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    • 1. 发明授权
    • Die changing mechanism for self-piercing rivet setting apparatus and the like
    • 自穿铆钉设定装置等的模具更换机构
    • US06964094B2
    • 2005-11-15
    • US10445892
    • 2003-05-28
    • Yoshiteru Kondo
    • Yoshiteru Kondo
    • B21J15/00B21J15/02B21J15/10B21J15/28B23P19/00
    • B21J15/36B21J15/025B21J15/10Y10T29/49837Y10T29/5343Y10T29/5377
    • An apparatus comprises a die assembly including a plurality of dies held on a movable table, and a driving device for moving the die assembly. The driving device is operable to move the die assembly in a direction transverse to the axis of a punch for allowing one of the dies to be placed in a position located axially below the punch. The driving device is also operable to move the die assembly in the axial direction of the punch between raised and lowered positions. In the raised position, the die assembly can be moved by the driving device to place a selected die below the punch. In the lowered position, the selected die can be fixed in a die mounting hole located below the punch. In this position, the punch is operable to join workpieces by riveting, for example.
    • 一种装置包括:模具组件,其包括保持在可移动工作台上的多个模具,以及用于移动模具组件的驱动装置。 驱动装置可操作以沿垂直于冲头轴线的方向移动模具组件,以允许一个模具放置在轴向位于冲头下方的位置。 驱动装置还可操作以使模具组件在冲头的轴向方向上升高和降低位置之间移动。 在升高位置,模具组件可以通过驱动装置移动以将选定的模具放置在冲头下方。 在下降位置,所选择的模具可以固定在位于冲头下方的模具安装孔中。 在该位置,例如,冲头可操作以通过铆接来接合工件。
    • 3. 发明授权
    • Method of DI can surface treatment
    • DI表面处理方法
    • US5356481A
    • 1994-10-18
    • US986038
    • 1992-12-04
    • Takayuki YoshimuraYoshiteru KondoYoshimasa MatsumuraKiyoaki Inoue
    • Takayuki YoshimuraYoshiteru KondoYoshimasa MatsumuraKiyoaki Inoue
    • B05B13/02B05B13/06B05B15/12B08B3/02B08B9/30C23G3/00B08B9/00B08B9/093
    • B05B15/1292B05B13/0278B05B13/0609B05B13/0627B08B3/022B08B9/30
    • Inverted DI cans are fed by a conveyer having partitions in a plurality of rows such that they are spaced apart in each row, and treatment liquid is sprayed against the travelling cans from above and below the center of each row. The liquid is sprayed from above in a uniform and a full-cone pattern greater in area than the top surface of the can and from below also in a full-cone pattern or in a fan-shaped pattern narrow in the widthwise direction of the conveyer and greater in length than the can open end diameter. The liquid is further sprayed against the travelling cans from side nozzles on the opposite sides of and symmetric with respect to the center of each row. The side walls of the cans are thus washed without contact of adjacent cans in the direction of travel of the cans. The washing force is increased in the space between adjacent cans in the direction of travel to prevent washing irregularities and thus permit uniform surface treatment of the inner and outer surfaces of the cans.
    • 反向DI罐由具有多排的隔板的输送机供给,使得它们在每排中间隔开,并且处理液体从每排的中心的上方和下方喷射到行进罐上。 液体以均匀的全锥形图案,比罐的顶面更大面积,从下方也以全锥形图案或在输送机的宽度方向上窄的扇形图案喷射 并且长度大于罐头开口直径。 液体从相对于每排的中心的相对侧的侧喷嘴和对称的侧喷嘴进一步喷射到行进罐上。 因此,罐的侧壁在罐的行进方向上没有相邻罐的接触而被洗涤。 在行进方向上相邻罐之间的空间中的洗涤力增加,以防止洗涤不均匀,从而允许罐的内表面和外表面的均匀表面处理。
    • 4. 发明授权
    • Capacitor charging circuit for discharge type welding tool
    • 放电式焊接工具电容充电电路
    • US4449092A
    • 1984-05-15
    • US335153
    • 1981-12-28
    • Yoshiteru Kondo
    • Yoshiteru Kondo
    • B23K9/073B23K9/10G05F1/46
    • B23K9/1081
    • The present invention provides a capacitor charging circuit for a discharge type welding tool. The circuit includes a rectifier for producing rectified pulsating currents, a capacitor to be charged, a thyristor between the rectifier and the capacitor. A pulse generator receives the pulsating currents and in turn produces a pulse at each hill of the pulsating current. The thus produced pulse is applied to the gate of the thyristor which turns the thyristor on. A charge potential detecting circuit directly measures the charge potential across the charged capacitor and transfers a signal change, according to the level of the capacitor potential, to the pulse generator so as to thereby control the timing of the pulse generation at each hill of the pulsating current.
    • 本发明提供一种用于放电型焊接工具的电容器充电电路。 该电路包括用于产生整流脉动电流的整流器,待充电的电容器,整流器和电容器之间的晶闸管。 脉冲发生器接收脉动电流,从而在脉动电流的每个小丘处产生脉冲。 这样产生的脉冲被施加到晶闸管的栅极上,晶闸管导通。 电荷电位检测电路直接测量充电的电容器两端的电荷电位,并根据电容器电位的电平将信号变化传送到脉冲发生器,从而控制脉动发生的每个小时的脉冲产生的定时 当前。
    • 5. 发明授权
    • Apparatus for di can surface treatment
    • 二罐装置可进行表面处理
    • US5335682A
    • 1994-08-09
    • US83295
    • 1993-06-29
    • Takayuki YoshimuraYoshiteru KondoYoshimasa MatsumuraKiyoaki Inoue
    • Takayuki YoshimuraYoshiteru KondoYoshimasa MatsumuraKiyoaki Inoue
    • B05B13/02B05B13/06B05B15/12B08B3/02B08B9/30C23G3/00
    • B05B15/1292B05B13/0278B05B13/0609B05B13/0627B08B3/022B08B9/30
    • Inverted DI cans are fed by a conveyer having partitions in a plurality of rows such that they are spaced apart in each row, and treatment liquid is sprayed against the travelling cans from above and below the center of each row. The liquid is sprayed from above in a uniform and a full-cone pattern greater in area than the top surface of the can and from below also in a full-cone pattern or in a fan-shaped pattern narrow in the widthwise direction of the conveyer and greater in length than the can open end diameter. The liquid is further sprayed against the travelling cans from side nozzles on the opposite sides of and symmetric with respect to the center of each row. The side walls of the cans are thus washed without contact of adjacent cans in the direction of travel of the cans. The washing force is increased in the space between adjacent cans in the direction of travel to prevent washing irregularities and thus permit uniform surface treatment of the inner and outer surfaces of the cans.
    • 反向DI罐由具有多排的隔板的输送机供给,使得它们在每排中间隔开,并且处理液体从每排的中心的上方和下方喷射到行进罐上。 液体以均匀的全锥形图案,比罐的顶面更大面积,从下方也以全锥形图案或在输送机的宽度方向上窄的扇形图案喷射 并且长度大于罐头开口直径。 液体从相对于每排的中心的相对侧的侧喷嘴和对称的侧喷嘴进一步喷射到行进罐上。 因此,罐的侧壁在罐的行进方向上没有相邻罐的接触而被洗涤。 在行进方向上相邻罐之间的空间中的洗涤力增加,以防止洗涤不均匀,从而允许罐的内表面和外表面的均匀表面处理。
    • 8. 发明授权
    • Arc stud welding device and method
    • 弧形螺柱焊接装置及方法
    • US07141753B2
    • 2006-11-28
    • US11144644
    • 2005-06-06
    • Yoshiteru KondoDaisuke Miura
    • Yoshiteru KondoDaisuke Miura
    • B23K9/20
    • B23K9/205
    • An arc stud welding device and method are provided, in which a stud is pulled up to an appropriate predetermined height, even after a portion of a flexible base material is dented by the stud and has returned to an original flat condition. A controller operates a linear motor to disengage the stud from the base material, operates a power source to generate a pilot arc and a main arc, and reverses the operation of the linear motor to press the stud against the base material for welding. When the stud is pulled up from the base material, the controller detects the position of disengagement of the stud from the base material, and the linear motor pulls up the stud to a predetermined position.
    • 提供了一种电弧螺柱焊接装置和方法,其中将螺柱拉至适当的预定高度,即使在柔性基材的一部分被螺柱凹陷之后,并且已经恢复到原始的平坦状态。 控制器操作线性电动机以将螺柱与基材分离,操作电源以产生引导电弧和主电弧,并且使直线电动机的操作反转以将柱塞压靠在基材上进行焊接。 当螺柱从基材拉起时,控制器检测螺柱与基材脱离的位置,线性马达将螺柱拉出到预定位置。
    • 9. 发明申请
    • Arc stud welding device and method
    • 弧形螺柱焊接装置及方法
    • US20050218119A1
    • 2005-10-06
    • US11144644
    • 2005-06-06
    • Yoshiteru KondoDaisuke Miura
    • Yoshiteru KondoDaisuke Miura
    • B23K9/20
    • B23K9/205
    • An arc stud welding device and method are provided, in which a stud is pulled up to an appropriate predetermined height, even after a portion of a flexible base material is dented by the stud and has returned to an original flat condition. A controller operates a linear motor to disengage the stud from the base material, operates a power source to generate a pilot arc and a main arc, and reverses the operation of the linear motor to press the stud against the base material for welding. When the stud is pulled up from the base material, the controller detects the position of disengagement of the stud from the base material, and the linear motor pulls up the stud to a predetermined position.
    • 提供了一种电弧螺柱焊接装置和方法,其中将螺柱拉至适当的预定高度,即使在柔性基材的一部分被螺柱凹陷之后,并且已经恢复到原始的平坦状态。 控制器操作线性电动机以将螺柱与基材分离,操作电源以产生引导电弧和主电弧,并且使直线电动机的操作反转以将柱塞压靠在基材上进行焊接。 当螺柱从基材拉起时,控制器检测螺柱与基材脱离的位置,线性马达将螺柱拉出到预定位置。