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    • 71. 发明申请
    • Rotary trimmer apparatus and method
    • 旋转修剪器装置及方法
    • US20030024424A1
    • 2003-02-06
    • US09920526
    • 2001-08-01
    • Gammerler Corporation
    • Roman G. PasmanMacy LangstonPeter Harwardt
    • B41F013/56
    • B26D7/2635Y10S83/934Y10T83/293Y10T83/9403Y10T83/9469Y10T83/9471
    • A rotary trimmer apparatus and signature trimming method are provided that enable operators to set a gap spacing between a rotating knife and an anvil at different predetermined sizes in an easy and accurate manner. The operator chooses the optimum knife/anvil spacing that produces a scissors-like cutting action on the particular type of signatures being trim cut and which does not cause premature knife dulling. The selected knife/anvil spacing is readily reproducable for future runs with the same operating conditions. This is true regardless of changes in the knife thickness as can be created by sharpening thereof, or knife replacement. For this purpose, a user operated control assembly including a control knob and calibrated indexer are provided. To keep the knife/anvil spacing at the set size during trim cutting operations, a temperature control system is employed that keeps axial expansion of the knife spindle shaft from reducing the gap size. In the preferred form, the temperature control system is a cooling system that uses a temperature controlled housing for the spindle shaft that maintains a substantially constant and relatively low operating temperature, e.g. 80null F., therein that is effective to avoid any significant axial shaft growth that would unduly reduce the knife/anvil gap size and cause less than high quality cuts to be generated.
    • 提供了一种旋转修剪器装置和特征修剪方法,其使得操作者能够以容易且准确的方式以不同的预定尺寸设定旋转刀和砧座之间的间隙。 操作员选择最佳的刀/砧座间距,其对于被剪裁的特定类型的签名产生剪刀状切割动作,并且不会导致过早的刀钝化。 所选择的刀/砧座间距在相同的操作条件下可以随时再现。 无论刀刃厚度如何变化,刀刃更换或切刀都能实现,这是真实的。 为此,提供了包括控制旋钮和校准分度器的用户操作的控制组件。 为了在修整切割操作期间将刀/砧座的间距保持在设定的尺寸,采用使刀轴主轴轴向膨胀减小间隙尺寸的温度控制系统。 在优选的形式中,温度控制系统是使用用于主轴的温度控制的壳体的冷却系统,其保持基本上恒定的和相对较低的操作温度,例如, 80°F,其中有效地避免任何显着的轴向轴生长,这将会不适当地减小刀/砧座间隙尺寸并导致产生小于高质量的切割。
    • 76. 发明授权
    • Method and apparatus for perforating corrugated tubing
    • US5957020A
    • 1999-09-28
    • US752204
    • 1996-11-19
    • Dale TruemnerRichard Booms
    • Dale TruemnerRichard Booms
    • B26F1/00B26D3/14
    • B26F1/0076Y10T83/4708Y10T83/4757Y10T83/9471
    • An apparatus for perforating corrugated tubing includes at least one pair of feeder-cutter wheels, each feeder-cutter wheel including a worm a helical threading disposed at an angle on the worm for intersecting corrugations of corrugated tubing, and a cutter disposed on the worm in line with the threading, a drive shaft for each feeder-cutter wheel, each of the drive shafts including a front end portion having a longitudinal axis, one of the feeder-cutter wheels being coaxially mounted to a front end portion of each of the drive shafts for rotation thereby; and an assembly for moving each feeder-cutter wheel in a direction which is substantially transverse to the longitudinal axis of its associated drive shaft front end portion. In a preferred apparatus, the wheel moving assembly is operable to move the feeder-cutter wheels from a first position, in which the wheels are spaced to make contact with the tubing, to a second position, in which the wheels are spaced to allow the tubing to pass therebetween without substantial contact therewith. The present invention also includes a method of perforating corrugated tubing,which includes the steps of feeding a piece of corrugated tubing into a tubing perforation machine, the machine having a plurality of feeder-cutter wheels thereon, each feeder-cutter wheel including a worm, a helical threading disposed at an angle on the worm, and a cutter disposed on the worm in line with the threading; moving the tubing through the machine by rotating the feeder-cutter wheels, the helical threadings riding in corrugations of the tubing to advance the tubing as the wheels are rotated, the cutters intermittently intersecting the tubing to cut perforations therethrough as they rotate around the wheels, the tubing traveling along a longitudinal axis therof; and moving each feeder-cutter wheel outwardly away from the tubing, in a direction which is substantially transverse to the longitudinal axis of the tubing to temporarily disable the cutters.
    • 77. 发明授权
    • Powered tool positioner system
    • 动力工具定位系统
    • US5735184A
    • 1998-04-07
    • US549657
    • 1995-10-27
    • William R. MillerPeter P. AckermanRobert F. Shinn
    • William R. MillerPeter P. AckermanRobert F. Shinn
    • B23Q3/02B26D7/26B26F1/44B26D1/24B26D5/02
    • B26D7/2635B26D2007/2657Y10T83/659Y10T83/7826Y10T83/7847Y10T83/7851Y10T83/7876Y10T83/9471
    • A power operated tool positioner for moving a tool parallel to a tool-positioning axis has a first tool-contacting member movable parallel to the tool-positioning axis for exerting a first pushing force against the tool, and a second tool-contacting member movable transverse to the tool-positioning axis for simultaneously exerting a second pushing force against the tool perpendicular to the first pushing force to resist any tendency of the first pushing force to tilt the tool obliquely relative to the tool-positioning axis. A third tool-contacting member is preferably provided for exerting a third pushing force to push the tool in the opposite direction from the first tool-contacting member, likewise while the second tool-contacting member is simultaneously pushing against the tool. The second tool-contacting member preferably exerts its pushing force prior to the commencement of the first or third pushing force. The three tool-contacting members are preferably interconnected so as to move in unison, the second tool-contacting member being movable relative to the tool parallel to the tool-positioning axis while simultaneously exerting its second pushing force against the tool.
    • 用于使刀具平行于刀具定位轴线移动的动力操作刀具定位器具有可平行于刀具定位轴线移动的第一刀具接触元件,用于对刀具施加第一推力,第二刀具接触元件可横向移动 到刀具定位轴线,以同时向第一推力垂直施加第二推力,以抵抗第一推力相对于刀具定位轴线倾斜倾斜的任何倾向。 优选地,第三工具接触构件用于施加第三推力以将工具沿与第一工具接触构件相反的方向推动,同时第二工具接触构件同时推压工具。 第二工具接触构件优选地在第一或第三推力开始之前施加其推力。 三个工具接触构件优选地互连以一致地移动,第二工具接触构件可相对于工具平行于工具定位轴线移动,同时对其工具施加第二推力。
    • 78. 发明授权
    • Rotary cutting dies
    • 旋转切割模具
    • US5417132A
    • 1995-05-23
    • US78679
    • 1993-06-16
    • William A. CoxAlan R. Pfaff
    • William A. CoxAlan R. Pfaff
    • B21B27/03B21B31/12B21B31/18B23D35/00B26D7/26B23D25/12B26D1/62
    • B23D35/008B26D7/2614B21B2203/02B21B2203/34B21B2203/36B21B27/03B21B31/12B21B31/18B26D2007/2607Y10T83/2107Y10T83/483Y10T83/4836Y10T83/9399Y10T83/9464Y10T83/9471
    • A pair of rotary die cylinders with lands having coacting cutting edges which cut blanks from a web of material passing through the nip of the rotating dies. In cross section each land has an outer face and a pair of spaced apart side faces which are parallel to each other and perpendicular to the chord of the outer face to provide a clean cut and facilitate release of the cut blank from the cutting blades as it emerges from the nip of the dies. The die cylinders are journalled for rotation by recesses with frusto conical locating surfaces in their opposed ends. Each die cylinder is made by machining the recesses in the opposed ends of a generally cylindrical workpiece of tool steel and then utilizing the recesses to locate and orient the workpiece relative to a cutting tool to produce a cylindrical surface on the workpiece concentric with the axis of the recesses and then to machine away portions of the periphery of the cylindrical surface to form the cutting blade lands thereon. After machining is completed the cutting blade lands may be hardened by heat treating utilizing a laser beam directed onto the lands to heat them at an elevated temperature so that upon quenching they are hardened without any substantial hardening and resulting distortion of the core or body of the workpiece.
    • 一对旋转模具缸,其具有具有共同切割边缘的平台,其从穿过旋转模具的辊隙的材料卷材切割坯料。 在横截面中,每个平台具有外表面和一对间隔开的侧面,它们彼此平行并且垂直于外表面的弦线,以提供干净的切口并便于将切割的坯料从切割刀片上释放 从模具的咬合处出现。 模具缸被支承在其相对端部的具有截头圆锥形定位表面的凹部旋转。 每个模具缸通过在工具钢的大致圆柱形工件的相对端中加工凹槽来制造,然后利用凹槽来定位和定向工件相对于切削工具,以在工件上同轴的圆柱形表面 凹部,然后将圆柱形表面的周边的部分加工,以在其上形成切割刀片台面。 在加工完成之后,可以通过利用被引导到焊盘上的激光束进行热处理来切割刀片焊盘,以便在升高的温度下加热它们,使得在淬火时它们被硬化而没有任何实质的硬化,并导致芯体或主体的变形 工件。
    • 79. 发明授权
    • Gang rip saw assembly
    • 钢闸锯组件
    • US5325751A
    • 1994-07-05
    • US18113
    • 1993-02-17
    • Max A. GreenMarvin W. Lee
    • Max A. GreenMarvin W. Lee
    • B27B5/34
    • B27B5/34Y10T83/04Y10T83/659Y10T83/7847Y10T83/7876Y10T83/9471
    • Apparatus for adjusting backlash out of a positioning assembly for shaft mounted ring useful in multiple rip saw machinery and for minimizing arbor length. A pair of axially oriented straps secured to the ring and positioned along the shaft for axially positioning the ring on the shaft wherein a radial pin carried by the ring is eccentrically rotatable in a mating aperture in one of the straps to adjust backlash between the straps and the ring out of the assembly when the pin is rotated. The saw hubs and respective saw adjusting collars are arranged in a semi-interleaved nesting relationship resulting in reduced arbor length.
    • 用于调节用于轴安装环的定位组件中的反向间隙的装置,其可用于多个锯锯机械中并且用于使心轴长度最小化。 一对轴向定向的带固定到环上并沿着轴定位,用于将环环轴向地定位在轴上,其中由环承载的径向销可以在一个带中​​的配合孔中偏心旋转,以调节带和之间的间隙 当销旋转时,环出来。 锯毂和相应的锯调节套环以半交错嵌套关系布置,导致刀轴长度减小。