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    • 1. 发明申请
    • METHOD FOR THE PRODUCTION OF A BEARING ARRANGEMENT, AND BEARING ARRANGEMENT
    • 一种用于生产轴承的布置和轴承配置
    • WO2015078708A3
    • 2015-07-30
    • PCT/EP2014074612
    • 2014-11-14
    • SKF AB
    • GOETZ JOHANNESVOGEL MATTHIASWEIGLEIN JÜRGEN
    • F16C35/06F16C19/18F16C19/55F16C35/073F16C35/077
    • F16C35/061F16C19/54F16C19/55F16C25/083F16C35/073F16C35/077F16C2229/00
    • The invention relates to a method for producing a bearing arrangement (1), wherein the bearing arrangement has a first and a second rolling bearing (2, 3), each having outside bearing rings (4, 5) and inside bearing rings (6, 7), wherein a defined axial pre-tension or bearing clearance is adjusted between the two rolling bearings. In order to generate the pre-tension in a reproducible and simple manner and to be able to produce the bearing arrangement in a cost-effective manner, the method comprises the steps: a) coaxial arranging of the two roller bearings and placing of a spring element (8) between two bearing rings; b) axial compressing of the two bearing rings, between which the spring element is not arranged, by an axial clamping force (F); c) edging the two bearing rings, between which the spring element is not arranged, by means of a material (9) which has been brought into a pourable state, such that the two bearing rings are edged by the pourable material having an axial undercut, wherein the clamping force is maintained; d) allowing the pourable material to cure; e) removing of the axial clamping force. The invention further relates to a bearing arrangement.
    • 本发明涉及的制造轴承装置(1),所述轴承组件包括第一和第二轴承的方法(2,3)具有相应的外轴承环(4,5)和轴承内圈(6,7),其中,两个轴承之间限定 轴向预紧或间隙进行调整。 在可再现的和简单的方式生成所述偏置电压和制造以成本有效的方式在轴承装置中,该方法包括以下步骤:a)配置在同轴两个滚动轴承和两个轴承环之间放置一个弹簧元件(8); b)中轴向地压缩两个轴承环中,弹簧构件不设置在它们之间,通过轴向夹紧力(F); c)中安装的两个轴承环,弹簧元件不设置在它们之间,从而使两个轴承环均封装轴向咬合可浇注材料与材料(9),将其放置在可倾倒的状态,其特征在于,夹紧力被保持 ; d)固化所述可浇注材料; E)去除所述轴向夹紧力。 此外,本发明涉及一种轴承装置。
    • 2. 发明申请
    • BEARING POWER GENERATING CONFIGURATION
    • 承载发电配置
    • WO2013160099A3
    • 2014-09-12
    • PCT/EP2013057381
    • 2013-04-09
    • SKF AB
    • BARTL FRANKERSKINE JOSEPHZIEGLER SEBASTIANVAN DER HAM ANDREAS CLEMENS
    • F16C41/00H02K7/18
    • F16C41/004H02K7/1846Y02E10/725
    • A power generating bearing assembly (100) comprising a power generating subassembly (200, 300, 400) integrated into a bearing (110). The power generating subassembly (300, 400) utilizes the relative motion between a bearing inner ring (112) and a bearing outer ring (116) of the bearing (110) to generate electrical power. A sealing system (130) is attached to one of the bearings (112, 116). The power generating subassembly (300, 400) includes an electrical generator (310, 410) in operational engagement with a magnetically polarized material (324, 424). The electrical generator (310, 410) is attached to the non-sealing carrying bearing (112, 116). The magnetically polarized material (324, 424) can be attached directly to the sealing system (130) or carried by a magnetically polarized material mount ring (320). The relative motion between the rings (112, 116) engages the electrical generator (310, 410) and the magnetically polarized material (324, 424) causing a generator core (312, 412) of the electrical generator (310, 410) to create an electrical current.
    • 一种发电轴承组件(100),包括集成到轴承(110)中的发电子组件(200,300,400)。 发电子组件(300,400)利用轴承内圈(112)和轴承(110)的轴承外圈(116)之间的相对运动来产生电力。 密封系统(130)附接到轴承(112,116)中的一个。 发电子组件(300,400)包括与磁极化材料(324,424)操作接合的发电机(310,410)。 发电机(310,410)安装在非密封运输轴承(112,116)上。 磁极化材料(324,424)可以直接附着到密封系统(130)上或由磁极材料安装环(320)承载。 环(112,116)之间的相对运动与发电机(310,410)和磁极化材料(324,424)接合,使得发电机(310,410)的发电机芯(312,412)产生 电流。
    • 3. 发明申请
    • POWER HARVESTING BEARING CONFIGURATION
    • 电力收集轴承配置
    • WO2013050294A8
    • 2014-04-17
    • PCT/EP2012069104
    • 2012-09-27
    • SKF AB
    • BARTL FRANKVAN DER HAM ANDREAS CLEMENS
    • F16C35/00F16C37/00F16C41/00
    • F01D15/10F01D1/04F04D29/05F16C35/00F16C37/00F16C41/004H02K7/1823
    • A power generating bearing assembly (100) comprising a bearing (120) retained by a bearing housing (110). The bearing housing (110) includes a bearing cooling passage system comprising at least one integrated liquid cooling passage (130) is integrated within the bearing housing (110). A turbine receiving bore (160) is formed through the bearing housing (110), penetrating the integrated liquid cooling segment (130). A turbine assembly (200) is inserted into the turbine receiving bore (160), positioning a turbine blade subassembly (230) of the turbine assembly (200) within the integrated liquid cooling passage (130), wherein fluid flowing within the integrated liquid cooling passage (130) causes the blade subassembly (230) to rotate. The rotation of the blade subassembly (230) rotates an electric power generator (collectively 222, 224, 226, 240, 242, 244, 246) to create electric power. The turbine assembly (200) can include an electro-magnetic subassembly mounting plate (248), wherein the turbine subassembly (202) is located on an interior surface of the mounting plate (248) and at least a portion of the power generating portion location on an exterior portion of the mounting plate (248).
    • 一种发电轴承组件(100),包括由轴承壳体(110)保持的轴承(120)。 轴承壳体(110)包括轴承冷却通道系统,其包括集成在轴承壳体(110)内的至少一个集成液体冷却通道(130)。 涡轮机接收孔(160)通过轴承壳体(110)形成,穿过集成液体冷却段(130)。 涡轮机组件(200)被插入到涡轮机接收孔(160)中,将涡轮机组件(200)的涡轮机叶片子组件(230)定位在集成液体冷却通道(130)内,其中流体在集成液体冷却 通道(130)使叶片子组件(230)旋转。 叶片子组件(230)的旋转使发电机(统称为222,224,226,240,242,244,246)旋转以产生电力。 涡轮组件(200)可以包括电磁子组件安装板(248),其中涡轮机组件(202)位于安装板(248)的内表面上,并且发电部位置的至少一部分 在安装板(248)的外部部分上。
    • 5. 发明申请
    • CAGE SEGMENT OF A TAPERED-ROLLER BEARING, AND TAPERED-ROLLER BEARING
    • 圆锥滚子轴承和轴承座内架段
    • WO2012076583A2
    • 2012-06-14
    • PCT/EP2011072027
    • 2011-12-07
    • SKF ABGESSENDORFER MATTHIASLIANG BAOZHUOESTREICHER WINFRIEDWAHLER RALF
    • GESSENDORFER MATTHIASLIANG BAOZHUOESTREICHER WINFRIEDWAHLER RALF
    • F16C33/51F16C19/36F16C33/36F16C33/46F16C33/56
    • F16C33/51F16C19/364F16C33/4605F16C33/467F16C33/4676F16C33/4682F16C33/513F16C2240/40F16C2300/14F16C2360/31
    • The invention relates to a cage segment (7) of a tapered-roller bearing, having two circumferential webs (10), which are situated opposite one another and which extend in each case between a first circumferential end (13) and a second circumferential end (14) of the cage segment (7), and having at least two connecting webs (11) which are situated opposite one another and which connect the two circumferential webs (10) to one another and, together with the circumferential webs (10), form at least one pocket (12) for receiving a conical rolling body (6). The circumferential webs (10) and the connecting webs (11) have pocket sides which delimit the pocket (12). The circumferential webs (10) and the connecting webs (11) arranged in the region of the first circumferential end (13) and of the second circumferential end (14) have surroundings sides situated opposite the pocket sides. The connecting webs (11) arranged in the region of the first circumferential end (13) and of the second circumferential end (14) have, in each case on the pocket side thereof and on the circumferential side thereof, a concavely shaped first guide surface (16) for partially engaging around a rolling body (6) in the circumferential direction thereof. The circumferential webs (10) project beyond the first circumferential end (13) and the second circumferential end (14) at a maximum to such an extent that they cannot make contact with the circumferential webs (10) of a further cage segment (7) of identical design when a rolling body designed to be received in the pocket is arranged between the first circumferential end (13) of the cage segment (7) and the second circumferential end (14) of the further cage segment (7), and the cage segment (7), the further cage segment (7) and the rolling body (6) are arranged in a way which corresponds to the installed state in the tapered-roller bearing.
    • 本发明涉及一种圆锥滚子轴承的保持器部(7)具有两个彼此相对的周向肋(10)的第一周向端(13)和所述保持器部(7)的第二周向端部(14)和至少两个相对的连接腹板之间延伸( 11),其形成连接两个圆周腹板(10)一起,和(在与周向肋10)的至少一个凹处(12),用于接收锥形滚动元件共同(6)。 圆周腹板(10)和连接板(11)具有兜孔侧,其限定所述口袋(12)。 圆周腹板(10)和在所述第一周向端(13)和第二周向端部(14)的区域中布置的连接腹板(11)具有与袋侧相反侧的环境。 在第一周向端部(13)和所述第二周向端部的区域(14)布置的连接腹板(11)各自具有在其袋的侧面和在其圆周侧,凹状的第一导向表面(16),用于围绕一个滚动元件(6)在圆周方向上部分地接合其上 , 圆周腹板(10)被设置用于最大的远的第一周向端(13)和第二周向端部(14)以上,(10)进一步的,相同配置的保持架节(7)不能接触到周向纤维网时的第一周向端之间 (13)的保持器部(7)和形成在所述滚动体设置在所述口袋中收到的进一步保持器部(7)的第二周向端部(14),及保持器部(7),另一个保持器部(7)和所述滚动体(6) 被布置在对应于内置在圆锥滚子轴承的条件的方式。
    • 6. 发明申请
    • ACOUSTICAL MACHINE CONDITION MONITORING
    • 声学机器状况监测
    • WO2011160652A8
    • 2012-04-19
    • PCT/EP2010003728
    • 2010-06-21
    • SKF ABCOLLYER ROBERTHALL ROBERT ANDREW
    • COLLYER ROBERTHALL ROBERT ANDREW
    • G01M13/04
    • G01M13/045
    • A machine and/or a bearing is usually analyzed by several different methods, each one looking at a different aspect of a machine/bearing. This is at least in part due to the fact that we do not know what sort of failure it will be and what caused it. Different failures have different ways of breaking down and thus give different indications that something is not completely right. A machine/bearing condition monitoring unit will then preferably comprise many different analysis methods of trying to predict and detect failures. As a user it can be difficult to assess all the different alarm indications from the different methods. Therefore according to the invention, an alarm voting controller determines if an alarm should be made or not. The alarm voting controller analyzes the alarms from the individual methods and possibly how serious each one is and then outputs a single, for example, go/no go, pass/fail, or pass/warning/fail indication to a user.
    • 机器和/或轴承通常通过几种不同的方法分析,每种方法都在机器/轴承的不同方面。 这至少部分是由于我们不知道会有什么样的失败以及造成的。 不同的失败有不同的分解方式,从而给出不同的迹象表明某些东西不是完全正确的。 机器/轴承状况监测单元将优选地包括尝试预测和检测故障的许多不同的分析方法。 作为用户,可能难以从不同的方法评估所有不同的报警指示。 因此,根据本发明,报警投票控制器确定是否应该发出报警。 报警投票控制器分析来自各个方法的报警,并且可能会对每个方法造成严重的影响,然后向用户输出一个单一的,例如go / no go,pass / fail或pass / warning / fail指示。
    • 7. 发明申请
    • BEARING ARRANGEMENT AND METHOD FOR MOUNTING A COMPONENT
    • 轴承安装和安装组件的方法
    • WO2011051364A9
    • 2011-06-30
    • PCT/EP2010066304
    • 2010-10-28
    • SKF ABHORLING PETERKERN HENNING
    • HORLING PETERKERN HENNING
    • F16C33/76F16C35/04
    • F16C35/04F16C19/38F16C33/7806F16C33/7886F16C43/045
    • The invention relates to a bearing arrangement comprising a bearing (1) which rotationally mounts a shaft (4) in relation to a housing (3) and a sealing (9) which axially seals the bearing (1). Said sealing (9) comprises an outer component (10) and/or an inner component (11). Said outer component (10) and/or the inner component (11) is/are embodied as a sealing component having a circular outer contour (12) with a plurality of, in the direction of the periphery, successive projections (13) which protrude radially outwards and can be elastically deformable or a circular inner contour (14) with a plurality of, in the direction of the periphery, successive projections (15) which protrude radially inwards and can be elastically deformable. Said projections (13, 15) extend respectively up to the same radius and therefor define a centre point of the sealing component. Said housing (3) comprises a bore (2) with several cavities (16) which are respectively arranged, in the direction of the periphery, at a distance in relation to the radially protruding projections (13). Alternatively or additionally, the shaft (4) is conically formed at least in an axial area, in which the radially inward projections (15) are arranged.
    • 本发明涉及一种具有(1),具有轴(4)可旋转地相对于壳体(3),并用一个密封件(9),其(1)轴向地密封轴承的轴承的轴承组件。 密封件(9)具有外部部件(10)和/或内部部件(11)。 所述外部部件(10)和/或所述内部部件(11)被形成为具有圆形外轮廓(12),其具有多个沿周向连续的密封构件,径向向外突出的和可弹性变形的突出部(13)或圆形的内轮廓 (14)具有多个沿周向连续的,径向向内突出且可弹性变形的突起(15)。 突起(13,15)各自延伸至相同的半径并由此限定密封部件的中心。 壳体(3)具有带有多个凹部(16)的孔(2),所述多个凹部分别沿周向方向与径向向外突出的突出部(13)隔开一定距离布置。 可选地或附加地,轴(4)至少在其中布置径向向内突出的突出部(15)的轴向区域中呈圆锥形地形成。