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    • 1. 发明授权
    • Roller mill and method for operating a roller mill
    • 辊磨机和滚磨机的操作方法
    • US09050603B2
    • 2015-06-09
    • US13985438
    • 2012-02-07
    • Björn Olaf AssmannWerner BrosowskiMarkus Berger
    • Björn Olaf AssmannWerner BrosowskiMarkus Berger
    • B02C23/00B02C4/42B02C25/00
    • B02C4/42B02C25/00
    • The roller mill according to the invention consists substantially of two grinding rollers which are driven in opposite directions and form between them a grinding gap for comminuting material to be ground, and a delivery chute via which the material to be ground is fed to the grinding gap. Furthermore, there is provided in the delivery chute a pressure sensor for measuring the static gas pressure, which pressure sensor is connected to a control or regulating device, which changes the circumferential speed of the grinding rollers in dependence on the measured static gas pressure. In the method according to the invention for operating the above roller mill, the static gas pressure in the delivery chute is measured and used to control or regulate the circumferential speed of the grinding rollers.
    • 根据本发明的辊磨机基本上由两个研磨辊组成,它们沿相反方向驱动,并在它们之间形成用于粉碎待研磨材料的研磨间隙,以及待研磨材料通过其被供给到研磨间隙的输送槽 。 此外,在输送槽中设置有用于测量静态气体压力的压力传感器,该压力传感器连接到控制或调节装置,其根据测量的静态气体压力改变研磨辊的圆周速度。 在根据本发明的用于操作上述辊磨机的方法中,测量输送槽中的静态气体压力并用于控制或调节磨辊的圆周速度。
    • 2. 发明申请
    • ROLLER MILL AND METHOD FOR OPERATING A ROLLER MILL
    • 滚子铣刀和操作滚子铣刀的方法
    • US20130320120A1
    • 2013-12-05
    • US13985438
    • 2012-02-07
    • Björn Olaf AssmannWerner BrosowskiMarkus Berger
    • Björn Olaf AssmannWerner BrosowskiMarkus Berger
    • B02C4/42B02C25/00
    • B02C4/42B02C25/00
    • The roller mill according to the invention consists substantially of two grinding rollers which are driven in opposite directions and form between them a grinding gap for comminuting material to be ground, and a delivery chute via which the material to be ground is fed to the grinding gap. Furthermore, there is provided in the delivery chute a pressure sensor for measuring the static gas pressure, which pressure sensor is connected to a control or regulating device, which changes the circumferential speed of the grinding rollers in dependence on the measured static gas pressure. In the method according to the invention for operating the above roller mill, the static gas pressure in the delivery chute is measured and used to control or regulate the circumferential speed of the grinding rollers.
    • 根据本发明的辊磨机基本上由两个研磨辊组成,它们沿相反方向驱动,并在它们之间形成用于粉碎待研磨材料的研磨间隙,以及待研磨材料通过其被供给到研磨间隙的输送槽 。 此外,在输送槽中设置有用于测量静态气体压力的压力传感器,该压力传感器连接到控制或调节装置,其根据测量的静态气体压力改变研磨辊的圆周速度。 在根据本发明的用于操作上述辊磨机的方法中,测量输送槽中的静态气体压力并用于控制或调节磨辊的圆周速度。
    • 3. 发明授权
    • Method and apparatus for preparing a mixture of materials
    • 制备材料混合物的方法和装置
    • US5754423A
    • 1998-05-19
    • US643741
    • 1996-05-06
    • Josef TeutenbergWerner Brosowski
    • Josef TeutenbergWerner Brosowski
    • B28C7/02C04B7/38G05D11/04G05B13/02C04B2/10
    • C04B7/38B28C7/024G05D11/04Y02P40/121
    • The invention relates to the preparation of a material mixture consisting of a plurality of mineral raw material components which are delivered individually proportioned, are ground and homogenised, wherein samples are periodically analysed and determined ACTUAL values are compared with predetermined DESIRED values in order if appropriate to carry out corrective control interventions on the proportioning of raw material components by way of a laboratory computer. In relatively short time periods evaluations of the material samples and re-homogenisation of the ground mixture can be carried out very reliably with relatively low expenditure on construction if the material samples are analysed on the spot by means of a rapid analysis arrangement and the determined ACTUAL values from this analysis are passed to the laboratory computer, the homogenisation being carried out in a mixing zone with relatively small receiving capacity which is separated from the storage zone.
    • 本发明涉及由多种矿物原料组分组成的材料混合物的制备,所述矿物原料组分按比例分配,研磨和均化,其中定期分析样品并确定将ACTUAL值与预定的DESIRED值进行比较,如果适合 通过实验室计算机对原材料成分比例进行纠正控制干预。 在相对较短的时间内,如果通过快速分析装置现场分析材料样品,并且确定的实际情况下,可以非常可靠地以相对低的施工费用对材料样品进行评估和再均化 来自该分析的值被传递到实验室计算机,均匀化在具有相对较小的接收容量的混合区中进行,其与储存区分离。