RESISTANCE WELDING METHOD AND DEVICE THEREFOR
    1.
    发明申请
    RESISTANCE WELDING METHOD AND DEVICE THEREFOR 有权
    电阻焊接方法及其器件

    公开(公告)号:US20120074104A1

    公开(公告)日:2012-03-29

    申请号:US13375579

    申请日:2010-06-02

    申请人: Akira Goto Yushi Aoki

    发明人: Akira Goto Yushi Aoki

    IPC分类号: B23K11/00

    摘要: Disclosed are a resistance welding method for welding a stack of three or more works and a device therefor. A stack is formed in such that the thinnest work having the smallest thickness among the works is placed in the outermost position. The stack is held between a first welding electrode and a second welding electrode. A pressing member is brought into contact with a location of the thinnest work different from the location with which the first welding electrode is in contact, and the pressing member is caused to press the stack from the thinnest work side. In a state that the pressing force exerted on the stack by the first welding electrode and the pressing member is balanced with the pressing force exerted on the stack by the second welding electrode, current is applied between the first welding electrode and the second welding electrode.

    摘要翻译: 公开了一种用于焊接三个或更多个工件的堆叠的电阻焊接方法及其装置。 堆叠形成为使得在工件中具有最小厚度的最薄的工件被放置在最外面的位置。 堆叠被保持在第一焊接电极和第二焊接电极之间。 使按压部件与不同于第一焊接电极的位置的最薄的工件的位置接触,并且使按压部件从最薄的工作侧按压堆叠。 在通过第一焊接电极和按压部件施加在堆叠上的按压力与通过第二焊接电极施加在堆叠上的按压力平衡的状态下,在第一焊接电极和第二焊接电极之间施加电流。

    Resistance welding method
    3.
    发明授权

    公开(公告)号:US09676052B2

    公开(公告)日:2017-06-13

    申请号:US13375579

    申请日:2010-06-02

    申请人: Akira Goto Yushi Aoki

    发明人: Akira Goto Yushi Aoki

    摘要: A resistance welding method for welding a stack of three or more workpieces. The method includes the steps of holding a first welding tip in abutment against a first outermost workpiece, holding a second welding tip in abutment against a second outermost workpiece, and holding a pressing member in abutment against the first outermost workpiece. The method also includes the steps of gripping the stacked assembly with the first welding tip, the second welding tip, and the pressing member and passing an electric current between the first welding electrode and the second welding electrode.

    Method of evaluation using ultrasonic waves
    5.
    发明授权
    Method of evaluation using ultrasonic waves 有权
    超声波评估方法

    公开(公告)号:US08302479B2

    公开(公告)日:2012-11-06

    申请号:US12512388

    申请日:2009-07-30

    IPC分类号: G01N29/04

    摘要: The intensity of first reflected ultrasonic waves reflected from an end of a first electrode tip is measured while the electrode tip is separated from a workpiece. The intensity of second reflected waves reflected from the end of the electrode tip is measured while the electrode tip contacts with the workpiece. Based on the above intensities, an intensity ratio (reflectance) and the fraction of the waves entering the workpiece are determined from the following equations: reflectance=(intensity of second reflected waves)/(intensity of first reflected waves) fraction of waves entering the workpiece=1−reflectance. From a predetermined correlative relationship between a contact area of a region enabling ultrasonic waves to be incident on the workpiece and the determined fraction of the entering waves, a ratio (contact area ratio) is determined between a total area of the region and a contact area of the region contacting with the workpiece.

    摘要翻译: 在将电极头与工件分离的同时测量从第一电极头的端部反射的第一反射超声波的强度。 在电极尖端与工件接触的同时测量从电极尖端的端部反射的第二反射波的强度。 基于上述强度,从以下等式确定强度比(反射率)和进入工件的波的分数:反射率=(第二反射波的强度)/(第一反射波的强度)进入的波的分数 工件= 1反射率。 根据能够使入射到工件上的超声波的区域的接触面积与所确定的入射波次数之间的预定的相关关系,在该区域的总面积和接触面积之间确定比率(接触面积比) 的区域与工件接触。

    Vehicle wheel alignment measuring method and apparatus
    6.
    发明授权
    Vehicle wheel alignment measuring method and apparatus 有权
    车轮定位测量方法和装置

    公开(公告)号:US08069576B2

    公开(公告)日:2011-12-06

    申请号:US12404883

    申请日:2009-03-16

    IPC分类号: G01B5/255

    CPC分类号: G01B21/26

    摘要: A vehicle wheel alignment measuring method and apparatus capable of measuring wheel alignment of a vehicle body with high accuracy without wheels mounted in an assembly line. A dummy wheel (10) is mounted on a wheel mounting portion (6) on which a wheel is not mounted. Subsequently, with a vehicle body supported, a wheel mounting portion elevating means (8) elevates the wheel mounting portion (6) via the dummy wheel (10). Thereafter, an alignment measuring means (9) measures wheel alignment for the wheel mounting portion (6) on which the dummy wheel (10) is mounted.

    摘要翻译: 一种车轮定位测量方法和装置,其能够高精度地测量车体的车轮定位,而不将车轮安装在组装线中。 假轮(10)安装在没有安装车轮的车轮安装部分(6)上。 随后,在车身支撑的情况下,车轮安装部升降装置(8)经由假轮(10)升起车轮安装部(6)。 此后,对准测量装置(9)测量安装有假轮(10)的车轮安装部分(6)的轮对准。

    SPOT WELDING METHOD
    7.
    发明申请
    SPOT WELDING METHOD 审中-公开
    点焊方法

    公开(公告)号:US20110233174A1

    公开(公告)日:2011-09-29

    申请号:US13052378

    申请日:2011-03-21

    IPC分类号: B23K11/11

    摘要: For spot-welding a plurality of metal workpieces, the metal workpieces are gripped and pressed under a pressing force by a pair of electrode tips, thereby forming a contact interface between the metal workpieces. Then, an electric current is passed between the electrode tips, and it is determined whether the contact interface is melted or not. Simultaneously when it is judged that the contact interface is melted, the pressing force applied from the electrode tips to the metal workpieces is reduced to such a level that the electrode tips and the metal workpieces are kept in contact with each other, the metal workpieces are kept in contact with each other, and the electric current keeps flowing between the electrode tips.

    摘要翻译: 为了对多个金属工件进行点焊,金属工件在一定压力下由一对电极头夹持并压紧,从而在金属工件之间形成接触界面。 然后,在电极头之间通过电流,并且确定接触界面是否熔化。 同时当判断接触界面熔化时,从电极尖端向金属工件施加的压力减小到使电极头和金属工件彼此保持接触的水平,金属工件是 保持彼此接触,并且电流在电极尖端之间保持流动。

    METHOD OF EVALUATION USING ULTRASONIC WAVES
    8.
    发明申请
    METHOD OF EVALUATION USING ULTRASONIC WAVES 有权
    使用超声波的评估方法

    公开(公告)号:US20100024558A1

    公开(公告)日:2010-02-04

    申请号:US12512388

    申请日:2009-07-30

    IPC分类号: G01N29/04

    摘要: The intensity of first reflected ultrasonic waves reflected from an end of a first electrode tip is measured while the electrode tip is separated from a workpiece. The intensity of second reflected waves reflected from the end of the electrode tip is measured while the electrode tip contacts with the workpiece. Based on the above intensities, an intensity ratio (reflectance) and the fraction of the waves entering the workpiece are determined from the following equations. reflectance=(intensity of second reflected waves)/(intensity of first reflected waves) fraction of waves entering the workpiece=1−reflectance From a predetermined correlative relationship between a contact area of a region enabling ultrasonic waves to be incident on the workpiece and the determined fraction of the entering waves, a ratio (contact area ratio) is determined between a total area of the region and a contact area of the region contacting with the workpiece.

    摘要翻译: 在将电极头与工件分离的同时测量从第一电极头的端部反射的第一反射超声波的强度。 在电极尖端与工件接触的同时测量从电极尖端的端部反射的第二反射波的强度。 基于上述强度,根据以下等式确定强度比(反射率)和进入工件的波的分数。 反射率=(第二反射波的强度)/(第一反射波的强度)进入工件的波的分数= 1反射率从能够进入工件的超声波的区域的接触面积与 确定入射波的分数,在区域的总面积和与工件接触的区域的接触面积之间确定比率(接触面积比)。