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    • 1. 发明授权
    • Apparatus with a planetary gear set
    • 具有行星齿轮组的装置
    • US4531427A
    • 1985-07-30
    • US579446
    • 1984-02-13
    • Sven W. Nilsson
    • Sven W. Nilsson
    • B62D1/04B62D1/10B62D1/16B62D5/00B62D5/04B63H25/10F16H1/36F16H37/06
    • B62D5/008B62D1/163B63H25/10
    • The invention relates to an apparatus incorporating a planetary gear set with a shaft (7) connected to a planet wheel support (6), and a shaft (8) connected to a sun wheel (5), one of the shafts (8) being connected to a rotor in a device (9) for providing a torque. In order to be able to use the apparatus in a favorable manner in for example a servo assisted system with a steering wheel (10) and a steering member actuated by the steering wheel via a step-up gear, the stator part of the device (9) for providing a torque is connected to the other one of the shafts (7) in the planetary gear so that this shaft takes up the reactive torque which is established in the device during operation.
    • 本发明涉及一种结合行星齿轮组的装置,其具有连接到行星轮支撑件(6)的轴(7)和连接到太阳轮(5)的轴(8),其中一个轴(8)是 连接到用于提供扭矩的装置(9)中的转子。 为了能够以有利的方式使用装置,例如具有方向盘(10)的伺服辅助系统和由方向盘通过升降机驱动的转向构件,装置的定子部分( 与行星齿轮中的另一个轴(7)连接,用于提供扭矩的轴(9)使得该轴承受在操作期间在装置中建立的无功扭矩。
    • 2. 发明授权
    • Planetary gearing system
    • 行星传动系统
    • US4468985A
    • 1984-09-04
    • US381970
    • 1982-05-25
    • Sven W. Nilsson
    • Sven W. Nilsson
    • F16H1/28F16H1/46F16H3/66F16H13/08F16H57/02
    • F16H13/06F16H1/2809F16H1/46F16H57/02004
    • A planetary gearing system comprising a planet carrier and planet gear wheels and planet friction wheels supported on planet wheel shafts on said planet carrier, said planet gear wheels cooperating with a gear ring encircling them and a sun gear wheel, said planet friction wheel cooperating with a friction ring circumscribing them and with a sun friction wheel, a housing enclosing the planet gearing system, said friction ring or ring gear being radially movable relative to said housing and means for mounting said gear ring and/or friction ring 20 in said housing by means providing an adjustable friction force so that they rotate in the housing when subjected to a torque exceeding a torque determined by said friction force.
    • 一种行星齿轮系统,包括行星架和行星齿轮以及行星齿轮,所述行星齿轮支撑在所述行星架上的行星轮轴上,所述行星齿轮与环绕它们的齿圈和太阳齿轮配合,所述行星摩擦轮与 摩擦环围绕它们并且与太阳摩擦轮一起,包围行星齿轮传动系统的壳体,所述摩擦环或齿圈可相对于所述壳体径向移动,以及用于通过装置将所述齿轮环和/或摩擦环20安装在所述壳体中的装置 提供可调节的摩擦力,使得当受到超过由所述摩擦力确定的扭矩的扭矩时,它们在壳体中旋转。
    • 3. 发明授权
    • Gear
    • 齿轮
    • US4366726A
    • 1983-01-04
    • US183306
    • 1980-09-02
    • Sven W. Nilsson
    • Sven W. Nilsson
    • F16H1/32F16H1/28
    • F16H1/321
    • A gear comprises two co-operating gear wheels (1,2), one (2) of which, in operation, performing a conical pendulating movement (nutation). One gear wheel (2) is non-rotationally connected to an adjacent element (8) by resilient elongated members (9), preferably extending mainly in the circumferential direction of the gear wheel between two supports (10,11) arranged diametrically on the gear wheel and two supports (12,13) arranged diametrically on the adjacent element and offset about 90.degree. in relation to the first mentioned supports. The resilient members keep the gear wheel (2) non-rotationally in the adjacent element and permits said pendulating movement of the gear wheel.
    • 齿轮包括两个配合的齿轮(1,2),其中一个(2)在操作中执行锥形摆动运动(章动)。 一个齿轮(2)通过弹性细长构件(9)不可旋转地连接到相邻的元件(8),优选地在齿轮的圆周方向上主要在两个支承件(10,11)之间延伸,两个支撑件直径设置在齿轮 轮和两个支撑件(12,13),其沿直径布置在相邻元件上并相对于第一个支撑件偏移大约90度。 弹性构件将齿轮(2)非旋转地保持在相邻元件中并允许齿轮的所述摆动运动。
    • 4. 发明授权
    • Device for transforming a rotational movement into a linear movement
    • 用于将旋转运动转换成线性运动的装置
    • US4222619A
    • 1980-09-16
    • US15043
    • 1979-02-26
    • Sven W. Nilsson
    • Sven W. Nilsson
    • F16H19/02F16H21/16F16C19/04
    • F16H19/025Y10T74/18056
    • A device for transforming a rotational movement into a linear movement. The device comprises a retainer and a shaft extending through the retainer which are mounted for movement relative to one another. A plurality of annular bearing members, in the illustrated embodiment, comprising ball bearings, circumscribes the shaft and engages the same at axially spaced locations. The bearings are mounted for tilting movement relative to the shaft. The outer ring of each of the bearing assemblies is supportd in a housing and each housing has an external surface section defined by a circular arc having a center on the rotational axis of the housing which slidingly engages internal walls of the retainer of complementary form.
    • 用于将旋转运动转换为线性运动的装置。 该装置包括保持器和延伸穿过保持器的轴,其被安装成相对于彼此移动。 在所示实施例中,多个环形轴承构件包括球轴承,外接轴并且在轴向间隔开的位置处与轴接合。 轴承安装成相对于轴倾斜运动。 每个轴承组件的外环支撑在壳体中,并且每个壳体具有由圆弧限定的外表面部分,该圆弧具有在壳体的旋转轴线上的中心,滑动地接合互补形式的保持器的内壁。
    • 5. 发明授权
    • Mechanism for transferring a rotary motion into an axial motion
    • 将旋转运动转移到轴向运动的机构
    • US4141255A
    • 1979-02-27
    • US782561
    • 1977-03-29
    • Sven W. Nilsson
    • Sven W. Nilsson
    • F16H19/02F16H21/16
    • F16H19/025Y10T74/18056Y10T74/19712
    • A mechanism for transferring a rotary motion into an axial motion. The assembly includes a shaft having a smooth, cylindrical envelope surface, a retainer enclosing the shaft and rotatable relative the shaft. A plurality of bearing housings with bearing seats inclined towards the shaft are arranged in the retainer. Bearings having outer and inner race rings are arranged in the bearing seats. The bore diameter of the inner race rings, which are arranged to enclose the shaft, are larger than the diameter of the shaft. The bearing seats are designed completely to enclose the outer race rings of the bearings. The retainer has a recess having opposing sidewalls defining guide surfaces. The bearing housings are slidable in and guided by the sidewalls of the recess for displacement substantially perpendicularly to the shaft. The bearing housings are subjected to a force in the direction of displacement so as to urge the inner race rings of the bearings against the envelope surface of the shaft.
    • 用于将旋转运动转换成轴向运动的机构。 组件包括具有平滑圆柱形包络面的轴,包围轴的保持器并且可相对于轴旋转。 具有向轴倾斜的轴承座的多个轴承座布置在保持器中。 具有外圈和内圈的轴承布置在轴承座中。 设置为包围轴的内座圈的孔径大于轴的直径。 轴承座完全设计成可以包围轴承的外圈圈。 保持器具有凹部,凹部具有限定引导表面的相对的侧壁。 轴承座可滑动并且由凹槽的侧壁引导,基本垂直于轴移动。 轴承座受到位移方向的力的作用,以将轴承的内圈推压到轴的包络面上。