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    • 1. 发明授权
    • Method and device for molding wheel rim hump part
    • 用于成型轮辋隆起部分的方法和装置
    • US07520056B2
    • 2009-04-21
    • US10561791
    • 2004-06-22
    • Koichi AraiMinoru NakanoKenzo Takeda
    • Koichi AraiMinoru NakanoKenzo Takeda
    • B21K1/38B23P17/00
    • B21D53/30B21D17/04Y10T29/49499Y10T29/49501Y10T29/49504Y10T29/49529Y10T29/49531
    • A method for molding a wheel rim hump part, comprising the steps of stopping a fist claw (30) and a second claw (32) holding a work (wheel rim for vehicle) (W) at specified positions and allowing an annular support member (160) to abut on the end surface of the curl part (C1) of the work (W), closing a right side first mold (16b) to support the curl part (C1) and the outer peripheral wall surface of the work by the support mold (106) of the right side first mold (16b), also closing a left side first mold (16a) to support the curl part (C1) and the outer peripheral wall surface of the work by the support mold (106) of the left side first mold (16a), moving forward a long rod (136) to allow a roller metal mold (124) to abut on the inner peripheral wall surface of the work (W), and turning the roller metal mold (124) along the circumferential direction thereof.
    • 一种用于模制轮辋隆起部分的方法,包括以下步骤:在特定位置处阻止将第一爪(30)和第二爪(32)保持在工件(车轮轮辋)(W)上,并允许环形支撑构件 160)抵靠在工件(W)的卷曲部(C1)的端面上,封闭右侧的第一模具(16b),以将卷曲部(C1)和工件的外周壁面 右侧第一模具(16b)的支撑模具(106),还封闭左侧第一模具(16a),以通过支撑模具(106)支撑卷曲部分(C1)和工件的外周壁表面 左侧第一模具(16a)向前移动长杆(136),以允许辊子金属模具(124)抵靠在工件(W)的内周壁表面上,并且转动辊子金属模具(124) 沿其圆周方向。
    • 2. 发明申请
    • Method and device for molding wheel rim hump part
    • 用于成型轮辋隆起部分的方法和装置
    • US20070107223A1
    • 2007-05-17
    • US10561791
    • 2004-06-22
    • Koichi AraiMinoru NakanoKenzo Takeda
    • Koichi AraiMinoru NakanoKenzo Takeda
    • B21K1/38B23P17/00
    • B21D53/30B21D17/04Y10T29/49499Y10T29/49501Y10T29/49504Y10T29/49529Y10T29/49531
    • A method for molding a wheel rim hump part, comprising the steps of stopping a fist claw (30) and a second claw (32) holding a work (wheel rim for vehicle) (W) at specified positions and alowing an annular support member (160) to abut on the end surface of the curl part (C1) of the work (W), closing a right side first mold (16b) to support the curl part (C1) and the outer peripheral wall surface of the work by the support mold (106) of the right side first mold (16b), also closing a left side first mold (16a) to support the curl part (C1) and the outer peripheral wall surface of the work by the support mold (106) of the left side first mold (16a), moving forward a long rod (136) to allow a roller metal mold (124) to abut on the inner peripheral wall surface of the work (W), and turning the roller metal mold (124) along the circumferential direction thereof.
    • 一种用于模制轮缘隆起部分的方法,包括以下步骤:在特定位置处停止将第一爪(30)和第二爪(32)保持在特定位置处的工件(车轮轮缘)(W),并且使环形支撑构件 160)抵接在工件(W)的卷曲部分(C 1)的端面上,闭合右侧第一模具(16b)以支撑卷曲部分(C 1)和外周壁面 通过右侧第一模具(16b)的支撑模具(106)工作,还关闭左侧第一模具(16a)以将卷曲部分(C 1)和工件的外周壁表面 左侧第一模具(16a)的支撑模具(106)向前移动长杆(136),以允许辊子金属模具(124)邻接在工件(W)的内周壁表面上,并且转动 所述滚子金属模具沿圆周方向延伸。
    • 3. 发明授权
    • Method of generating control data for bending and torsion apparatuses
    • 生成弯曲和扭转装置的控制数据的方法
    • US06954679B1
    • 2005-10-11
    • US09668388
    • 2000-09-25
    • Kenzo TakedaManabu MaruyamaHideo MeguriYoshihiro Kageyama
    • Kenzo TakedaManabu MaruyamaHideo MeguriYoshihiro Kageyama
    • B21D7/12G05B19/4097G06F19/00
    • B21D7/12G05B19/4097G05B2219/35192G05B2219/36203G05B2219/45143Y02P90/265
    • A shape data specifies the shape of an elongated product within an overall coordinate system. Local coordinate systems are defined on respective cross-sections of the elongated product in the overall coordinate system. The local coordinate system is designed to represent a stable die of a bending apparatus. The images of the elongated product protruding forward from the stable die within the respective local coordinate systems serve to specify the position of a movable die of the bending apparatus. The specified position reflects the deformation induced in the elongated product between the stable and movable dies. An ideal movement amount of the movable die can be determined based on the determined positions within the local coordinate systems. The determined movement amount can be utilized to prepare the control data for the bending apparatus. When the prepared control data is supplied to the bending apparatus, an ideal movement of the movable die can be achieved so as to effect bending on the elongated workpiece at a higher accuracy in accordance with the shape data.
    • 形状数据指定在整个坐标系内的细长产品的形状。 在整个坐标系中,局部坐标系定义在细长产品的相应横截面上。 局部坐标系被设计成代表弯曲装置的稳定模具。 在相应的局部坐标系统内从稳定模具向前突出的细长产品的图像用于指定弯曲装置的可移动模具的位置。 指定位置反映了在稳定和可移动的模具之间的细长产品中引起的变形。 可移动模具的理想移动量可以基于局部坐标系中确定的位置来确定。 可以利用确定的移动量来准备弯曲装置的控制数据。 当准备的控制数据被提供给弯曲装置时,可以实现可动模具的理想移动,以便根据形状数据以更高的精度实现细长工件上的弯曲。
    • 6. 发明授权
    • Panel inspection apparatus and inspection method
    • 面板检查装置及检验方法
    • US07984649B2
    • 2011-07-26
    • US12262537
    • 2008-10-31
    • Ichiro KonoKenzo TakedaShin Yoshida
    • Ichiro KonoKenzo TakedaShin Yoshida
    • G01N29/12
    • G01N29/12G01M7/025G01N29/045G01N29/30G01N29/46
    • A panel inspection apparatus includes a resonant frequency extracting unit for extracting a plurality of resonant frequencies of a panel, a resonant frequency selecting unit for selecting a combination of resonant frequencies consisting of two resonant frequencies A and B with different vibration propagation paths among the extracted plurality of resonant frequencies, a non-defective range generating unit for generating a non-defective range on a coordinate system in which resonant frequencies A and B are taken on coordinate axes by statistically processing a set of the resonant frequencies A and B selected for each of a plurality of non-defective panels determined as non-defective in advance, and a panel quality determining unit for determining whether the quality of the panel to be inspected is good based on comparison between resonant frequencies A and B selected for the panel to be inspected and the non-defective range generated by the non-defective range generating unit.
    • 面板检查装置包括用于提取面板的多个谐振频率的谐振频率提取单元,用于选择由两个谐振频率A和B组成的谐振频率的组合的谐振频率选择单元与提取的多个振荡传播路径中的不同的振动传播路径 谐振频率的无缺陷范围产生单元,用于通过统计处理为每个谐振频率选择的谐振频率A和B的集合来统计地处理坐标系上的无缺陷范围,其中谐振频率A和B在坐标轴上被拍摄 预先确定为无缺陷的多个无缺陷面板;以及面板质量确定单元,用于基于要检查的面板选择的谐振频率A和B之间的比较来确定被检查面板的质量是否良好 以及由无缺陷范围产生单元产生的无缺陷范围。