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    • 3. 发明申请
    • ROLLER FOR PELLETING MILL
    • 滚筒铣刀
    • WO2010085559A1
    • 2010-07-29
    • PCT/US2010/021651
    • 2010-01-21
    • CPM ACQUISITION CORPORATIONALLIS, Carl, R.
    • ALLIS, Carl, R.
    • B30B11/20F16C13/00F16C33/80
    • B30B11/208B29B9/06F16C13/02F16C33/80F16C2320/23
    • A pellet mill (10) includes a die (12) carrying material (14) to be extruded into pellets. The die (12) rotates to bring the material toward rollers (18) within the die (12). The rollers (18) push the material (14) through extrusion holes (20) in the die (12). The rollers (42) are mounted on and rotate about support shafts (46) that are held stationary within the die (12). Sealing devices (62,64) at the ends of the rollers prevent foreign material from interfering with bearings (88) between the rollers (42) and the support shafts (46). Each of the sealing devices (62,64) include one or more sealing elements. The sealing elements may include a pair of mating grooves and protrusions.
    • 造粒机(10)包括承载材料(14)的模具(12),以挤出成颗粒。 模具(12)旋转以使材料朝向模具(12)内的辊(18)。 辊(18)通过模具(12)中的挤压孔(20)推动材料(14)。 辊(42)安装在支撑轴(46)周围,支撑轴(46)在模具(12)内保持静止。 在辊的端部处的密封装置(62,64)防止异物与辊(42)和支撑轴(46)之间的轴承(88)干涉。 每个密封装置(62,64)包括一个或多个密封元件。 密封元件可以包括一对配合凹槽和凸起。
    • 4. 发明申请
    • ROLLING BEARING
    • 滚动轴承
    • WO2009000575A1
    • 2008-12-31
    • PCT/EP2008055164
    • 2008-04-28
    • SMIDTH AS F LHANGHOEJ SOERENTHRANBERG NISSEN RASMUS
    • HANGHOEJ SOERENTHRANBERG NISSEN RASMUS
    • B02C15/00F16C11/04F16C19/50
    • B02C15/14B02C15/007F16C11/04F16C19/00F16C2320/23
    • Described is a rolling bearing (1) for a rocker arm, said rolling bearing comprising an at least partly circular outer part (2), an at least partly circular inner part (3) and a number of rolling elements (5) which are fitted between the outer part (2) and the inner part (3). The rolling bearing is peculiar in that at least one of the rolling elements (5) comprises two opposite, curved side faces (6, 7), which viewed in at least one cross-sectional constitutes arc lengths of the same imaginary circle (10), and which constitutes contact faces for the outer and the inner circular part (2, 3) respectively, and at least one side surface (8, 9), which lies within the mentioned imaginary circle (10). It is hereby obtained that the number of rolling elements in the bearing can be increased, thereby reducing the load on each single rolling element subject to the same total load rate, thereby increasing the total load bearing capacity of the bearing. This is due to the fact that at least a part of the roller face of the traditional circular rollers which do not get into contact with the outer or inner part of the bearing through small reciprocating angular rotations is omitted thereby significantly reducing the space taken up by each of the rolling elements in the circumferential direction of the bearing.
    • 描述了一种用于摇臂的滚动轴承(1),所述滚动轴承包括至少部分圆形的外部部件(2),至少部分圆形的内部部件(3)和多个滚动元件(5) 在外部部分(2)和内部部分(3)之间。 滚动轴承是特别的,因为滚动元件(5)中的至少一个包括两个相对的弯曲侧面(6,7),其在至少一个横截面中观察到构成相同的假想圆(10)的弧长, 并且分别构成外圆周部分和内圆形部分(2,3)的接触面以及位于所述假想圆(10)内的至少一个侧表面(8,9)。 由此,可以提高轴承中的滚动体的数量,从而能够减少在相同总负荷率下的各滚动体上的负荷,从而提高轴承的总承载能力。 这是因为省略了传统的圆形辊的滚子面的至少一部分不会通过小的往复角度旋转与轴承的外部或内部接触,从而显着地减少了由 每个滚动元件在轴承的圆周方向上。
    • 6. 发明申请
    • VENTURI DRAIN FOR SELF-PUMPING BEARING ROLLING MILLS
    • 用于自吸式滚动轴承的VENTURI排水
    • WO2011156079A1
    • 2011-12-15
    • PCT/US2011/036160
    • 2011-05-12
    • SIEMENS INDUSTRY, INC.OSGOOD, Peter N.WOJTKOWSKI, JR., Thomas C.
    • OSGOOD, Peter N.WOJTKOWSKI, JR., Thomas C.
    • B21B31/07F16C13/02F16C33/10F16C33/74
    • B21B31/074F16C13/02F16C33/1045F16C33/74F16C2320/23F16C2322/12
    • A system is disclosed for use in a rolling mill oil film bearing to remove oil exiting from between a rotating sleeve and a fixed bushing surrounding the sleeve. The system comprises an annular chamber arranged to receive the exiting flow of oil. The chamber is isolated from a drainage sump by confinement surfaces including a seal interface defined by a flexible seal in contact with an adjacent rigid component of the bearing. Impellers project into the chamber and are rotable with and at the velocity of the sleeve to rotatively propel oil around the chamber. A discharge conduit communicates tangentially with the chamber and is arranged to receive a pressurized flow of the oil being rotatively propelled around the chamber. A venturi is located in the discharge conduit. A suction conduit connects the venturi to the drainage sump. Oil escaping from the annular chamber past the seal interface into the drainage sump is aspirated by the venturi for removal via the conduit.
    • 公开了一种用于轧机油膜轴承的系统,用于去除从旋转套筒和围绕套筒的固定衬套之间排出的油。 该系统包括布置成接收出口的油流的环形室。 该室通过限制表面与排水池隔离,包括由与轴承的相邻刚性部件接触的柔性密封件限定的密封接口。 叶轮投入到室中,并且可以以套筒的速度旋转并旋转地推进室周围的油。 排放管道与腔室相切地连通并且被布置成接收围绕室旋转地推进的油的加压流。 文丘里管位于排放管道中。 抽吸管将文丘里管连接到排水池。 从通过密封接口的环形室逸出到排水池中的油被文丘里管吸出,以通过导管去除。