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    • 2. 发明公开
    • HUBEINRICHTUNG
    • EP2046612A1
    • 2009-04-15
    • EP07801152.5
    • 2007-07-12
    • Haacon Hebetechnik GmbH
    • BIRKHOLZ, HolgerDÖLGER, WernerMILTENBERGER, RobertNATTERER, Ralf
    • B60S9/08
    • B60S9/08
    • The invention relates to a lifting device (10), in particular semitrailer support or the like, having a shaft tube (11) and a support tube (12) which can be moved with respect to the shaft tube, wherein a lifting gear mechanism (26) is arranged on the shaft tube and has a drive shaft arrangement (27) for connecting a drive device, and has an output shaft arrangement (28) for driving a lift spindle (20) which is arranged in the support tube and which acts on a pressure plate (18) which is arranged in the shaft tube, wherein the pressure plate is located above the lifting gear mechanism.
    • 本发明涉及一种具有轴管(11)和可相对于轴管移动的支撑管(12)的提升装置(10),特别是半挂车支撑件或类似物,其中提升齿轮机构 26)布置在所述轴管上并且具有用于连接驱动装置的驱动轴装置(27),并且具有用于驱动提升轴(20)的输出轴装置(28),所述提升轴设置在所述支撑管中, 在布置在轴管中的压力板(18)上,其中压力板位于升降齿轮机构的上方。
    • 3. 发明授权
    • HUBEINRICHTUNG
    • 起重
    • EP2046613B1
    • 2012-02-22
    • EP07801153.3
    • 2007-07-12
    • Haacon Hebetechnik GmbH
    • BIRKHOLZ, HolgerMILTENBERGER, RobertNATTERER, RalfTRUNK, Gerhard
    • B60S9/08
    • B60S9/04B60S9/08
    • The invention relates to a lifting device (10), in particular a seat pillar or the like, having a shank tube (11) and having a support tube (12) which is movable with respect to the shank tube, wherein a lifting gearing (26) is arranged on the shank tube, which lifting gearing (26) has a drive input shaft arrangement (27) for connecting a drive device and a drive output shaft arrangement (28) for driving a lifting spindle (20) which is arranged in the support tube, wherein the drive input shaft arrangement and the drive output shaft arrangement have in each case at least one large-diameter (70, 78) and one small-diameter gearwheel (62, 81) which can be placed in force-fitting engagement with one another in order to form different transmission ratios, wherein the drive input shaft arrangement has a hollow shaft (86), which is mounted in a gearing housing (68), and an axially movable shift shaft (85) which is arranged coaxially with respect to the hollow shaft and is mounted in the gearing housing, wherein the hollow shaft serves for the rotationally fixed arrangement of the large-diameter drive gearwheel (78) and the shift shaft serves for the rotationally fixed arrangement of the small-diameter drive gearwheel (pinion) (62), and the hollow shaft and the shift shaft are provided with engagement devices which can be placed in coupling engagement by means of axial movement in order to vary the transmission ratio.
    • 6. 发明公开
    • HUBEINRICHTUNG
    • EP2046613A1
    • 2009-04-15
    • EP07801153.3
    • 2007-07-12
    • Haacon Hebetechnik GmbH
    • BIRKHOLZ, HolgerMILTENBERGER, RobertNATTERER, RalfTRUNK, Gerhard
    • B60S9/08
    • B60S9/04B60S9/08
    • The invention relates to a lifting device (10), in particular a seat pillar or the like, having a shank tube (11) and having a support tube (12) which is movable with respect to the shank tube, wherein a lifting gearing (26) is arranged on the shank tube, which lifting gearing (26) has a drive input shaft arrangement (27) for connecting a drive device and a drive output shaft arrangement (28) for driving a lifting spindle (20) which is arranged in the support tube, wherein the drive input shaft arrangement and the drive output shaft arrangement have in each case at least one large-diameter (70, 78) and one small-diameter gearwheel (62, 81) which can be placed in force-fitting engagement with one another in order to form different transmission ratios, wherein the drive input shaft arrangement has a hollow shaft (86), which is mounted in a gearing housing (68), and an axially movable shift shaft (85) which is arranged coaxially with respect to the hollow shaft and is mounted in the gearing housing, wherein the hollow shaft serves for the rotationally fixed arrangement of the large-diameter drive gearwheel (78) and the shift shaft serves for the rotationally fixed arrangement of the small-diameter drive gearwheel (pinion) (62), and the hollow shaft and the shift shaft are provided with engagement devices which can be placed in coupling engagement by means of axial movement in order to vary the transmission ratio.
    • 本发明涉及一种提升装置(10),特别是座椅支柱或类似物,其具有柄管(11)并且具有可相对于柄管移动的支撑管(12),其中提升齿轮 (26)具有用于连接驱动装置和驱动输出轴装置(28)的驱动输入轴装置(27),所述驱动输出轴装置用于驱动提升主轴(20),所述提升主轴(20)布置在所述主轴 其中所述驱动输入轴装置和所述驱动输出轴装置分别具有至少一个大直径齿轮(70,78)和一个小直径齿轮(62,81),所述大直径齿轮能够以力配合 以便形成不同的传动比,其中,所述传动输入轴装置具有安装在传动装置壳体(68)中的空心轴(86)和可轴向移动的换档轴(85),所述换档轴(85)同轴地布置 相对于空心轴安装在齿轮箱中 其中中空轴用于大直径主动齿轮(78)的旋转固定布置,并且换档轴用于小直径主动齿轮(小齿轮)(62)的旋转固定布置,并且空心轴 轴和换挡轴设置有接合装置,该接合装置能够通过轴向移动而被设置成联接接合,以便改变传动比。
    • 9. 发明公开
    • HUBEINRICHTUNG
    • 起重
    • EP2046611A1
    • 2009-04-15
    • EP07785631.8
    • 2007-07-12
    • Haacon Hebetechnik GmbH
    • BIRKHOLZ, HolgerLAZARUS, KonradMILTENBERGER, RobertNATTERER, Ralf
    • B60S9/08
    • B60S9/08B66F3/08
    • The invention relates to a lifting device (10), in particular a seat pillar or the like, having a shank tube (11) and having a support tube (12) which is movable with respect to the shank tube, wherein a lifting gearing (26) is arranged on the shank tube, which lifting gearing (26) has a drive input shaft arrangement (27) for connecting a drive device and a drive output shaft arrangement (28) for driving a lifting spindle (20) which is arranged in the support tube, which lifting spindle (20) is supported with one end on a pressure plate (18) arranged in the shank tube and interacts with the moving end with a spindle nut (25) arranged in the support tube, wherein the spindle nut has a locking collar (90) with at least two locking devices (107, 108, 109, 110) which interact with locking latches (103, 104, 105, 106) which are formed on the tube wall of the support tube, in such a way that, with a coaxial alignment of the spindle nut with the support tube, the spindle nut can be inserted into the support tube in an assembly rotational angle position, and can be moved into a locking position, in which the locking devices pass into engagement with the locking latches, by means of rotation about a longitudinal axis (21) of the support tube.