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    • 3. 发明授权
    • Device for transmitting a force, in particular a carrying handle
    • 用于传递力的装置,特别是携带手柄
    • US08844256B2
    • 2014-09-30
    • US13821305
    • 2011-09-01
    • Michael FrankPeter van Haβelt
    • Michael FrankPeter van Haβelt
    • F16G13/06B66C1/10B66C1/12F16G15/12
    • B66C1/10B66C1/125F16G15/12
    • A device for transmitting a force, in particular for carrying a load, including two curved arch segments which lie opposite each other and which are connected to each other by two straight limbs that are equally long is provided. The curved arch segments and the straight limbs are produced continuously from one material at the transition points of the arch segments and limbs. A force application and exertion occurs via two bolt-like structural elements which have an outer contour that is adapted to the corresponding curved arch segments and which are to be arranged within the two arch segments in order to transmit the force. The transition of the curvature at the transition points from the limbs to the arch segments and along the respective arch segments is constant.
    • 提供用于传递力的装置,特别是用于承载负载,包括两个彼此相对并且彼此相同的两个弯曲的弓形段,所述弧形弓形段通过两个相等长度的直线连接。 弯曲的弓形段和直的四肢在弓形段和四肢的过渡点从一种材料连续生产。 通过两个螺栓状结构元件发生力施加和作用,所述两个螺栓状结构元件具有适于相应弯曲拱形段的外轮廓,并且将被布置在两个拱形段内以便传递力。 在从四肢到拱形段和沿着相应的拱形段的过渡点处的曲率的转变是恒定的。
    • 4. 发明授权
    • Electric machine and method for determining the axial position of bearings for a rotor of the machine
    • 用于确定机器转子的轴承的轴向位置的电机和方法
    • US07936101B2
    • 2011-05-03
    • US12163344
    • 2008-06-27
    • Michael FrankPeter van Haβelt
    • Michael FrankPeter van Haβelt
    • H02K9/00
    • H02K9/193H02K55/04Y02E40/625Y10T29/49004
    • An electric machine contains a rotor which contains a first longitudinal section at the ambient air temperature and a second longitudinal section cooled at least partially to cryogenic temperature, a coolant inlet pipe extending into the second longitudinal section, wherein the inlet pipe is set at a distance from the rotor by a radial gap, wherein the inlet pipe in the first longitudinal section is mounted by at least two bearings, wherein the bearings are distributed on axial positions in such a way that upon action of a maximum radial force on the inlet pipe the pipe has a maximum deflection which is smaller than the radial gap. In a method for determining the axial positions, various batches of potential locations are chosen for the axial positions of the bearings, according to potential locations which has a minimum gap greater than zero.
    • 一种电动机包括转子,该转子包含在环境空气温度下的第一纵向部分和至少部分冷却至低温的第二纵向部分,延伸到第二纵向部分的冷却剂入口管,其中入口管道设置在距离 其中所述第一纵向部分中的入口管由至少两个轴承安装,其中所述轴承分布在轴向位置上,使得在所述入口管上的最大径向力作用下, 管具有小于径向间隙的最大偏转。 在用于确定轴向位置的方法中,根据具有大于零的最小间隙的潜在位置,为轴承的轴向位置选择各种批次的潜在位置。
    • 6. 发明授权
    • Electric machine and method for determining the axial position of bearings for a rotor of the machine
    • 用于确定机器转子的轴承的轴向位置的电机和方法
    • US08294313B2
    • 2012-10-23
    • US13097354
    • 2011-04-29
    • Michael FrankPeter van Haβelt
    • Michael FrankPeter van Haβelt
    • H02K5/16H02K7/08
    • H02K9/193H02K55/04Y02E40/625Y10T29/49004
    • An electric machine contains a rotor which contains a first longitudinal section at the ambient air temperature and a second longitudinal section cooled at least partially to cryogenic temperature, a coolant inlet pipe extending into the second longitudinal section, wherein the inlet pipe is set at a distance from the rotor by a radial gap, wherein the inlet pipe in the first longitudinal section is mounted by at least two bearings, wherein the bearings are distributed on axial positions in such a way that upon action of a maximum radial force on the inlet pipe the pipe has a maximum deflection which is smaller than the radial gap. In a method for determining the axial positions, various batches of potential locations are chosen for the axial positions of the bearings, according to potential locations which has a minimum gap greater than zero.
    • 一种电动机包括转子,该转子包含在环境空气温度下的第一纵向部分和至少部分冷却至低温的第二纵向部分,延伸到第二纵向部分的冷却剂入口管,其中入口管道设置在距离 其中所述第一纵向部分中的入口管由至少两个轴承安装,其中所述轴承分布在轴向位置上,使得在所述入口管上的最大径向力作用下, 管具有小于径向间隙的最大偏转。 在用于确定轴向位置的方法中,根据具有大于零的最小间隙的潜在位置,为轴承的轴向位置选择各种批次的潜在位置。