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    • 1. 发明申请
    • MACHINE ARRANGEMENT
    • 机器安排
    • WO2014000798A1
    • 2014-01-03
    • PCT/EP2012/062535
    • 2012-06-28
    • AKTIEBOLAGET SKFWENSING, JeroenVAN DER MEI, NijsPETERS, Gilbert
    • WENSING, JeroenVAN DER MEI, NijsPETERS, Gilbert
    • F16C27/04F16C27/06
    • F16C27/04F16C19/06F16C19/163F16C27/066F16C2360/00F16C2360/42F16C2360/44
    • The invention relates to a machine arrangement (1) comprising a housing element (2) and a rotor element (3), wherein the rotor element (3) is rotatable supported in the housing element (2) by at least one bearing (4), wherein the at least one bearing (4) has an inner ring (5) and an outer ring (6), wherein the housing element (2) has a reception (7) for the bearing (4). To improve the rotor dynamic behavior of a high speed machine the invention proposes that a ring element (8) is arranged between the outer circumference (9) of the outer ring (6) and the reception (7) of the housing element (2) and/or between the inner circumference of the inner ring (5) and the rotor element (3), wherein at least one cavity (10) is arranged in the inner of the ring element (8), wherein the cavity (10) is filled with a pressurized fluid (1 1) and wherein the cavity (10) has a fluidic connection (14) to the environment.
    • 本发明涉及一种包括壳体元件(2)和转子元件(3)的机器装置(1),其中转子元件(3)通过至少一个轴承(4)可旋转地支撑在壳体元件(2)中, ,其中所述至少一个轴承(4)具有内环(5)和外环(6),其中所述壳体元件(2)具有用于所述轴承(4)的接收(7)。 为了提高高速机的转子动态特性,本发明提出在外圈(6)的外圆周(9)和外壳元件(2)的接收部(7)之间布置环形元件(8) 和/或在内圈(5)的内圆周和转子元件(3)之间,其中至少一个空腔(10)布置在环形元件(8)的内部,其中空腔(10)是 填充有加压流体(11),并且其中所述空腔(10)具有到所述环境的流体连接(14)。
    • 2. 发明申请
    • MACHINE ARRANGEMENT
    • 机器安排
    • WO2014000799A1
    • 2014-01-03
    • PCT/EP2012/062539
    • 2012-06-28
    • AKTIEBOLAGET SKFWENSING, JeroenVAN DER MEI, NijsPETERS, Gilbert
    • WENSING, JeroenVAN DER MEI, NijsPETERS, Gilbert
    • F16C27/04F16C27/06
    • F16C27/04F16C19/06F16C27/045F16C27/066F16C2360/00F16C2360/42F16C2360/44
    • The invention relates to a machine arrangement (1) comprising a housing element (2) and a rotor element (3), wherein the rotor element (3) is rotatable supported in the housing element (2) by at least one bearing (4), wherein the at least one bearing (4) has an inner ring (5) and an outer ring (6), wherein the housing element (2) has a reception (7) for the bearing (4). To improve the rotor dynamic behavior of a high speed machine the invention proposes that a spring and/or damping element (8) is arranged between the outer circumference (9) of the outer ring (6) and the reception (7) of the housing element (2) and/or between the inner circumference of the inner ring (5) and the rotor element (3), wherein the spring and/or damping element (8) comprises a ring element (10), wherein a number of recesses (11) is machined in the ring element (10) which extend from the inner circumference (12) of the ring element (10) to the outer circumference (13) of the ring element (10) and which form reception pockets (14), wherein a spring element (15) is arranged in at least a number of reception pockets (14), wherein the spring element (15) is designed to exert a radial (r) spring force (F) between the bearing ring (5, 6) and the housing element (2) and/or the rotor element (3) in the mounted state of the machine arrangement (1).
    • 本发明涉及一种包括壳体元件(2)和转子元件(3)的机器装置(1),其中转子元件(3)通过至少一个轴承(4)可旋转地支撑在壳体元件(2)中, ,其中所述至少一个轴承(4)具有内环(5)和外环(6),其中所述壳体元件(2)具有用于所述轴承(4)的接收(7)。 为了提高高速机器的转子动态特性,本发明提出在外圈(6)的外周(9)和外壳(6)的接收件(7)之间布置有弹簧和/或阻尼元件(8) 元件(2)和/或在内圈(5)和转子元件(3)的内圆周之间,其中弹簧和/或阻尼元件(8)包括环形元件(10),其中多个凹部 (11)在环形元件(10)中被加工,其从环形元件(10)的内圆周(12)延伸到环形元件(10)的外圆周(13)并且形成接收袋(14) ,其中弹簧元件(15)布置在至少多个接收袋(14)中,其中所述弹簧元件(15)被设计成在所述轴承环(5, 在机器装置(1)的安装状态下,壳体元件(2)和/或转子元件(3)。
    • 3. 发明申请
    • MACHINE ARRANGEMENT
    • 机器安排
    • WO2014000797A1
    • 2014-01-03
    • PCT/EP2012/062533
    • 2012-06-28
    • AKTIEBOLAGET SKFPETERS, GilbertVAN DER MEI, NijsWENSING, Jeroen
    • PETERS, GilbertVAN DER MEI, NijsWENSING, Jeroen
    • F16C27/04F16C27/06
    • F16C27/04F16C27/045F16C27/066F16C2360/00F16C2360/42F16C2360/44
    • The invention relates to a machine arrangement (1) comprising a housing element (2) and a rotor element (3), wherein the rotor element (3) is rotatable supported in the housing element (2) by at least one bearing (4), wherein the at least one bearing (4) has an inner ring (5) and an outer ring (6), wherein the housing element (2) has a reception (7) for the bearing (4). To improve the rotor dynamic behavior of a high speed machine the invention proposes that a spring and/or damping element (8) is arranged between the outer circumference (9) of the outer ring (6) and the reception (7) of the housing element (2) and/or between the inner circumference of the inner ring (5) and the rotor element (3), wherein the spring and/or damping element (8) is a ring element with a general hollow-cylindrical base body (10), wherein at least one spring part (11) is arranged at the base body (10), wherein the spring part (11) is formed by the material of the ring element (8) and is formed by a section of the ring element (8) which is cut out of the ring element (8) is bend radially outwards or inwards from the hollow-cylindrical geometry of the base body (10).
    • 本发明涉及一种包括壳体元件(2)和转子元件(3)的机器装置(1),其中转子元件(3)通过至少一个轴承(4)可旋转地支撑在壳体元件(2)中, ,其中所述至少一个轴承(4)具有内环(5)和外环(6),其中所述壳体元件(2)具有用于所述轴承(4)的接收(7)。 为了提高高速机器的转子动态特性,本发明提出在外圈(6)的外周(9)和外壳(6)的接收件(7)之间布置有弹簧和/或阻尼元件(8) 元件(2)和/或在内圈(5)和转子元件(3)的内圆周之间,其中弹簧和/或阻尼元件(8)是具有一般中空圆柱形基体的环形元件 10),其中在所述基体(10)处布置有至少一个弹簧部分(11),其中所述弹簧部分(11)由所述环形元件(8)的材料形成并且由所述环的一部分形成 从环形元件(8)切出的元件(8)从基体(10)的中空圆柱形几何体径向向外或向内弯曲。
    • 4. 发明申请
    • MACHINE ARRANGEMENT
    • 机器安排
    • WO2014000796A1
    • 2014-01-03
    • PCT/EP2012/062532
    • 2012-06-28
    • AKTIEBOLAGET SKFPETERS, GilbertWENSING, JeroenVAN DER MEI, Nijs
    • PETERS, GilbertWENSING, JeroenVAN DER MEI, Nijs
    • F16C27/06
    • F16C27/066F16C2360/00F16C2360/42F16C2360/44
    • The invention relates to a machine arrangement (1) comprising a housing element (2) and a rotor element (3), wherein the rotor element (3) is rotatable supported in the housing element (2) by at least one bearing (4), wherein the rotor element (3) can rotate around an axis (a), wherein the at least one bearing (4) has an inner ring (5) and an outer ring (6), wherein one of the bearing rings (5, 6) is connected with the housing element (2) by means of an carrier element (7), wherein the carrier element (7) has a reception section (8) for fixing one of the bearing rings (5, 6) and wherein the carrier element (7) has a connection section (9) for fixing the carrier element (7) with the housing element (2). To improve the rotor dynamic behavior of a high speed machine the invention proposes that the carrier element (7) has a first part (10) which comprises the reception section (8) and has a second part (11) which comprises the connection section (9), wherein an elastic material (12) is arranged between the first and second part (10, 11), so that both parts (10, 11) have no direct contact with another.
    • 本发明涉及一种包括壳体元件(2)和转子元件(3)的机器装置(1),其中转子元件(3)通过至少一个轴承(4)可旋转地支撑在壳体元件(2)中, ,其中所述转子元件(3)可绕轴线(a)旋转,其中所述至少一个轴承(4)具有内环(5)和外环(6),其中所述轴承环(5, 6)通过载体元件(7)与壳体元件(2)连接,其中载体元件(7)具有用于固定其中一个轴承环(5,6)的接收部分(8),并且其中 承载元件(7)具有用于将承载元件(7)与壳体元件(2)固定的连接部分(9)。 为了提高高速机器的转子动态特性,本发明提出载体元件(7)具有包括接收部分(8)的第一部分(10),并具有包括连接部分(11)的第二部分(11) 如图9所示,其中弹性材料(12)布置在第一和第二部分(10,11)之间,使得两个部分(10,11)不与另一部分直接接触。
    • 5. 发明申请
    • BEARING ARRANGEMENT AND METHOD FOR ADJUSTING THE AXIAL PRE-LOAD IN IT
    • 轴承布置和调整轴承预载荷的方法
    • WO2014202373A1
    • 2014-12-24
    • PCT/EP2014/061356
    • 2014-06-02
    • AKTIEBOLAGET SKF
    • VISSERS, Cornelius Petrus AntoniusSCHRAMM, EdoS., RakeshPETERS, Gilbert
    • F16C19/18F16C33/58F16C33/64F16C25/06
    • F16C19/185F16C25/06F16C33/581F16C33/586F16C33/64F16C2220/40F16C2220/42F16D2003/22326
    • The invention relates to a bearing arrangement (1), comprising two roller bearings (2, 3) being axially distanced in an axial direction (a), wherein the bearing inner ring (4) for both roller bearings (2, 3) is made as a one-piece part, wherein the bearing inner ring (4) has two raceways (5, 6) for two rows of roller elements (7, 8) and wherein the bearing inner ring (4) has tracks (9) for the balls (10) of a Constant Velocity Joint (11) at a radial inner section. To provide a compact unit with few parts which can be effectively be adjusted to a desired pre-load the invention proposes that the bearing inner ring (4) has a section (12) extending along an axial distance (b) which is located between the two raceways (5, 6), wherein the section is equipped with means (13) for reducing the stiffness of the material of the bearing inner ring (4). Further- more, the invention relates to a method for adjusting the axial pre-load in such a bearing arrangement.
    • 本发明涉及一种轴承装置(1),其包括沿轴向方向(a)轴向间隔的两个滚柱轴承(2,3),其中制造用于两个滚子轴承(2,3)的轴承内圈(4) 作为一体式部件,其中轴承内圈(4)具有用于两排滚子元件(7,8)的两个滚道(5,6),并且其中轴承内圈(4)具有用于 恒定速度接头(11)的径向内部的球(10)。 为了提供可以有效地调节到期望的预载荷的几个部件的紧凑单元,本发明提出了轴承内圈(4)具有沿着轴向距离(b)延伸的部分(12),该部分位于 两个滚道(5,6),其中该部分装备有用于降低轴承内圈(4)的材料刚度的装置(13)。 此外,本发明还涉及一种在这种轴承装置中调节轴向预载荷的方法。
    • 8. 发明申请
    • METHOD FOR PRODUCING A CAGE OF A ROLLER BEARING
    • 用于生产滚子轴承的方法
    • WO2016001080A1
    • 2016-01-07
    • PCT/EP2015/064505
    • 2015-06-26
    • AKTIEBOLAGET SKF
    • KREBS, PhilippPETERS, GilbertZIMMERMAN, Gregory A.ZIEGLER, Sebastian
    • F16C33/38F16C33/46
    • B21D53/12F16C19/06F16C33/3806F16C33/385F16C33/3856F16C33/3887F16C2220/24F16C2326/43F16C2326/47G06F17/5018G06F17/5086
    • The invention relates to a method for producing a cage (1) of a roller bearing, wherein the cage comprises a base body with a plurality of pockets (2) for rolling elements. To obtain a lightweight but stable cage, the method comprises the following steps: a) Definition of a basis geometry of the cage, wherein the basis geometry comprises a radial outer (3) and/or inner surface for contacting or facing a bearing ring and a plurality of surfaces (5) of the pockets for contacting the rolling elements; b) Definition of at least a part of the radial outer and/or inner surfaces (6) as being unalterable surfaces; c) Calculation of the stress distribution in the cage when applying a defined stress force by means of a mathematical model; d) Definition of volume sections (8) of the cage in which the stress is below a defined threshold; e) Removal of at least a part of the volume sections defined according to above step d) from the basis geometry, taking into account the unalterable surfaces according to step b) and the surfaces of the pockets which are unalterable surfaces; f) Definition of the cage geometry with the removed volume sections; g) Manufacturing of the cage according to the geometry as defined according to step f) by means of a 3-D-printing process.
    • 本发明涉及一种用于制造滚子轴承的保持架(1)的方法,其中所述保持架包括具有用于滚动元件的多个凹穴(2)的基体。 为了获得轻便但稳定的保持架,该方法包括以下步骤:a)定义保持架的基础几何形状,其中基础几何形状包括用于接触或面对轴承环的径向外部(3)和/或内表面, 多个用于接触滚动元件的凹穴表面(5); b)将径向外表面和/或内表面(6)的至少一部分定义为不可改变的表面; c)通过数学模型应用定义的应力时,计算笼中的应力分布; d)定义压力低于定义阈值的笼子的体积部分(8); e)考虑到根据步骤b)的不可改变的表面和作为不可改变的表面的凹坑的表面,从基础几何图形去除根据上述步骤d)限定的体积部分的至少一部分; f)使用已移除的体积部分定义笼几何体; g)通过3-D打印方法根据根据步骤f)定义的几何形状制造保持架。