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    • 3. 发明申请
    • VERTICAL MILL
    • 立式铣刀
    • US20140197260A1
    • 2014-07-17
    • US14236019
    • 2012-09-06
    • Kensuke FutahashiHiroyuki KanazawaShin AsanoTomoaki Inoue
    • Kensuke FutahashiHiroyuki KanazawaShin AsanoTomoaki Inoue
    • B02C15/04
    • B02C15/04B02C2015/008
    • In a vertical mill, a mill table is supported in a housing by a support shaft center, which is along a vertical direction, in such a manner as to be driven and rotated, and above the mill table, a mill roller is rotatably supported by a first support shaft, and the mill roller is capable of rotating the mill table in such a manner that an external peripheral surface of the mill roller comes into contact with an upper surface of the mill table, and a support arm configured to support the first support shaft is swingably supported on the housing by a second support shaft, in such a manner that the mill roller can come close to or move away from the mill table, and a reaction force load giving device is provided that has a dumper filled with a magnetorheological fluid and magnetizes the magnetorheological fluid.
    • 在立式磨机中,磨床由支承轴中心沿着垂直方向支撑在壳体中,以便被驱动和旋转,并且在轧机台的上方,轧辊被可旋转地支撑在 第一支撑轴,并且所述轧辊能够以使所述轧辊的外周面与所述轧机台的上表面接触的方式旋转所述轧机台;以及支撑臂,其被构造成支撑所述第一 支撑轴通过第二支撑轴可摆动地支撑在壳体上,使得轧辊可以靠近或离开轧机台,并且提供反作用力装载给装置,其具有填充有 磁流变流体并磁化流体流体。
    • 5. 发明授权
    • Stringer manufacturing method
    • 串串制造方法
    • US09149909B2
    • 2015-10-06
    • US13386968
    • 2010-10-13
    • Hiroyuki KanazawaYasuo Baba
    • Hiroyuki KanazawaYasuo Baba
    • B24C1/00B24C3/04B24C1/04B26F3/00
    • B24C3/04B24C1/045B26F3/008
    • A stringer manufacturing method for machining one end portion of an elongated member that is provided with a cap flange, a web, and a base flange and that has an inverted T-shape in a front view, an I-shape in a front view, or a T-shape in a front view into a desired shape to obtain a desired stringer. The one end portion of the elongated member is machined into a desired shape by using a vertical articulated robot (1) that has at least 6 axes and that has, at the tip of a valve unit (13), an abrasive nozzle assembly (14) that injects ultrahigh-pressure water containing abrasive and a catcher cup (15) that recovers the ultrahigh-pressure water ejected from the abrasive nozzle assembly (14).
    • 一种用于加工细长构件的一个端部的纵梁制造方法,该细长构件设置有帽凸缘,腹板和基部凸缘,并且在正视图中具有倒T形,正视图中的I形, 或在前视图中的T形成为期望的形状以获得期望的纵梁。 通过使用具有至少6个轴线并且在阀单元(13)的尖端处具有磨料喷嘴组件(14)的垂直铰接机器人(1)将细长构件的一个端部加工成期望的形状 ),其注入含有研磨剂的超高压水和捕获从研磨喷嘴组件(14)喷射的超高压水的捕集杯(15)。
    • 8. 发明申请
    • ABRASIVE WATER-JET MACHINING DEVICE
    • 磨砂水机加工设备
    • US20140030963A1
    • 2014-01-30
    • US14110607
    • 2012-04-09
    • Hiroyuki KanazawaYasuo Baba
    • Hiroyuki KanazawaYasuo Baba
    • B24C9/00
    • B24C9/00B24B49/02B24C1/045B24C3/02B24C3/08B24C7/0076B26D5/00B26D5/005B26F3/008
    • An object of the present invention is to increase the collection rate of an abrasive fluid when cutting a workpiece whose plate thickness changes in a longitudinal direction (vertical direction) and/or a width direction (horizontal direction) and to improve the worker's working environment. An abrasive water-jet machining device includes an abrasive nozzle assembly (11) that jets ultrahigh-pressure water mixed with an abrasive during a cutting process for cutting a workpiece (W) into a desired shape, a catcher cup (12) that collects the ultrahigh-pressure water jetted from the abrasive nozzle assembly (11), and a distance adjusting mechanism (13) that adjusts the distance between the abrasive nozzle assembly (11) and the catcher cup (12) so as to keep a constant distance between the catcher cup (12) and the workpiece (W).
    • 本发明的目的是提高切削板厚度在纵向(纵向)和/或宽度方向(水平方向)上变化的工件时的磨料流体的收集率,并且提高了工人的工作环境。 研磨喷水加工装置包括:研磨喷嘴组件(11),其在用于将工件(W)切割成所需形状的切割过程期间喷射与研磨剂混合的超高压水;捕集杯(12),其收集 从研磨喷嘴组件(11)喷射的超高压水和调节磨料喷嘴组件(11)和捕集杯(12)之间的距离的距离调节机构(13),以便保持恒定的距离 捕集杯(12)和工件(W)。
    • 9. 发明申请
    • STRINGER MANUFACTURING METHOD
    • STRINGER制造方法
    • US20120184185A1
    • 2012-07-19
    • US13386968
    • 2010-10-13
    • Hiroyuki KanazawaYasuo Baba
    • Hiroyuki KanazawaYasuo Baba
    • B24C1/00
    • B24C3/04B24C1/045B26F3/008
    • An object is to enhance the productivity, to improve the working environment of workers, and to reduce manufacturing costs. Disclosed is a stringer manufacturing method for machining one end portion of an elongated member that is provided with a cap flange, a web, and a base flange and that has an inverted T-shape in a front view, an I-shape in a front view, or a T-shape in a front view into a desired shape to obtain a desired stringer. The one end portion of the elongated member is machined into a desired shape by using a vertical articulated robot (1) that has at least 6 axes and that has, at the tip of a valve unit (13), an abrasive nozzle assembly (14) that injects ultrahigh-pressure water containing abrasive and a catcher cup (15) that recovers the ultrahigh-pressure water injected from the abrasive nozzle assembly (14).
    • 一个目标是提高生产率,改善工人的工作环境,降低制造成本。 公开了一种用于加工细长构件的一个端部的纵梁制造方法,所述细长构件设置有帽凸缘,腹板和基部凸缘,并且在前视图中具有倒T形,在前部具有I形 观看,或者将前视图中的T形形成为期望的形状以获得期望的纵梁。 通过使用具有至少6个轴线并且在阀单元(13)的尖端处具有磨料喷嘴组件(14)的垂直铰接机器人(1)将细长构件的一个端部加工成期望的形状 ),其注入含有研磨剂的超高压水和捕获从研磨喷嘴组件(14)喷射的超高压水的捕集杯(15)。