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    • 13. 发明申请
    • MILL ROLL WITH HOLLOW CENTER SHAFT FOR CIRCULATING FLUID AND METHOD FOR CONTROLLING BEARING SETTING IN SAME
    • 用于循环流体的中空轴的铣刀和用于控制相同轴承的方法
    • WO2015142733A1
    • 2015-09-24
    • PCT/US2015/020758
    • 2015-03-16
    • THE TIMKEN COMPANY
    • BAKER, Mark, E.RHODES, Jerry
    • B21B13/02B21B31/07
    • B21B31/07B21B13/02B21B31/028F16C19/388F16C19/525F16C19/547F16C25/06
    • A roll assembly 116 for a rolling mill includes a roll 118 having an exterior surface 120 operable to contact a work piece or adjacent work roll. The roll 118 includes a first axial end 117A, a second axial end 117A, and a central bore defining an axis. First and second tapered roller bearing assemblies 124 rotatably support the respective first and second axial ends 117A. A non-rotating, hollow center shaft 128 is positioned within the central bore of the roll 118, and the center shaft 128 is coupled to first and second chocks 130 supporting the first and second tapered roller bearing assemblies 124 such that applying and releasing tension in the center shaft 128 manipulates a bearing setting of the bearing assemblies 124 for an amount of axial clearance or axial preload. The center shaft 128 defines an interior cavity 140 receiving a flow of heated fluid to expand the center shaft 128 and limit tightening of the bearing setting when the roll 118 expands during use.
    • 用于轧机的辊组件116包括具有可操作以接触工件或相邻工作辊的外表面120的辊118。 辊118包括第一轴向端部117A,第二轴向端部117A和限定轴线的中心孔。 第一和第二圆锥滚子轴承组件124可旋转地支撑相应的第一和第二轴向端部117A。 不旋转的中空中心轴128定位在辊118的中心孔内,并且中心轴128联接到支撑第一和第二圆锥滚子轴承组件124的第一和第二轴承座130,使得施加和释放张力 中心轴128操纵轴承组件124的轴承设定一定量的轴向间隙或轴向预载。 中心轴128限定内腔140,其容纳加热流体的流动以膨胀中心轴128,并且当使用时辊118膨胀时限制轴承定位的紧固。
    • 17. 发明申请
    • ROLLING METHOD, A ROLL MILL AND A SCREW-DOWN STRUCTURE
    • 轧制方法,轧辊和螺旋结构
    • WO2002076644A1
    • 2002-10-03
    • PCT/RU2001/000481
    • 2001-11-14
    • B21B1/22
    • B21B31/20B21B1/22B21B13/02B21B31/32B21B37/58B21B2013/028
    • The invention relates to milling production and can be used for hot and cold rolling mills of ferrous and non-ferrous metals and for rolling non-metallic materials. The aim of the invention is to simplify the design structure of a rolling mill, increase the speed and accuracy for clearance setting between rollers and ensure a fine adjustment of the force occurring during the rolling. The inventive rolling mill comprises a base made of a non-magnetic material, working and pressure rollers, a roller drive and an electromagnetic system. The rollers are arranged in such a way that they are displaceable on a vertical plane. Said electromagnetic system is embodied in the form of at least one pair of E solenoids and coils encompassing the inner poles of said solenoids. The working and pressure rollers are arranged between the poles of the E-solenoids. Said E-solenoids are disposed in a parallel position with respect to a rolling plane. The poles of the E-solenoids encompass the rollers bellow the centreplanes thereof, which are parallel in relation to the rolling plane from the side thereof. The inner poles encompass the working rollers, the pressure rollers being encompassed by external poles. The pressure device of the rolling mill comprises a hydraulic pressure unit consisting of movable and fixed parts which are provided with the electromagnetic systems interacting with each other.
    • 本发明涉及研磨生产,可用于黑色金属和有色金属的热轧和冷轧机以及滚动非金属材料。 本发明的目的是为了简化轧机的设计结构,提高轧辊之间的间隙设定的速度和精度,并确保轧制过程中发生的力的微调。 本发明的轧机包括由非磁性材料制成的基座,加工辊和压力辊,辊驱动和电磁系统。 辊以这样的方式布置,使得它们可在垂直平面上移位。 所述电磁系统以至少一对E螺线管和包围所述螺线管的内极的线圈的形式实施。 工作压力辊和压力辊布置在E型螺线管的两极之间。 所述E型螺线管相对于滚动平面设置在平行位置。 E型螺线管的极点包括其中心平面上的辊,它们相对于滚动平面从侧面平行。 内极包围工作辊,压辊由外部磁极包围。 轧机的压力装置包括由可移动和固定部件组成的液压单元,该液压单元设置有彼此相互作用的电磁系统。
    • 18. 发明申请
    • ROLLING MILL
    • 轧机笼
    • WO01045871A1
    • 2001-06-28
    • PCT/UA2000/000013
    • 2000-04-13
    • B21B13/00B21B13/02B21B13/10B21B39/16
    • B21B13/001B21B13/02B21B39/16B21B2013/106
    • The invention relates to rolling production and can be used for improving technological parameters and rigidity of rolling mills, while a transforming duomills into universal ones. The rolling mill consists of bases (1) and bottom horizontal rollers (4) installed in top and bottom chucks (5, 6) and mechanisms for regulating the rollers and cassettes (15) with vertical rollers (16) mounted between the chucks (5, 6) of the horizontal rollers (4). In accordance with the invention, plates (7) are rigidly fixed to outer sides of the windows of the bases'(1) columns (2, 3). The plates (7) project from boundaries of the columns (2, 3). The parts of the columns are linked to each other with the aid of top and bottom beams (9, 10) on which an entry and delivery roller guides (11) are mounted. The cassettes (15) with the vertical rollers (16) are fixed with the aid of a wedge arrangement between the inner surfaces of the columns (2, 3) of the base (1) and the surface of the plate (7). The top beams (9) have a cross section of a trapezoidal form and bottom beams (10) are embodied in the form of a tube. The rolling mill additionally comprises a mechanism for the axial fixation of the chucks (6) of the bottom horizontal roller (4) and a mechanism for axial adjustment and fixation of the chucks of the top horizontal roller (4) in addition to mechanisms for bailing the chucks (5, 6) of the horizontal rollers (4) mounted in such a way that they can turn and be introduced into the space between the chucks (5, 6) of the horizontal rollers (4). This operation is carried out during changing of the callipers of the rollers (4) and dismantling the cassettes (15) together with the vertical rollers (16).
    • 本发明涉及轧制领域,并且可以用于改进轧机机架的工艺参数和刚度以及用于转换成通用机架的双筒笼(二重)的修理。 所述笼包括机架(1),安装在轴承座(5,6)上的上部和下部水平滚子(4),缸体调节机构和盒子(15),所述竖直缸体 安装在水平气缸(4)的轴承座(5,6)之间。 根据本发明,突出到立柱(2,3)外部并且其部分彼此连接的板(7)刚性地固定到其窗户外侧的框架的立柱(2,3)上。 它们通过其上安装有入口和出口引导件(11)的上梁和下梁(9,10)。 具有竖直圆柱体(16)的盒(15)通过楔形装置(18)固定在框架立柱(2,3)的内表面和板表面(7)之间。 上梁(9)的横截面为梯形,下梁(10)为管(10)的形式。 轧机机座还包括以下步骤:轧辊轴承座的轴向连接机构(6)的下水平气缸轧辊轴承座(4),轴向调整机构和固定的(5)的上部水平气缸(4)和 (4)的轴承座(5,6)的间隔机构可枢转地安装并进入水平缸体(4)的轴承座(5,6)之间的空间, (4)以及用垂直圆筒(16)拆卸盒(15)。
    • 20. 发明申请
    • A METHOD OF ROLLING SUPERCONDUCTING CONDUCTOR LENGTHS AND ROLLER APPARATUS
    • 滚动超导导体长度和滚子装置的方法
    • WO99007025A2
    • 1999-02-11
    • PCT/DK1998/000328
    • 1998-07-14
    • B21B1/16B21B13/02B21B13/14B21B27/02B21C37/04B22F3/18H01L39/24
    • B22F3/18B21B1/16B21B13/02B21B13/14B21B27/02B21C37/042B21C37/045B22F2998/00H01L39/248B22F3/1208B22F7/06
    • A roller apparatus and a method of rolling in particular superconductors, wherein a roller apparatus is used that comprises two roller bodies arranged opposite each other whereby the roller bodies form opposed roller surface planes; and wherein means are arranged for driving the two roller elements about their axes of symmetry in such a manner that the element to be rolled is pulled in between the roller surface planes by the friction generated between the element to be rolled and the roller surface planes. In accordance with the invention, the roller apparatus is so configured that the roller bodies comprise at least two annular or tubular roller bodies; and wherein the annular or tubular roller bodies are further provided with surfaces that form an annular track; and in that the roller apparatus has a pressure device which is arranged for abutment on the annular track in such a manner that the roller surface planes are pressed towards each other; and wherein the pressure device is configured and located in such a manner that the pressure device is in abutment on only a fraction of the annular track on the annular or tubular rollers. Hereby it is possible to roll with very large roller diameters without ensuing significant risk of the rollers being undesirably deformed during the roller process. In particular for the rolling of superconductors, experiments have shown that improved properties are obtained for the rolled superconductor.
    • 滚动装置和滚动特定超导体的方法,其中使用滚子装置,其包括彼此相对布置的两个辊体,由此辊体形成相对的辊表面; 并且其中装置被布置成用于以它们的对称轴线的方式驱动两个滚子元件,使得待轧制的元件通过在被轧制元件和滚子表面之间产生的摩擦力被拉到滚子表面之间。 根据本发明,辊装置被构造成使得辊体包括至少两个环形或管状辊体; 并且其中所述环形或管状辊体进一步设置有形成环形轨道的表面; 并且所述辊装置具有压力装置,所述压力装置设置成以使得所述辊表面平面彼此挤压的方式邻接在所述环形轨道上; 并且其中所述压力装置被构造和定位成使得所述压力装置仅在环形或管状辊上的所述环形轨道的一部分上抵接。 因此,可以以非常大的辊直径滚动,而不会在滚筒加工过程中产生不期望的辊变形的显着风险。 特别是对于超导体的轧制,实验表明,对于轧制的超导体,获得了改进的性能。