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    • 5. 发明授权
    • Five-high rolling mill
    • 五高轧机
    • US5653137A
    • 1997-08-05
    • US375274
    • 1995-01-19
    • Yoshio TakakuraToshiyuki Kajiwara
    • Yoshio TakakuraToshiyuki Kajiwara
    • B21B3/00B21B13/02B21B13/14B21B37/38B21B37/16
    • B21B37/38B21B13/14B21B2013/026B21B3/00
    • A multi-high rolling mill is disclosed which includes an upper work roll backed by an intermediate roll and a backup roll and a lower work roll backed up by a single backup roll. Control benders are provided on each of the intermediate roll and the upper and lower work rolls. In order to optimize the control of the rolling operation for skinpass rolling and the like, the control benders for the upper work roll and the intermediate backup roll are controlled so as to effect a control of the crown sheet over the entire width of the material being rolled, while the control bender for the lower work roll controls the sheet crown of the rolled material at the lateral side end portions, resulting in a composite control substantially improving the sheet quality and preventing edge wrinkles in the material being rolled. In the disclosed embodiments, the intermediate roll has a larger drum length than a predetermined maximum sheet width of rolled material to be rolled by the work roll. The shape of sheet material is sensed by a shape detector which provides a signal to a controller which actuates the roll benders.
    • 公开了一种多高轧机,其包括由中间辊和支撑辊支撑的上部工作辊以及由单个支承辊支撑的下部工作辊。 在每个中间辊和上下工作辊上都设有控制弯管机。 为了优化对于皮肤滚动等的滚动操作的控制,控制上部工作辊和中间支承辊的控制弯曲机,以便在材料的整个宽度上控制冠状片材 而用于下部工作辊的控制弯曲机控制侧面端部处的轧制材料的板状凸起,从而进行复合控制,从而显着提高了纸张质量并防止被轧制材料中的边缘褶皱。 在所公开的实施例中,中间辊具有比通过工作轧辊滚动的轧制材料的预定最大片材宽度更大的鼓长度。 片材的形状由形状检测器感测,该形状检测器向致动辊弯曲器的控制器提供信号。
    • 7. 发明授权
    • Chockless roll support system
    • 无滚动支撑系统
    • US5165266A
    • 1992-11-24
    • US787605
    • 1991-11-04
    • Vladimir B. Ginzburg
    • Vladimir B. Ginzburg
    • B21B13/02B21B13/14B21B31/20B21B37/38
    • B21B13/145B21B37/38B21B13/023B21B2031/206
    • A chockless work roll support and positioning apparatus and method comprises a pair of brackets for each end of each work roll and having a pair of work roll support rollers rotatably mounted on each bracket. Each bracket is connected to at least one actuator means, such as a hydraulic piston/cylinder assembly, preferably one actuator means for each support roller. The actuator means are actuated through a servovalve, by position or pressure signals to position the support rollers at desired positions and to exert a desired pressure between the respective support rollers and the corresponding work rolls. By such signal control, the work rolls may be balanced, bent in the upstream or downstream horizontal direction, upwardly or downwardly, or may be placed in offset or cross-rolling position.
    • 一种不需要的工作辊支撑和定位装置和方法包括一对用于每个工作辊的每个端部的支架,并且具有可旋转地安装在每个支架上的一对工作辊支撑辊。 每个支架连接到至少一个致动器装置,例如液压活塞/气缸组件,优选地用于每个支撑辊的一个致动器装置。 致动器装置通过位置或压力信号通过伺服阀致动,以将支撑辊定位在期望的位置并且在相应的支撑辊和相应的工作辊之间施加期望的压力。 通过这样的信号控制,工作辊可以平衡,在上游或下游水平方向上向上或向下弯曲,或者可以被置于偏移或交叉滚动位置。