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    • 4. 发明申请
    • SHEET SLITTING MECHANISM WITH AUTOMATED SIZE ADJUSTMENT
    • 具有自动尺寸调整的薄片切割机构
    • WO2013070517A1
    • 2013-05-16
    • PCT/US2012/063281
    • 2012-11-02
    • LASERMAX ROLL SYSTEMS, INC.
    • LEWALSKI, Steven, P.TAYLOR, Bruce, J.
    • B26D7/26
    • B26D7/2635B26D7/2628B26D2007/2657Y10T29/49826Y10T83/04Y10T83/2209Y10T83/6476Y10T83/6478Y10T83/727Y10T83/744Y10T83/7751Y10T83/7826Y10T83/8889
    • This invention provides a slitter assembly (110;120) with automated adjustment of slitter elements (160;162) that allows for driven rotation of elements on the associated drive shaft (150; 152) during operation while enabling the elements to be moved freely along the drive shaft (150; 152) during setup and subsequently secured to the shaft free of lateral movement. This ensures that adjustment of the slitter elements (160; 162) is accurate, repeatable and reliable. In an illustrative embodiment, the slitter elements (160; 162) each comprise a pair of coaxial members including a blade member and a locking member. The blade member contains a slitter blade (422) and overlies the locking member which is nested therewith. The locking member directly engages the drive shaft surface with a wedge assembly structure (410, 420). The members are spring-loaded with respect to each other so that two corresponding wedge surfaces (480, 482) are normally biased to cam together and exert a hoop stress on the drive shaft (150; 152). The hoop stress is relieved, and the slitter element (160; 162) can be relocated along the shaft (150; 152) when a key (194) on a moving carriage or a key assembly (190) is inserted between the blade member and the locking member, thereby overcoming the spring force and un-camming the wedge assembly. The carriage then moves the engaged slitter element to a new location. Two impinging slitter elements (160; 162) are provided in a stacked arrangement, with the key releasably engaging and moving both simultaneously.
    • 本发明提供了一种分切组件(110; 120),其具有自动调节分切元件(160; 162),其允许在操作期间相关联的驱动轴(150; 152)上的元件被驱动旋转,同时使元件能够自由地移动 所述驱动轴(150; 152)在安装期间并且随后固定到所述轴而不受横向运动。 这确保了分切元件(160; 162)的调整是准确的,可重复的和可靠的。 在说明性实施例中,分切元件(160; 162)各自包括一对共轴构件,其包括叶片构件和锁定构件。 刀片构件包含切割刀片(422)并覆盖在其上嵌套的锁定构件。 锁定构件与楔组件结构(410,420)直接接合驱动轴表面。 这些构件相对于彼此是弹簧加载的,使得两个对应的楔形表面(480,482)通常被偏压到凸轮在一起并且在驱动轴(150; 152)上施加环向应力。 环形应力被释放,并且当移动的托架或钥匙组件(190)上的钥匙(194)插入在刀片构件和刀片构件之间时,分切元件(160; 162)可以沿轴(150; 152)重新定位 锁定构件,从而克服弹簧力并且使楔形组件脱离凸轮。 然后,托架将接合的分切元件移动到新的位置。 两个冲击式分切元件(160; 162)以堆叠布置提供,其中钥匙可释放地接合并同时移动。