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    • 1. 发明申请
    • CUTTER ASSEMBLY WITH CUTTER DEVICE AND METHOD OF ASSEMBLING
    • 具有切割装置的切割器组件和组装方法
    • WO2016206711A1
    • 2016-12-29
    • PCT/EP2015/063960
    • 2015-06-22
    • SANDVIK INTELLECTUAL PROPERTY AB
    • EBNER, BernhardHABERER, Christoph
    • E21C25/16E21C27/12E21D9/11
    • E21C25/16E21C27/128E21D9/117
    • The invention relates to a cutter assembly (1) for an undercutting machine for cutting a rock workface and a method of assembling a cutter assembly. The cutter assembly (1) comprises a shaft (100) mountable on the machine with one end extending from the machine, and a cutter device (200) arranged in connection to the extended end of the shaft (100), wherein the cutter device (200) is connected releasably and rotationally rigid to the shaft (100) with a locking arrangement (800), wherein the locking arrangement (800) comprises a first locking device (300) arranged and adapted to transfer substantially axial loads, and a second locking device (400) arranged and adapted to transfer substantially radial loads.
    • 本发明涉及一种用于切割岩石工作面的底切机的切割器组件(1)和组装切割器组件的方法。 切割器组件(1)包括可安装在机器上的一端的轴(100),其一端从机器延伸;以及切刀装置(200),其与轴(100)的延伸端相连接设置,其中切割装置 200)通过锁定装置(800)可释放地且可旋转地刚性地连接到轴(100),其中锁定装置(800)包括布置并适于传递基本上轴向载荷的第一锁定装置(300)和第二锁定 装置(400)布置并适于传递基本上径向的载荷。
    • 3. 发明申请
    • METHODS AND APPARATUS FOR EXCAVATING A SOLID MATERIAL
    • 用于排除固体材料的方法和装置
    • WO1997016606A1
    • 1997-05-09
    • PCT/AU1996000687
    • 1996-11-01
    • THE UNIVERSITY OF QUEENSLANDBUNKER, Christopher, Alan
    • THE UNIVERSITY OF QUEENSLAND
    • E02F05/08
    • E02F9/2866E02F3/183E02F3/185E02F3/20E02F3/241E02F3/963E21C25/16
    • An apparatus (10) for cutting an excavation in solid material is disclosed. The apparatus (10) includes two cutting wheels (15, 16) for cutting an excavation in the material, support means (11-14, 17-42) supporting the cutting wheels (15, 16) and arrangement means (40, 41) operatively associated with the cutting wheels (15, 16) to arrange the cutting wheels (15, 16) relative to each other whereby reaction forces from cutting the excavation in the solid material result in a required net force on the support means (11-14, 17-42). It is appropriate to fit two cutting wheels or cutting and breaking wheels which counter-rotate, since in this arrangement the torque-reactions would be expected substantially to cancel. Each cutting wheel (15, 16) has a top surface which curves upwardly adjacent the peripheral edge of the wheel. The peripheral surface is fitted with a plurality of cutting picks or drag tools which excavate an undercut in the solid material as each wheel (15, 16) is rotated. A bursting wheel assembly may be fitted to each cutting wheel (15, 16) which is pushed into the undercut to break-up the solid material as each wheel (15, 16) is rotated. The cutting picks may be mounted on the ends of a plurality of arms extending outwardly and upwardly from a hub portion of each wheel (15, 16) to allow the escape of excavated material from the solid material. Apparatus (10) can be mounted onto the end of a boom or arm on a tracked excavator by means of mounting plate (23).
    • 公开了一种用于切割固体材料挖掘的装置(10)。 装置(10)包括用于切割材料挖掘的两个切割轮(15,16),支撑切割轮(15,16)的支撑装置(11-14,17-42)和装置装置(40,41) 与切割轮(15,16)可操作地相关联以相对于彼此布置切割轮(15,16),由此在固体材料中切割挖掘的反作用力导致支撑装置(11-14)上所需的净力 ,17-42)。 适合于安装两个切割轮或相互旋转的切割和切割轮,因为在这种布置中扭矩反应将被大大取消。 每个切割轮(15,16)具有相对于轮的周边边缘向上弯曲的顶面。 周边表面装配有多个切割拾取物或拖曳工具,当每个轮(15,16)旋转时,挖掘出固体材料中的底切。 爆破轮组件可以安装到每个切割轮(15,16)上,每个切割轮(15,16)被推入底切以在每个轮(15,16)旋转时分解固体材料。 切割拾取器可以安装在从每个轮(15,16)的轮毂部分向外和向上延伸的多个臂的端部上,以允许挖掘的材料从固体材料中逸出。 装置(10)可以通过安装板(23)安装在履带式挖掘机上的悬臂或臂的端部上。
    • 4. 发明申请
    • MINING MACHINE
    • 采矿机
    • WO1997007317A1
    • 1997-02-27
    • PCT/US1996013164
    • 1996-08-13
    • RINGGOLD MINES, INC.
    • RINGGOLD MINES, INC.SHOFFNER, Myron, A.
    • E21B07/00
    • E21C25/58E21C25/16
    • A boring machine (10) for use in mining having a base (12), a hydraulic motor (16) and a cutting member (18). Oscillating drive units are contained within a stationary shell (44). This shell is rotatable connected to a rotating shell (42). Cam units (64) are secured to the rotating shell. The cam units (64) are adapted to coact with a respective drive unit. The cam drive paths are arranged so that when one of the drive unit arms is in an extended mode, the other drive unit arm is in a retracted mode. The cutting member (18) is secured to the rotating shell (42), whereby oscillation of the arms along the longitudinal axis causes the cam drivers to coact with respective ones of said cams along the cam drive paths causing said rotating shell (42) and said cutting member (18) to rotate.
    • 一种用于采矿的钻孔机(10),具有基座(12),液压马达(16)和切割构件(18)。 振荡驱动单元包含在固定壳体(44)内。 该壳体可旋转地连接到旋转壳体(42)。 凸轮单元(64)固定在旋转壳体上。 凸轮单元(64)适于与相应的驱动单元共同作用。 凸轮驱动路径被布置成使得当驱动单元臂中的一个处于扩展模式时,另一个驱动单元臂处于缩回模式。 切割构件(18)固定到旋转壳体(42)上,由此臂沿着纵向轴线的振荡使得凸轮驱动器沿着凸轮驱动路径与相应的凸轮共同作用,从而使所述旋转壳体(42)和 所述切割构件(18)旋转。
    • 7. 发明申请
    • OSCILLATING DISC CUTTER WITH SPEED CONTROLLING BEARINGS
    • 振动盘式切割机与速度控制轴承
    • WO2003089762A1
    • 2003-10-30
    • PCT/AU2003/000473
    • 2003-04-22
    • ODYSSEY TECHNOLOGY PTY LTDSUGDEN, David, Burnet
    • SUGDEN, David, Burnet
    • E21D9/10
    • F16C21/00E21C25/16E21D9/1046F16C32/0692
    • An oscillating disc cutter (10) including a cutting disc (602) and a drive mechanism. The drive mechanism including a drive shaft (612) to effect eccentric oscillation of the cutting disc and a radial bearing (609) disposed to permit relative rotation between the drive shaft and the cutting disc. The cutter further including a hydrostatic axial bearing (700) disposed to react axial forces while accommodating induced rotation of the cutting disc when operatively engaged and to induce a rotational drag thereby limiting rotational peed of the cutting disc when free running. A water pressurised fluid bearing (605) induces a predetermined axial load in the hydrostatic bearing such that a predetermined maximum running clearance in the hydrostatic bearing is maintained.
    • 一种包括切割盘(602)和驱动机构的摆动盘式切割器(10)。 驱动机构包括用于实现切割盘的偏心振动的驱动轴(612)和设置成允许驱动轴和切割盘之间的相对旋转的径向轴承(609)。 所述切割器还包括静压轴向轴承(700),所述静压轴向轴承(700)设置为当操作地接合时适应所述切割盘的诱导旋转,以响应轴向力,并引起旋转阻力,从而限制所述切割盘在自由运行时的旋转速度。 水加压流体轴承(605)在静压轴承中引起预定的轴向载荷,从而保持静压轴承中预定的最大行程间隙。