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    • 5. 发明授权
    • Method of processing orifice
    • 孔口加工方法
    • US08402655B2
    • 2013-03-26
    • US12708261
    • 2010-02-18
    • Masato HigumaKenichi GunjiTsuneyoshi InoueYasuyuki TanakaHideki Fukushima
    • Masato HigumaKenichi GunjiTsuneyoshi InoueYasuyuki TanakaHideki Fukushima
    • B21K1/24B23P17/00B26D7/00
    • B21J5/10B21J9/00B21K1/24B23P15/16F02M61/168F02M61/1833F02M2200/8069Y10T29/49298Y10T29/49409Y10T29/49426Y10T29/49432Y10T83/6667Y10T83/9428Y10T408/03
    • Disclosed herein is a method for processing an orifice capable of processing recessed portions and orifices, each having a unique hole diameter different from each other, to high positioning accuracy and in a short time.A press includes: a B-axis angle indexing device 3 disposed on a base 2b, the B-axis angle indexing device 3 including a table B; an A-axis angle indexing device 25 disposed on the table B, the A-axis angle indexing device 25 including a table A; a chuck 32 disposed on the table A, the chuck 32 for holding a work; a base Z 6 disposed on a base, the base Z 6 being operable in an axis Z-direction; a base X 8 disposed on the base Z, the base X 8 being operable in an axis X-direction; a punch holding portion 13 disposed on the base X, the punch holding portion 13 being operable vertically in an axis Y-direction; and a plurality of punches 19, 22 held on the punch holding portion in parallel with the axis Z. The press is used to perform a pressing cycle at a desired position by changing a posture of the work and moving the punch in the Z-direction continuously using punches having different leading end diameters and shapes with the work held in the chuck.
    • 这里公开了一种能够处理具有彼此不同的独特孔直径的凹部和孔的孔的方法,以高的定位精度和短时间。 压机包括:设置在基座2b上的B轴角度分度装置3,B轴角度分度装置3包括台B; 设置在工作台B上的A轴角度分度装置25,A轴角度分度装置25,其包括工作台A; 设置在工作台A上的卡盘32,用于保持工件的卡盘32; 设置在基座上的基座Z6,基座Z6可在Z轴方向上操作; 设置在基座Z上的基座X8,基座X8可沿轴线X方向操作; 设置在基座X上的冲头保持部13,冲头保持部13沿Y轴方向垂直地工作; 以及与轴线Z平行地保持在冲头保持部上的多个冲头19,22。压力机用于通过改变作业的姿势并在Z方向上移动冲头来在期望的位置执行按压循环 连续地使用具有不同前端直径和形状的冲头,工件保持在卡盘中。
    • 6. 发明申请
    • COMPLETE CUTTING STATION AND METHOD FOR SEPARATING PACKAGING UNITS
    • 完整的切割站和分离包装单元的方法
    • US20120318115A1
    • 2012-12-20
    • US13527106
    • 2012-06-19
    • Michael LANG
    • Michael LANG
    • B26D7/06
    • B65B9/04B65B5/105B65B35/38B65B61/065Y10T83/6667
    • The invention relates to a complete cutting station for separatingly cutting out packaging units from a film composite by means of a movable complete cutting tool configured for severing the film composite. The complete cutting station further comprises a conveying system having a plurality of conveyor elements for conveying a respective separated packaging unit, wherein each conveyor element in turn comprises a head portion for engaging with a respective packaging unit. The invention is characterized in that the head portions of the conveyor elements are movable between a first position in which packaging units that they gripped are at a first distance to each other defined by the film composite, and a second position in which the packaging units are at a second, smaller distance from each other or at least partially overlap in at least one spatial direction.
    • 本发明涉及一种完整的切割站,用于通过构造成用于切断薄膜复合材料的可移动的完整切割工具从薄膜复合材料中分离切割包装单元。 整个切割站还包括具有用于传送相应的分离的包装单元的多个输送器元件的输送系统,其中每个输送元件又包括用于与相应包装单元接合的头部。 本发明的特征在于,传送器元件的头部可以在第一位置和第二位置之间移动,在第一位置,第一位置和第二位置,在第一位置,其夹持的包装单元彼此间隔彼此由第一距离限定, 在彼此相距较小的距离或至少部分地在至少一个空间方向重叠。
    • 8. 发明授权
    • System and method for inline cutting and stacking of sheets for formation of books
    • 用于书籍形成的片材的在线切割和堆叠的系统和方法
    • US08167293B2
    • 2012-05-01
    • US12868289
    • 2010-08-25
    • Steven P. LewalskiHans Eliasson
    • Steven P. LewalskiHans Eliasson
    • B65H37/04
    • B26D11/00B26D1/225B26D7/015B26D7/0641B26D7/1863B26D7/2635B26D9/00B26D2007/0056B26D2007/0068B26D2007/0081B42C19/06B42P2261/04B65H5/062B65H5/18B65H31/20B65H31/32B65H35/02B65H39/10B65H2301/33216B65H2301/4312Y10S83/934Y10T83/4579Y10T83/6667Y10T83/7487
    • This invention provides a system and method for aligning, feeding, trimming, slitting, rotating, cross-slitting and stacking sheets, each containing one or more discrete page images thereon that allows for greater automation of the overall process so that reduced or no manual intervention is required to generate completed book stacks or “blocks” from a stream or stack of printed sheets. Sheets are fed downstream on a feed surface, trimmed at a first, upstream trimming station to remove margin edges and optionally separate the sheets relative to the discrete page images. The sheets are then rotated 90 degrees and fed to a second, downstream trimming station that trims the right-angle edges and optionally separates the sheets into a final group of full-bleed pages, removing margins and gutter strips. The sheets are feed to a stacking assembly to be tacked in page order and any rejected, defective sheets or stacks are removed from the order. Trimming stations can be automatically adjusted to accommodate different numbers and sizes of pages in sheets. The stacking assembly can include a right-angle merge assembly that can include a plurality of decks, served by divert gates to handle a large number of separated pages to-be-stacked.
    • 本发明提供了一种用于对准,进给,修剪,切割,旋转,交叉切割和堆叠纸张的系统和方法,每个纸张包含一个或多个离散的页面图像,其允许整个过程的更大的自动化,从而减少或不进行手动干预 需要从流或堆叠的打印页面生成完成的书本堆栈或“块”。 纸张在进料表面上向下游进料,在第一个上游修剪工位修剪,以去除边缘边缘,并且可选地分离相对于离散页面图像的纸张。 然后将片材旋转90度并且被馈送到修剪直角边缘的第二个下游修剪工位,并且可选地将片材分离成最终的全排出页面组,去除边缘和沟槽条。 将纸张进给到堆叠组件以按页面顺序粘合,并且从订单中移除任何被拒绝的有缺陷的纸张或纸叠。 修剪工作站可以自动调整,以适应不同数量和尺寸的页面。 堆叠组件可以包括直角合并组件,该直角合并组件可以包括多个甲板,由转向门服务以处理要堆叠的大量分离的页面。