其处理由图像捕获机构30拾取的图像,并且计算拾取阀的位置 并且可以基于计算结果来调节阀座部16a的位置。 版权所有(C)2008,JPO&INPIT
    • 8. 发明专利
    • Dynamo-electric machine
    • DYNAMO-ELECTRIC MACHINE
    • JP2014193046A
    • 2014-10-06
    • JP2013067329
    • 2013-03-27
    • Honda Motor Co Ltd本田技研工業株式会社
    • TSUTSUI TAKAHIROKISHI TAKETERUWACHI HIDEOSAITO KOJI
    • H02K3/46
    • PROBLEM TO BE SOLVED: To provide a dynamo-electric machine in which falling of a coil from a straight tooth can be prevented, while ensuring high space factor and suppressing up-sizing.SOLUTION: A dynamo-electric machine including an annular back yoke 31, a plurality of straight teeth 33, and a coil 15 wound around the straight teeth 33, is further provided with a first annular holding member 40 arranged on the radial outside of a crossover part 17 of the coil 15 and bulging farther outside than the end face 33a of the straight teeth 33 in the axial direction, and limiting movement of the coil 15 to the radial outside, and a second holding member 58 for limiting movement of the coil 15 to the radial inside supported by the first annular holding member 40.
    • 要解决的问题:提供一种发电机,其能够防止线圈从直齿落下,同时确保高空间因素并抑制上调。解决方案:一种发电机,包括环形后轭31 多个直齿33和缠绕在直齿33上的线圈15还设置有第一环形保持构件40,该第一环形保持构件40布置在线圈15的交叉部分17的径向外部并且比端部更远的外侧凸出 直线齿33的轴向方向的面33a,以及将线圈15限制在径向外侧,第二保持构件58用于限制线圈15向由第一环形保持构件40支撑的径向内侧的移动。
    • 9. 发明专利
    • Method for machining inner surface of cylinder
    • 用于加工气缸内表面的方法
    • JP2012086306A
    • 2012-05-10
    • JP2010234855
    • 2010-10-19
    • Honda Motor Co Ltd本田技研工業株式会社
    • SAITO KOJIMASUZAKI MASAHIKOSATO SHIHOIDE MASATOKANBAYASHI SATOSHI
    • B24B5/08B24D7/18
    • B24B5/06B24B33/02B24D7/18
    • PROBLEM TO BE SOLVED: To provide a machining technique for easily improving the accuracy of the inside diameter, surface roughness and coaxiality of the inner surface of a cylinder.SOLUTION: A method for machining the inner surface of the cylinder comprises the steps of: preparing a boring tool 10 constituted in such a way that two or more rows of grindstones 13, on each of which single-layer abrasive grains 21 are arrayed and disposed, are arranged at almost equal pitches in the peripheral direction of a cylindrical tool holder 11; and performing the grinding by advancing the boring tool 10 toward the cylindrical inner surface 15 of an object 14 to be ground. Since the grindstones are arranged at almost equal pitches in the peripheral direction of the cylindrical tool holder, force is exerted on the tool holder in a well-balanced manner from the peripheral direction to the axial center, so that the cylindrical inner surface can be ground in the well-balanced manner without warping the tool holder and the machining accuracy can be improved easily.
    • 要解决的问题:提供一种用于容易地提高气缸内表面的内径,表面粗糙度和同轴度的精度的加工技术。 解决方案:一种用于机加工缸体内表面的方法包括以下步骤:制备一种钻孔工具10,该钻孔工具以这样的方式构成:将两列或更多排的磨石13,其中每个单层磨粒21 在圆筒状刀架11的圆周方向上以相等的间距配置, 并且通过将钻孔工具10前进到被研磨物体14的圆筒形内表面15进行研磨。 由于砂轮在圆柱形工具架的周向方向上以相等的间距布置,因此从圆周方向到轴向中心以均衡的方式施加在刀架上的力,使得圆柱形内表面可以被磨削 以均衡的方式在不翘曲工具架的情况下,可以容易地改善加工精度。 版权所有(C)2012,JPO&INPIT
    • 10. 发明专利
    • Method of manufacturing grinding stone
    • 烧结石方法
    • JP2011240470A
    • 2011-12-01
    • JP2010117330
    • 2010-05-21
    • Honda Motor Co Ltd本田技研工業株式会社
    • HIRATA TOSHIYASATO SHIHOYOSHIDA TAKASHISAITO KOJI
    • B24D3/06B24D3/00
    • PROBLEM TO BE SOLVED: To provide a technology of manufacturing a grinding stone by a smaller number of steps.SOLUTION: The method of manufacturing a grinding stone includes a step in which an abrasive grain 11 is temporarily bonded to an upper surface 16 of a temporary stage 12 using an adhesive 14, a step in which the temporary stage 12 is made to face a stage 13 while a predetermined angle θ1 is kept, a step in which the abrasive grain 11 is bonded to the stage 13 by a plating layer 25, and a step in which the temporary stage 12 is separated from the abrasive grain 11 to obtain a grinding stone 30 in which the abrasive grains 11 are arrayed on one surface of the stage 13. The temporary stage 12 is made to face the stage 13 while the predetermined angle θ1 is kept, and the abrasive grain 11 is bonded to the stage 13 by the plating layer 25. Since the temporary stage 12 is made to face the stage 13, the abrasive grain 11 can be bonded by the plating layer 25 while a vertex 32 of the abrasive grain 11 is kept to direct to the direction protruding from the stage 13. A step of bonding the abrasive grain 11 is required only once, and the number of steps is decreased compared with the case that plating processes are carried out in two steps.
    • 要解决的问题:提供通过较少数量的步骤制造磨石的技术。 解决方案:磨石的制造方法包括使用粘合剂14将磨粒11暂时接合到临时台12的上表面16的步骤,将临时台12制成 面对阶段13,同时保持预定角度θ1,磨粒11通过镀层25结合到台13的步骤,以及临时台12与磨粒11分离以获得 研磨石30,其中磨粒11排列在台13的一个表面上。临时台12被制成面向台13,同时保持预定角度θ1,并且磨粒11结合到台13上 由于使临时台12面对台阶13,磨粒11可以通过镀层25接合,同时磨粒11的顶点32保持指向从凸起的方向 阶段13.键合a的步骤 与需要两步进行电镀处理的情况相比,仅需要一次磨粒11,与步骤数相比减少。 版权所有(C)2012,JPO&INPIT