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    • 1. 发明授权
    • Three-dimensional shape measuring method
    • 三维形状测量方法
    • US06750975B2
    • 2004-06-15
    • US09995128
    • 2001-11-27
    • Mitsuo TakedaTeruaki YogoHideyuki TanakaRuowei Gu
    • Mitsuo TakedaTeruaki YogoHideyuki TanakaRuowei Gu
    • G01B1124
    • G01B11/2509G06T7/521
    • A three-dimensional shape measuring method by which measurement of a three-dimensional shape is realized with an improved precision. Grid patterns comprising a plurality of one-dimensional grids 1, 2 and 3, each having a period and direction different from those of the others, are simultaneously projected upon objects to be measured, using different colors for each of the one-dimensional grids 1, 2 and 3. Subsequently, a grid image deformed in accordance with the three-dimensional shapes of the objects to be measured is imaged, the grid image is separated by colors into one-dimensional grid components of each color, a phase for each of the one-dimensional grid components is detected, and then, measurement values of the three-dimensional shapes are obtained on the basis of the detected phases. At the same time, by imaging the objects to be measured by use of white light, color information on the objects to be measured are measured as well.
    • 通过精度实现三维形状的测量的三维形状测量方法。 包含多个一维网格1,2和3的网格图案,每个网格图案具有与其它图形不同的周期和方向,同时投射到待测量的对象上,对于每个一维网格1使用不同的颜色 随后,对要被测量物体的三维形状变形的网格图像进行成像,将网格图像由颜色分隔成每种颜色的一维网格分量,每个颜色的相位 检测一维网格分量,然后基于检测到的相位获得三维形状的测量值。 同时,通过使用白光成像待测量的物体,也测量待测物体上的颜色信息。
    • 2. 发明申请
    • BENDING DEVICE
    • 弯曲装置
    • US20120016511A1
    • 2012-01-19
    • US13258601
    • 2010-04-08
    • Teruaki Yogo
    • Teruaki Yogo
    • B25J9/04
    • B21D7/024B21D7/12B21D11/12
    • A chuck mechanism that grips a workpiece is configured to be able to twist and rotate the gripped workpiece around a longitudinal axis of the workpiece. A control unit is provided with a first control unit and a second control unit. The first control unit drives an articulated robot to which a bending mechanism for bending the workpiece is attached, and twists the workpiece clamped by the bending mechanism around the longitudinal axis of the workpiece within a preset twisting angle range. When the angle of twisting by the first control unit exceeds the twisting angle range, the second control unit controls the chuck mechanism to twist the workpiece around the longitudinal axis of the workpiece.
    • 夹持工件的卡盘机构构造成能够绕被夹持的工件围绕工件的纵向轴线进行扭转和旋转。 控制单元设置有第一控制单元和第二控制单元。 第一控制单元驱动铰接机器人,其中附接有用于弯曲工件的弯曲机构,并且在预设的扭转角度范围内将由弯曲机构夹持的工件围绕工件的纵向轴线扭曲。 当第一控制单元的扭转角度超过扭转角度范围时,第二控制单元控制卡盘机构使工件围绕工件的纵向轴线扭曲。
    • 3. 发明申请
    • Pressing device for bending
    • 压弯装置弯曲
    • US20110132056A1
    • 2011-06-09
    • US13057403
    • 2009-08-07
    • Teruaki Yogo
    • Teruaki Yogo
    • B21D7/025
    • B21D7/022B21D7/024B21D7/025
    • The present invention provides a pressing device for bending, in which a pipe is held between a bending die having a shape corresponding to a shape of bending and a clamping die revolvable around the bending die, and, when the pipe is bent by revolving the clamping die around the bending die, an axial compression force is applied to the pipe. The pressing device for bending includes a movable table arranged movable in an axial direction of the pipe, a first cylinder provided to the movable table and able to press a rear end of the pipe, and a second cylinder provided to the movable table and able to press a fixed side in a direction opposite to a direction in which the first cylinder presses the pipe.
    • 本发明提供一种弯曲加压装置,其中管道保持在具有与弯曲形状相对应的形状的弯曲模具和可绕着弯曲模具周围的夹紧模具之间,并且当管道通过旋转夹紧而弯曲时 在弯曲模具周围,围绕管道施加轴向压缩力。 用于弯曲的按压装置包括可沿着管的轴向移动的可移动台,设置在可移动台上并能够按压管的后端的第一缸,以及设置在活动台上的第二缸, 在与第一气缸按压管道的方向相反的方向上按压固定侧。
    • 7. 发明授权
    • Pressing device for bending
    • 压弯装置弯曲
    • US08434339B2
    • 2013-05-07
    • US13057403
    • 2009-08-07
    • Teruaki Yogo
    • Teruaki Yogo
    • B21D11/00B21D9/05
    • B21D7/022B21D7/024B21D7/025
    • The present invention provides a pressing device for bending, in which a pipe is held between a bending die having a shape corresponding to a shape of bending and a clamping die revolvable around the bending die, and, when the pipe is bent by revolving the clamping die around the bending die, an axial compression force is applied to the pipe. The pressing device for bending includes a movable table arranged movable in an axial direction of the pipe, a first cylinder provided to the movable table and able to press a rear end of the pipe, and a second cylinder provided to the movable table and able to press a fixed side in a direction opposite to a direction in which the first cylinder presses the pipe.
    • 本发明提供一种弯曲加压装置,其中管道保持在具有与弯曲形状相对应的形状的弯曲模具和可绕着弯曲模具周围的夹紧模具之间,并且当管道通过旋转夹紧而弯曲时 在弯曲模具周围,围绕管道施加轴向压缩力。 用于弯曲的按压装置包括可沿着管的轴向移动的可移动台,设置在可移动台上并能够按压管的后端的第一缸,以及设置在活动台上的第二缸, 在与第一气缸按压管道的方向相反的方向上按压固定侧。
    • 9. 发明授权
    • Bending device
    • 弯曲装置
    • US06820450B2
    • 2004-11-23
    • US10153194
    • 2002-05-21
    • Takayuki YamadaTeruaki Yogo
    • Takayuki YamadaTeruaki Yogo
    • B21D704
    • B21D7/12B21D7/025
    • The bending device comprises a hydraulic motor for moving a feeding table, and a hydraulic circuit including first and second switching valves which can be selectively switched between a speed control channel for supplying operating oil from a discharge-rate variable hydraulic pump to the hydraulic motor by way of a servo valve and a pressure control channel for supplying high pressure operating oil from the hydraulic pump to the hydraulic motor. When the feeding table provided with a chuck mechanism gripping a longitudinal material is moved to a bending mechanism to bend the material, control of the speed and application of axial compressive force can be conducted by switching of the first and second switching valves.
    • 弯曲装置包括用于移动供给台的液压马达和包括第一和第二切换阀的液压回路,该液压回路可以在用于从排出速率可变液压泵向液压马达供给工作油的速度控制通道之间选择性地切换, 伺服阀的方式和用于从液压泵向液压马达提供高压工作油的压力控制通道。 当设置有夹持纵向材料的卡盘机构的进给台移动到弯曲机构以弯曲材料时,可以通过切换第一和第二切换阀来控制速度和施加轴向压缩力。
    • 10. 发明授权
    • Device for measuring a three-dimensional shape of an elongate member
    • 用于测量细长构件的三维形状的装置
    • US5289261A
    • 1994-02-22
    • US850557
    • 1992-03-13
    • Teruaki YogoJohn M. Fitts
    • Teruaki YogoJohn M. Fitts
    • G01B11/25G01B11/24
    • G01B11/2545
    • A device for measuring a three-dimensional shape of an elongate member which comprises a first image detector and a second image detector, a projected image computing device, and a center line computing device. The first image detector and the second image detector detect a two-dimensional image of an image of the elongate member projected onto a planar surface. The projected image computing device computes each central line of the projected image of the elongate member from each of the images detected by the first image detector and the second image detector. Then, the center line computing device detects a plane including the central line obtained from the first image detector and the position of the first image detector, and another plane including the other central line obtained from the second image detector and the position of the second image detector, thereby obtaining a center line of the elongate member along which the planes intersect each other.
    • 一种用于测量细长构件的三维形状的装置,包括第一图像检测器和第二图像检测器,投影图像计算装置和中心线计算装置。 第一图像检测器和第二图像检测器检测投影到平面上的细长构件的图像的二维图像。 投影图像计算装置从由第一图像检测器和第二图像检测器检测到的每个图像计算细长构件的投影图像的每个中心线。 然后,中心线计算装置检测包括从第一图像检测器获得的中心线和第一图像检测器的位置的平面以及包括从第二图像检测器获得的另一个中心线的另一平面和第二图像的位置 检测器,从而获得细长构件的中心线,平面彼此沿着该中心线彼此相交。