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    • 1. 发明申请
    • SEAM WELDING METHOD AND MACHINE THEREFOR
    • SEAM焊接方法及其机械
    • US20110233173A1
    • 2011-09-29
    • US13052383
    • 2011-03-21
    • Mitsugu KanekoEisaku HasegawaAkira Goto
    • Mitsugu KanekoEisaku HasegawaAkira Goto
    • B23K11/08
    • B23K11/061B23K11/002B23K2103/04
    • A seam welding machine includes a first roller electrode and a second roller electrode that hold a layered body formed by layering a plurality of workpieces. The first roller electrode is in contact with a thinnest workpiece, which is disposed on an outermost side of the layered body. The seam welding machine has a current-branching electrode held in contact with the thinnest workpiece, and which is charged with a polarity opposite to that of the first roller electrode. Accordingly, when an electric current is applied between the first roller electrode and the second roller electrode that hold the layered body, a branch electric current is applied from the first roller electrode to the current-branching electrode, or a branch electric current is applied from the current-branching electrode to the first roller electrode.
    • 缝焊机包括第一辊电极和第二辊电极,其保持通过层叠多个工件而形成的层叠体。 第一辊电极与设置在层叠体的最外侧的最薄的工件接触。 缝焊机具有与最薄工件保持接触的电流分支电极,并且以与第一辊电极的极性相反的极性被充电。 因此,当在保持层叠体的第一辊电极和第二辊电极之间施加电流时,从第一辊电极向分流电极施加分支电流,或者从 电流分支电极到第一辊电极。
    • 4. 发明申请
    • Noise Proof Structure of Cabin
    • 客舱噪声结构
    • US20080023261A1
    • 2008-01-31
    • US11596405
    • 2005-04-11
    • Mitsugu KanekoAkihiko Shimizu
    • Mitsugu KanekoAkihiko Shimizu
    • G10K11/02
    • G10K11/172B60J5/0487G10K11/16
    • The purpose of the present invention is to change hollow resonance frequency in a cabin without changing the dimensions of the cabin and not providing any partition in the cabin. The present invention provides noise proof structure of a cabin reducing furry noise so as to improve livability and comfortability for an operator. A resonator resonating at frequency of hollow resonance is provided at a position at which sound pressure is high when the hollow resonance occurs. A rotary sensor measuring rotary speed of an engine of the working machine or the like having the cabin, an actuator opening and closing a partition at the opening, and a controller controlling the partition through the actuator corresponding to the rotary speed measured by the rotary sensor are provided.
    • 本发明的目的是改变机舱中的空心共振频率,而不改变机舱的尺寸并且不在机舱内提供任何分隔。 本发明提供了一种减少毛茸茸的噪音的舱室的防噪声结构,从而提高了操作者的宜居性和舒适性。 当发生中空谐振时,在声压高的位置处设置以中空谐振频率谐振的谐振器。 测量具有车厢的工作机械等的发动机的旋转速度的旋转传感器,在开口处打开和关闭分隔件的致动器以及控制通过致动器的分隔件对应于由旋转传感器测量的转速的控制器 被提供。
    • 5. 发明授权
    • Method of teaching welding robot
    • 焊接机器人教学方法
    • US5898285A
    • 1999-04-27
    • US28774
    • 1998-02-24
    • Toshiaki NagasawaNobuo KobayashiHisaya OhiwaMitsugu KanekoIsao Bundou
    • Toshiaki NagasawaNobuo KobayashiHisaya OhiwaMitsugu KanekoIsao Bundou
    • B23K11/31G05B19/423B23K11/11
    • G05B19/423B23K11/315B23K11/317B23K2201/18
    • A welding robot has a gun main body, a stationary electrode tip which is immovable relative to the gun main body, and a movable electrode tip which is mounted on the gun main body and is opened and closed by a pressing source. The gun main body is movable by a driving source in a direction in which both the electrode tips lie opposite to each other. In teaching the welding robot by the movement thereof to each weld spot position of a workpiece, the movable electrode tip is moved in a closing direction relative to the gun main body by the pressing source in a state in which the gun main body is kept stationary at a predetermined position relative to the gun support bracket. The stationary electrode tip is moved in the closing direction by a relative movement of the gun main body relative to the movable electrode tip after the movable electrode tip has come into contact with the workpiece. A position at which the stationary electrode tip contacted the workpiece is detected. This position is stored as teaching data.
    • 焊接机器人具有枪主体,相对于枪主体不可动的固定电极头,以及安装在枪主体上并通过按压开关闭合的可动电极头。 枪主体可以通过驱动源沿两个电极头彼此相对的方向移动。 在焊接机器人通过其移动到工件的每个焊点位置的情况下,可动电极头在枪主体保持静止的状态下通过按压源相对于枪主体在关闭方向上移动 在相对于枪支撑支架的预定位置处。 在可动电极头与工件接触之后,固定电极尖端通过枪主体相对于可动电极尖端的相对运动而在关闭方向上移动。 检测固定电极头与工件接触的位置。 该位置存储为教学数据。