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    • 11. 发明公开
    • ANGULAR CONTACT SELF-ALIGNING TOROIDAL ROLLING ELEMENT BEARING
    • 角接触自对准环形滚动元件轴承
    • EP3020987A1
    • 2016-05-18
    • EP15191368.8
    • 2015-10-26
    • Aktiebolaget SKF
    • Kellström, MagnusKullin, JonasLöfqvist, Andreas
    • F16C19/36F16C23/08
    • The present invention relates to an angular contact self-aligning toroidal roller bearing comprising an inner ring, an outer ring, and a set of rolling elements formed of rollers arranged in an intermediate configuration between the inner and outer rings, wherein each roller is arranged to self orient in its axial direction in relation to the inner and outer rings in a loaded zone during operation. Furthermore, the present invention also relates to a method for determining dimensional parameters of structural members of an angular contact self-aligning toroidal rolling element bearing and to a method for manufacturing an angular contact self-aligning toroidal rolling element bearing..
    • 本发明涉及一种角接触自对准圆环滚子轴承,其包括内圈,外圈和一组滚动元件,所述滚动元件由布置在所述内圈和所述外圈之间的中间构造中的滚子形成,其中每个滚子布置成 在操作期间,在装载区域内相对于内圈和外圈沿轴向自动定向。 此外,本发明还涉及用于确定角接触自对准环形滚动元件轴承的结构构件的尺寸参数的方法以及用于制造角接触自对准环形滚动元件轴承的方法。
    • 13. 发明公开
    • A ROLL MODULE FOR A ROLL LINE OF A CONTINUOUS CASTING MACHINE
    • WALZMODULFÜRWALZLINIE EINER STRANGGUSSMASCHINE
    • EP2946851A1
    • 2015-11-25
    • EP15167105.4
    • 2015-05-11
    • Aktiebolaget SKF
    • Anundsson, JesperMitchell, Erik
    • B22D11/128
    • B22D11/1287
    • The present disclosure regards a roll module (1) for a roll line of a continuous casting machine, comprising, a shaft (2) extending in an axial direction and presenting a first and a second axial end (21, 22), a roll mantle (3), presenting a cylindrically shaped outer peripheral surface (31) extending in an axial direction and a cylindrically shaped inner peripheral surface (32) extending in the same axial direction, wherein the roll mantle further presents a first and a second axial end (33, 34), a first and a second bearing (41, 42) mounted in-between the shaft (2) and the inner peripheral surface (32) of the roll mantle (3), such that the first and second bearing (41, 42) allows a relative rotation between the shaft (2) and the roll mantle (3). The first and second axial end of the shaft (21, 22) is extending axially outside the first and second axial end (33, 34) of the roll mantle respectively, such that the shaft (2) presents a first and a second axially extending shaft protrusion (23, 24), wherein the roll module (1) further comprising a first and a second locking means (51, 52) for axially locking the first and second bearing (41, 42) and the roll mantle (3) to the shaft (2). The first and second locking means (51, 52) are located at least partly on the first and second respective shaft protrusion (23 ,24), wherein the first locking means intersect a plane being orthogonal to the axial direction of the shaft and axially located at the first axial end of the roll mantle. The second locking means intersect a plane being orthogonal to the axial direction of the shaft and axially located at the second axial end of the roll mantle. According to a second aspect of the invention, a roll line is presented.
    • 本公开涉及一种用于连续铸造机的轧制线的辊组件(1),包括:轴(2),其在轴向方向上延伸并具有第一和第二轴向端部(21,22),辊套 (3),具有沿轴向延伸的圆筒状的外周面(31)和沿同一轴方向延伸的圆筒状的内周面(32),其中所述辊套还具有第一和第二轴向端 安装在所述轴(2)和所述辊罩(3)的内周面(32)之间的第一和第二轴承(41,42),使得所述第一和第二轴承(41,32) ,42)允许轴(2)和辊套(3)之间的相对旋转。 轴(21,22)的第一和第二轴向端分别沿着辊套的第一和第二轴向端(33,34)轴向延伸,使得轴(2)呈现第一和第二轴向延伸的 轴突(23,24),其中所述滚动组件(1)还包括第一和第二锁定装置(51,52),用于将所述第一和第二轴承(41,42)和所述辊套(3)轴向地锁定到 轴(2)。 第一和第二锁定装置(51,52)至少部分地位于第一和第二相应的轴突起(23,24)上,其中第一锁定装置与正交于轴的轴向方向的平面相交并且轴向定位 在辊地幔的第一轴向端。 第二锁定装置与垂直于轴的轴向的平面交叉,并且轴向位于辊罩的第二轴向端。 根据本发明的第二方面,提供了一种卷线。
    • 14. 发明公开
    • WIND TURBINE ROTOR SHAFT ARRANGEMENT
    • WINDTURBINENROTORWELLENANORDNUNG
    • EP2938879A1
    • 2015-11-04
    • EP13831443.0
    • 2013-08-18
    • Aktiebolaget SKF
    • WENDEBERG, HansLEANDER, HåkanREICHERT, Jürgen
    • F03D11/00F16C19/54F16C23/08
    • F03D80/70F05B2220/7066F16C19/547F16C19/548F16C23/086F16C2240/34F16C2300/14F16C2360/31Y02E10/722Y02E10/725Y02E10/726Y02P70/523Y10T29/49321
    • A wind turbine rotor shaft arrangement, e.g. of horizontal type, comprising a rotor shaft for supporting wind turbine blades, a non-rotating first housing structure for supporting the rotor shaft, and a first rolling bearing arranged to support, in a first axial direction, the rotor shaft in relation to the first housing structure at a first support point. The first rolling bearing is a single row self-aligning bearing comprising an inner ring, an outer ring, and a set of rolling elements formed of rollers arranged in an intermediate configuration between the inner and outer rings. Each roller is a symmetrical bearing roller having a curved raceway-contacting surface arranged contacting a curved inner raceway of the inner ring and a curved outer raceway of the outer ring. A contact angle between each roller and the inner and/or outer raceway is inclined in relation to the radial direction of the rotor shaft.
    • 风力涡轮机转子轴装置,例如 包括用于支撑风力涡轮机叶片的转子轴,用于支撑转子轴的非旋转第一壳体结构以及第一滚动轴承,其布置成在第一轴向方向上相对于第一轴承支撑转子轴 住房结构在第一个支持点。 第一滚动轴承是单排自对准轴承,其包括内圈,外圈和由在内圈和外圈之间以中间构造布置的辊形成的一组滚动元件。 每个滚子是一个对称的轴承滚轮,其具有与内圈的弯曲内滚道和外圈的弯曲外滚道相接触的弯曲滚道接触表面。 每个滚子与内和/或外滚道之间的接触角相对于转子轴的径向倾斜。
    • 17. 发明公开
    • Bearing unit for fluid machinery application
    • 轴承单元的透平机械的应用
    • EP2871377A1
    • 2015-05-13
    • EP14189979.9
    • 2014-10-23
    • Aktiebolaget SKF
    • Kullin, JonasWendeberg, HansReichert, Jürgen
    • F16C23/08F16C19/54
    • F16C23/082F16C19/38F16C19/543F16C23/086F16C33/36F16C2300/14F16C2360/31
    • The present invention relates to a bearing unit (1) for a fluid machinery application (100) having a double-row bearing (10), the double-row bearing (10) comprising: a first angular self-aligning contact bearing (11) arranged next to a second angular self-aligning contact bearing (31) for locating and rotatably support a shaft (2); the first angular self-aligning contact bearing (11) having a first set of rolling elements formed of rollers (15) arranged in a first row (22) and interposed between a first curved inner raceway (20a) and a first curved outer raceway (21a), wherein each roller (15) is a symmetrical barrel shaped roller having a curved raceway-contacting surface (15a) being engageable with the first curved inner raceway (20a) and the first curved outer raceway (21a), and wherein each roller (15) of the first angular self-aligning contact bearing (11) is inclined in relation to the axial direction of the shaft (2) by a first contact angle (α 1 ); whereby the rollers (15) are arranged to cooperate with the first curved inner raceway (20a) and the first curved outer raceway (21a) for supporting an axial force (F 1 ) and a radial force (F 2 ); the second angular self-aligning contact bearing (31) having a second set of rolling elements formed of rollers (35) arranged in a second row (32) and interposed between a second curved inner raceway (40a) and a second curved outer raceway (41a), wherein each roller (35) is a symmetrical barrel shaped roller having a curved raceway-contacting surface (35a) being engageable with the second curved inner raceway (40a) and the second curved outer raceway (41a), and wherein each roller (35) of the second angular self-aligning contact bearing (31) is inclined in relation to the axial direction of the shaft (2) by a second contact angle (α 2 ); whereby the rollers (35) are arranged to cooperate with the second curved inner raceway (40a) and the second curved outer raceway (41a) for supporting the axial force (F 1 ) and the radial force (F 2 ). The present invention also relates to a fluid machinery application (100), such as wind turbine arrangement, water turbine arrangement or a propulsion turbine arrangement, comprising a bearing unit (1).