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    • 3. 再颁专利
    • Spinning rotor for open-end spinning machines
    • 旋转转子用于开放式纺纱机
    • USRE40759E1
    • 2009-06-23
    • US10383207
    • 2003-03-06
    • Heinz-Georg WassenhovenHans GreckschBert SchlömerBrigitte RiedeElisabeth Klaczynski
    • Heinz-Georg WassenhovenHans GreckschBert SchlömerBrigitte RiedeElisabeth Klaczynski
    • D01H4/00
    • D01H4/10
    • A spinning rotor for use at high speeds in open-end spinning machines has a rotor cup having an annular wall portion defining a rotor opening, a bottom wall portion merging with the annular wall portion, and a mounting hub extending exteriorly from the bottom wall portion. A rotor shaft is affixed to the mounting hub coaxially with the rotor cup. The merger of the bottom and annular wall portions of the rotor cup defines a maximum exterior diameter of the rotor and an interior rotor groove. The annular wall portion, the bottom wall portion and the mounting hub are of different cross-sectional thicknesses with the cross-sectional thickness of the bottom wall portion increasing from the rotor groove to the mounting hub. The wall thickness is less than 1.2 mm in the area of the maximum exterior diameter of the rotor cup (2) and the rotor cup has an aerodynamic exterior contour free of edges for deterring turbulent boundary layer air flow thereabout and an interior contour for promoting fiber spinning into a yarn.
    • 在开放式纺纱机中以高速使用的旋转转子具有转子杯,该转子杯具有限定转子开口的环形壁部分,与环形壁部分合并的底壁部分,以及从底壁部分向外延伸的安装毂 。 转子轴与转子杯同轴地固定到安装毂上。 转子杯的底部和环形壁部分的合并限定了转子和内部转子槽的最大外径。 环形壁部分,底壁部分和安装轮毂具有不同的横截面厚度,其中底壁部分的横截面厚度从转子槽增加到安装毂。 在转子杯(2)的最大外径的面积上,壁厚小于1.2mm,并且转子杯具有无边缘的空气动力学外部轮廓,用于阻止其周围的湍流边界层气流和用于促进纤维的内部轮廓 纺纱成纱。
    • 5. 发明授权
    • Spinning rotor for open-end spinning machines
    • 旋转转子用于开放式纺纱机
    • US06195976B1
    • 2001-03-06
    • US09521369
    • 2000-03-08
    • Heinz-Georg WassenhovenHans GreckschBert SchlömerBrigitte RiedeElisabeth Klaczynski
    • Heinz-Georg WassenhovenHans GreckschBert SchlömerBrigitte RiedeElisabeth Klaczynski
    • D01H400
    • D01H4/10
    • A spinning rotor for use at high speeds in open-end spinning machines has a rotor cup having an annular wall portion defining a rotor opening, a bottom wall portion merging with the annular wall portion, and a mounting hub extending exteriorly from the bottom wall portion. A rotor shaft is affixed to the mounting hub coaxially with the rotor cup. The merger of the bottom and annular wall portions of the rotor cup defines a maximum exterior diameter of the rotor and an interior rotor groove. The annular wall portion, the bottom wall portion and the mounting hub are of different cross-sectional thicknesses with the cross-sectional thickness of the bottom wall portion increasing from the rotor groove to the mounting hub. The wall thickness is less than 1.2 mm in the area of the maximum exterior diameter of the rotor cup (2) and the rotor cup has an aerodynamic exterior contour free of edges for deterring turbulent boundary layer air flow thereabout and an interior contour for promoting fiber spinning into a yarn.
    • 在开放式纺纱机中以高速使用的旋转转子具有转子杯,该转子杯具有限定转子开口的环形壁部分,与环形壁部分合并的底壁部分,以及从底壁部分向外延伸的安装毂 。 转子轴与转子杯同轴地固定到安装毂上。 转子杯的底部和环形壁部分的合并限定了转子和内部转子槽的最大外径。 环形壁部分,底壁部分和安装轮毂具有不同的横截面厚度,底壁部分的横截面厚度从转子槽增加到安装毂。 在转子杯(2)的最大外径的面积上,壁厚小于1.2mm,并且转子杯具有无边缘的空气动力学外部轮廓,用于阻止其周围的湍流边界层气流和用于促进纤维的内部轮廓 纺纱成纱。
    • 7. 再颁专利
    • Open-end spinning frame
    • 开口纺纱机
    • USRE42383E1
    • 2011-05-24
    • US10682853
    • 2003-10-09
    • Heinz-Georg WassenhovenClaus-Dieter Landolt
    • Heinz-Georg WassenhovenClaus-Dieter Landolt
    • D01H4/00
    • F16C39/063D01H4/12F16C32/0419F16C2340/18
    • An open-end spinning frame (1) having a spinning rotor (3), whose rotor shaft (4) is supported, free of axial thrust, in the bearing wedge of a support disk bearing arrangement (5) and is fixed in place by means of a magnetic axial bearing (18). The axial bearing (18) has a stationary magnetic bearing component (27) fixed on the bearing housing (26), and a rotating magnetic bearing component (44) arranged at the end of the rotor shaft and having at least two annular shoulders (46) defined by recesses (47) in the rotor shaft (4). The sharpness of the annular shoulders (46) is reduced in the area between their outer circumference (58) and the adjoining radial faces (50) of each annular shoulder, e.g., via curved or beveled surfaces in such area, and the base surfaces (49) of the recesses (47) are each connected via rounded sections (51) with the radial faces (50) of the adjoining annular shoulders (46).
    • 一种具有旋转转子(3)的开口纺纱机架(1),其转子轴(4)被支承在支承盘轴承装置(5)的轴承楔形件中,无轴向推力,并通过 磁轴向轴承(18)的装置。 所述轴向轴承(18)具有固定在所述轴承壳体(26)上的固定磁性轴承部件(27)和设置在所述转子轴端部并具有至少两个环形肩部(46)的旋转磁性轴承部件(44) )由转子轴(4)中的凹部(47)限定。 环形肩部(46)的清晰度在它们的外周(58)和每个环形肩部的相邻径向面(50)之间的区域中减小,例如通过这种区域中的弯曲或斜面以及基部表面 各个凹部(47)的每一个(49)分别通过圆形部分(51)与邻接的环形肩部(46)的径向面(50)连接。
    • 9. 发明申请
    • Spinning Rotor
    • 旋转转子
    • US20090084081A1
    • 2009-04-02
    • US11920221
    • 2006-04-11
    • Heinz-Georg Wassenhoven
    • Heinz-Georg Wassenhoven
    • D01H4/10
    • D01H4/10
    • Spinning rotor (1) for an open end rotor spinning machine comprising a rotor shaft (2), a rotor cup (3), which has an opening (4), an inner chamber (5), a rotor groove (6), a conically widening slide wall (7) extending from the opening (4) to the rotor groove (6) and a rotor base (9) arranged opposing the opening (4) and designed with a bore (8), through which the rotor shaft (2) extends at least partially. The rotor shaft (2) is connected by means of a connection element (10) to the rotor cup (3) and the rotor shaft (2) and rotor cup (3) comprise a common rotational axis (13). The rotor shaft (2) and the rotor cup (3) have connection means (11, 12), which are at least partially surrounded by the connection element (10) configured as a cast part, so a positive connection of the rotor shaft (2) to the rotor cup (3) can be achieved.
    • 一种用于开式转杯纺纱机的旋转转子(1),其包括转子轴(2),具有开口(4)的转子杯(3),内室(5),转子槽(6)), 将从开口(4)延伸到转子槽(6)的滑动壁(7)的锥形加宽和与开口(4)相对设置并设计有孔(8)的转子底座(9),转子轴 2)至少部分延伸。 转子轴(2)通过连接元件(10)连接到转子杯(3),转子轴(2)和转子杯(3)包括公共旋转轴(13)。 转子轴(2)和转子杯(3)具有连接装置(11,12),所述连接装置至少部分地被构造为铸件的连接元件(10)包围,因此转子轴 2)到转子杯(3)可以实现。