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    • 41. 发明申请
    • PRESS-FORMING MACHINE
    • 压力成型机
    • US20060225475A1
    • 2006-10-12
    • US10550572
    • 2004-03-23
    • Takeo MatsumotoShoji Futamura
    • Takeo MatsumotoShoji Futamura
    • B21D22/00
    • B30B15/14B30B1/18
    • A press forming machine comprising driving shafts for pressing three or more respective pressure points and displacement measuring means for measuring a displacement close to the pressure point. A central driving shaft among the driving shafts has a gap (the slack) larger than those of other driving shafts between each of the driving shafts and a pressure plate. During press formation at a trial stage, a positional displacement close to each pressure point is measured by the displacement measuring means and control data is supplied to each driving source for driving a driving shaft to drive the pressure plate. Then, production press-formation is performed in accordance with the above result. Therefore, the central driving source can avoid overload by the slack of the driving shaft with the pressure plate.
    • 一种压制成形机,包括用于按压三个或更多个相应压力点的驱动轴和用于测量接近压力点的位移的位移测量装置。 驱动轴之间的中心驱动轴具有比每个驱动轴和压力板之间的其它驱动轴的间隙大的间隙(松弛)。 在试制阶段的压制成形期间,通过位移测量装置测量靠近每个压力点的位置位移,并且将控制数据提供给用于驱动驱动轴以驱动压板的每个驱动源。 然后,根据上述结果进行生产压制。 因此,中央驱动源可以通过压板的驱动轴的松弛来避免过载。
    • 42. 发明授权
    • Pressurizer
    • 加压器
    • US06792788B2
    • 2004-09-21
    • US10009788
    • 2001-12-03
    • Shoji FutamuraHiromitsu Kaneko
    • Shoji FutamuraHiromitsu Kaneko
    • B21J918
    • B30B15/0041B30B1/186B30B1/266
    • Disclosed is a high-accuracy pressure device for working that has a large pressing force and requires small driving energy. The pressure device comprises: a base plate, a support plate spaced at a prescribed distance from the base plate, a first slider and a second slider; the first slider and the second slider being formed so that the two can move between the base plate and the support plate in a direction orthogonal to the base plate and support plate and are capable of relative movement with each other in that direction, a position sensor for detecting the moving position of the second slider; a first drive means for driving the first slider; a second drive means for driving the second slider; and a central processing unit which controls the first drive means and second drive means and receives and processes position signals from the position sensor.
    • 公开了一种用于加工的高精度压力装置,其具有大的按压力并且需要较小的驱动能量。压力装置包括:基板,与基板间隔开规定距离的支撑板,第一滑块和第二滑块 滑块 第一滑块和第二滑块形成为使得两者能够在与基板和支撑板正交的方向上在基板和支撑板之间移动,并且能够在该方向上相对运动,位置传感器 用于检测第二滑块的移动位置; 用于驱动第一滑块的第一驱动装置; 用于驱动第二滑块的第二驱动装置; 以及中央处理单元,其控制第一驱动装置和第二驱动装置,并接收并处理来自位置传感器的位置信号。
    • 43. 发明授权
    • Method and apparatus for manufacturing profiles and laminates
    • 用于制造型材和层压板的方法和设备
    • US06682625B1
    • 2004-01-27
    • US09171997
    • 1999-03-05
    • Shoji FutamuraChikara MurataIsamu Aoki
    • Shoji FutamuraChikara MurataIsamu Aoki
    • B32B3100
    • B23P15/246B21D28/02B21D28/10B21D35/00B23K26/22B23K26/24B23P15/00B23P2700/12Y10T29/49472Y10T29/49478Y10T29/5142Y10T83/0476Y10T156/1056Y10T156/1062Y10T156/1075Y10T156/13Y10T156/1304Y10T156/1322Y10T156/137Y10T156/1761
    • A method for manufacturing profiles formed so as to have different cross-sectional shapes in the height direction, in which a long-sized hoop of workpiece is indexed, a plurality of types of component members having outer contours corresponding to the respective cross-sectional shapes of the profile are formed in a plurality of stages and indexed in the state where the component members are replaced on the workpiece, and the component members are sequentially ejected from the workpiece, laminated into a profile in the final stage. Clearance holes passing through component members are provided simultaneously with the blanking of the component members, a plurality of the component members are laminated and welded together by applying a laser beam, and then another component member is laminated and pressed on the previously laminated and welded component members so that the clearance holes of the component member agree with the weld buildups on the previously laminated and welded component members, and welded together with the previously laminated and welded component members by applying a laser beam onto locations other than the clearance holes on the component member.
    • 一种用于制造轮廓的方法,其形成为在高度方向上具有不同的横截面形状,其中长尺寸的工件环被分度,具有对应于各个截面形状的外轮廓的多种类型的部件构件 的形状形成为多个阶段,并且在组件被替换在工件上的状态下被分度,并且组件被顺序地从工件上排出,在最后阶段被层压成轮廓。 通过构件的间隙孔与构件的冲裁同时设置,通过施加激光束将多个构成构件层压并焊接在一起,然后将另一构件部件层压并压在预先层压和焊接的部件上 构件,使得构成构件的间隙孔与先前层压和焊接的构件构件上的焊缝积聚一致,并且通过将激光束施加在部件上的间隙孔以外的位置上与先前层压和焊接的部件构件焊接在一起 会员。
    • 45. 发明授权
    • Electric discharge machining method and apparatus
    • 放电加工方法及装置
    • US5951884A
    • 1999-09-14
    • US801701
    • 1997-02-14
    • Shoji Futamura
    • Shoji Futamura
    • B23H7/30B23H9/10B23H1/00
    • B23H9/10B23H7/30
    • A method and apparatus for electric discharge machining the front and rear surfaces of a workpiece having thin-walled parts by using electrodes, in which the front and rear surfaces of a workpiece are discharge machined simultaneously by securing a workpiece in position on a movably adapted table, supporting two electrodes having surfaces corresponding to the front and rear surfaces being machined of the workpiece in such a manner as to face the surfaces being machined of the workpiece in such a manner and as to be retractable with respect to the surfaces being machined of the workpiece, and controlling the two electrodes so that the two electrodes are brought close to the workpiece in synchronism with each other at substantially the same traveling rate per unit time.
    • 一种用于通过使用电极对具有薄壁部分的工件的前表面和后表面进行放电加工的方法和装置,其中工件的前表面和后表面通过将工件固定在可移动地适配的工作台上的位置同时进行加工 支撑两个电极,其具有对应于前表面和后表面的表面被加工成工件,以便以这样的方式面对被加工的工件的表面,并且相对于被加工的工件的表面可缩回 工件,并且控制两个电极,使得两个电极以基本相同的每单位时间的移动速率彼此同步地靠近工件。
    • 46. 发明授权
    • Method of manufacturing extrusion die for extruding honeycomb structural
body
    • 挤压蜂窝结构体挤出模具的制造方法
    • US5728286A
    • 1998-03-17
    • US694257
    • 1996-08-08
    • Kazuo SuzukiShoji Futamura
    • Kazuo SuzukiShoji Futamura
    • B23H3/00B23H9/00B28B3/20B28B3/26B23H9/14
    • B28B3/269B23H9/00B23H2200/30
    • A method of manufacturing an extrusion die for extruding a honeycomb structural body is disclosed. The extrusion die has a plurality of forming channels which have a shape in a traverse cross section corresponding to that of the honeycomb structural body and have a predetermined depth from a front side of the extrusion die toward a back side, and a plurality of opening holes for feeding raw materials which have a cylindrical shape extending independently from the back side toward the front side and are arranged at a cross portion and/or a straight portion of the forming channels in such a manner that each opening hole is opened and connected to the cross portion and/or straight portion of the forming channels. The method includes the steps of, inserting, into the cross portion of the forming channels, an electrode having a circular shape in a traverse cross section and a length corresponding to the depth of the forming channel, and performing an electrolytic machining by using the electrode so as to make a corner portion of a cell surrounded by the forming channels an arcuate shape in a traverse cross section.
    • 公开了一种制造用于挤压蜂窝结构体的挤压模的方法。 挤压模具具有多个形成通道,该通道具有与蜂窝结构体相对应的横截面形状,并具有从挤出模头的前侧朝向后侧的预定深度,以及多个开口孔 用于进给具有从后侧朝向前侧独立延伸的圆柱形状的原料,并且以这样的方式设置在成形通道的横截面和/或直线部分处,使得每个开孔打开并连接到 成形通道的横截面和/或直线部分。 该方法包括以下步骤:在横截面中将具有圆形形状的电极和形成通道的深度相对应地形成在成形通道的横截面中,并且通过使用电极进行电解加工 以使得由成形通道围成的电池的角部在横截面中成弓形。