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    • 4. 发明授权
    • Wheelset aligning technique for wheelset truing machinery and wheelset
aligning device
    • 用于轮对修整机械和轮对准装置的轮对准技术
    • US5664469A
    • 1997-09-09
    • US300046
    • 1994-09-02
    • Hans J. NaumannReinhard RobottaGunter SchroterVolker Thomas
    • Hans J. NaumannReinhard RobottaGunter SchroterVolker Thomas
    • B23B5/28B23B5/32
    • B23B5/28Y10T82/10Y10T82/18
    • A technique for aligning a wheelset using a wheelset truing machine is disclosed. Using the technique, the wheelset may be aligned by roughly aligning the wheelset truing machine, placing each wheel of the wheelset on at least one roller, determining the distance of tread points on each wheel on the rollers relative to the center of revolution of each wheel by forming measurements and calculations, and coinciding the center of revolution of each wheel with the corresponding setpoint of the machine center. The measurement is taken of the periphery and of the concentricity error and a distance of the tread points determined by the triangulation principle. The technique includes a wheelset aligning device having a locating fixture for locating the wheelset, a measuring device including a-peripheral measuring instrument and a concentricity error measuring instrument, at least two rollers disposed to be swiveled in a x-y plane and to be traversed in a direction perpendicular to the x-y plane on the wheel side of the wheelset to evaluate a respective wheel measurement in the x-y plane by interacting with the wheel thus allowing for coincidence between the respective center of revolution of the wheel and the respective setpoint of the machine center.
    • 公开了一种使用轮对修整机对准轮对的技术。 使用该技术,可以通过大致对准轮对修整机,将轮对的每个轮放置在至少一个辊上来确定轮对上的轮对,从而确定滚子上每个轮上的相对于每个轮的旋转中心的距离 通过形成测量和计算,并将每个车轮的转速中心与机器中心的相应设定点重合。 测量周边和同心度误差以及由三角测量原理确定的踏面距离。 该技术包括具有用于定位轮对的定位夹具的轮对准装置,包括外围测量仪器和同心度误差测量仪器的测量装置,至少两个辊子,其设置成在xy平面中旋转并且以 方向垂直于车轮侧面上的xy平面,以通过与车轮相互作用来评估xy平面中的相应车轮测量,从而允许车轮的相应旋转中心与机器中心的相应设定点之间的一致。
    • 6. 发明申请
    • Deep rolling machine for crankshafts
    • 曲轴深轧机
    • US20080066513A1
    • 2008-03-20
    • US11522104
    • 2006-09-15
    • Hans J. Naumann
    • Hans J. Naumann
    • B21D15/00
    • B24B39/04Y10T29/17
    • The invention regards a deep rolling machine (2) for crankshafts (5) with several deep rolling units (3) in a scissor-type configuration that are attached to the deep rolling machine (2) in the direction of the axis of rotation (4) of the crankshaft (5) with respective lateral distances (6) one besides another in a way that they can swivel thanks to the fact that some deep rolling devices (3) are intended for the deep rolling of main bearing journals (14) and other deep rolling units (3) are intended for the deep rolling of the pin bearing journals of the crankshaft (5) and that the deep rolling units (3) carry at the outer ends of their two scissor-type arms respectively one deep roller head (11) and a supporting roller head (9) that, together, form a deep rolling tool (3) where the deep rolling tool (10) along the scissor-type arms has a distance from the fastening point of the deep rolling unit (3) to the deep rolling machine (2) that is long when compared to the ratio between the width (7) of the scissor-type arms and their length. At least one of the deep rolling units (3) intended for the deep rolling of the main bearing journals (14) or of the pin bearing journals features a device (8) that enters into contact with the crankshaft (5) when the deep rolling unit (3) is in its working position, and that stabilises the deep rolling unit (3) in the direction of the axis of rotation (4) of the crankshaft (5).
    • 本发明涉及一种用于曲轴(5)的深轧机(2),其具有剪切型结构的多个深轧单元(3),该组合件沿旋转轴线方向(4)附接到深轧机(2) ),其中相应的横向距离(6)具有相对于另一个的横向距离(6),以使得它们可以旋转,这是因为一些深度滚动装置(3)用于主轴承轴颈(14)和 其他深轧单元(3)用于曲轴(5)的轴承轴颈的深度滚动,并且深滚动单元(3)分别在其两个剪刀式臂的外端承载一个深辊头 (11)和支承辊头(9),其一起形成深轧机(3),所述深轧机(10)沿着所述剪刀式臂具有距所述深轧单元的紧固点的距离( 3)长时间的深轧机(2) 与剪刀型臂的宽度(7)及其长度之比。 用于主轴承轴颈(14)或销轴承轴颈的深轧的至少一个深轧单元(3)具有当深轧时与曲轴(5)接触的装置(8) 单元(3)处于其工作位置,并且使得深轧单元(3)沿曲轴(5)的旋转轴线(4)的方向稳定。
    • 7. 发明申请
    • METHOD FOR REPROFILING WHEELSETS ON UNDERFLOOR WHEEL LATHES
    • 在轮下车轮上轮转车轮的方法
    • US20140144301A1
    • 2014-05-29
    • US13989259
    • 2010-11-26
    • Hans J. NaumannTheo NijssenRobert MertensHans-Joachim Reiche
    • Hans J. NaumannTheo NijssenRobert MertensHans-Joachim Reiche
    • B23B5/32
    • B23B5/32B23B5/04B23B5/28B23B2215/36Y10T82/10Y10T82/18Y10T82/185
    • The invention relates to a method for reprofiling wheelsets (1) rotatably mounted in axle bearing housings (6) on rail vehicles on underfloor wheelset lathes (12; 14) equipped with machining tools, a machine control for the machining tools, drive rollers (15), axial guide rollers (17), measuring rollers (13) as well as clamping devices (21; 22) to engage the axle bearing housings (6). The method is characterised in that the wheelset (1) is lifted off the rail using the drive rollers (15), weighing it in the process, the axle bearing housings (6) are fixed between the drive rollers (15) and the clamping devices (21; 22), an axial guide roller (17) is adjusted to touch the inner side (16) of each of the two wheels (3; 4) of the wheelset (1) and fixed in this position, an additional force (20) is applied to the drive rollers (15), that the actual diameter (8) and the wear profile of each wheel (3; 4) is determined by means of a measuring roller (13), that the smaller actual diameter is determined based on the measurement results and, it having been modified by a specified machining allowance, entered as the nominal diameter (11) into the machine control for the machining tools.
    • 本发明涉及一种用于重新安装在轨道车辆上的车轴轴承座(6)中的轮对(1)的方法,所述车轮轴承壳体(6)装备有加工工具的地板车轮车轮(12; 14),用于加工工具的机床控制装置 ),轴向导辊(17),测量辊(13)以及夹紧装置(21; 22)以接合轴承壳体(6)。 该方法的特征在于,使用驱动辊(15)将轮对(1)从轨道上提起,在该过程中对其进行称重,轴承座(6)固定在驱动辊(15)和夹紧装置 (21; 22),轴向引导辊(17)被调节以接触轮对(1)的两个轮子(3; 4)中的每一个的内侧(16)并固定在该位置,附加的力 20)被施加到驱动辊(15)上,通过测量辊(13)确定每个车轮(3; 4)的实际直径(8)和磨损轮廓,确定较小的实际直径 基于测量结果,并且已经通过指定的加工余量修改,作为公称直径(11)输入到加工工具的机器控制中。
    • 8. 发明授权
    • Wheelset sensing system
    • 车轮传感系统
    • US5936737A
    • 1999-08-10
    • US76283
    • 1998-05-12
    • Hans J. Naumann
    • Hans J. Naumann
    • F02K9/50F02K9/72G01B11/24G01B11/245
    • F02K9/50F02K9/72G01B11/24G01B11/245
    • A process for measuring the wheel profiles of wheels of wheelsets in which the wheelsets are moved past a series of a least twenty-six separate sensors while being rotated and moved at specified speeds. The wheelsets are impinged with a multiplicity of laser beams whose reflections are measured by the sensors, thereby indicating various wheel profile properties. In one embodiment, the wheelsets are rotated at a speed of less than 75 revolutions per minute while being moved at a speed of less than 6 miles per hour. In another embodiment, the wheelsets are rotated at a speed of greater than 400 revolutions per minute while being moved at a speed of greater than 45 miles per hour. In both embodiments, the wheelsets are moved past the sensors in a period of less than about 20 seconds.
    • 一种用于测量轮对车轮轮廓的过程,其中轮对通过一系列至少二十六个单独的传感器,同时以特定速度旋转和移动。 轮对着多个激光束,其反射由传感器测量,从而指示各种轮廓特性。 在一个实施例中,轮轴以小于75转/分钟的速度旋转,同时以小于6英里每小时的速度移动。 在另一个实施例中,轮毂以大于每分钟400转的速度旋转,同时以大于45英里/小时的速度移动。 在两个实施例中,轮对在小于约20秒的时间内移动经过传感器。
    • 10. 发明授权
    • Method for reprofiling wheelsets on underfloor wheel lathes
    • 在地板车轮上重新布置轮对的方法
    • US09446449B2
    • 2016-09-20
    • US13989259
    • 2010-11-26
    • Hans J. NaumannTheo NijssenRobert MertensHans-Joachim Reiche
    • Hans J. NaumannTheo NijssenRobert MertensHans-Joachim Reiche
    • B23B5/32B23B5/28B23B5/04
    • B23B5/32B23B5/04B23B5/28B23B2215/36Y10T82/10Y10T82/18Y10T82/185
    • The invention relates to a method for reprofiling wheelsets (1) rotatably mounted in axle bearing housings (6) on rail vehicles on underfloor wheelset lathes (12; 14) equipped with machining tools, a machine control for the machining tools, drive rollers (15), axial guide rollers (17), measuring rollers (13) as well as clamping devices (21; 22) to engage the axle bearing housings (6). The method is characterised in that the wheelset (1) is lifted off the rail using the drive rollers (15), weighing it in the process, the axle bearing housings (6) are fixed between the drive rollers (15) and the clamping devices (21; 22), an axial guide roller (17) is adjusted to touch the inner side (16) of each of the two wheels (3; 4) of the wheelset (1) and fixed in this position, an additional force (20) is applied to the drive rollers (15), that the actual diameter (8) and the wear profile of each wheel (3; 4) is determined by means of a measuring roller (13), that the smaller actual diameter is determined based on the measurement results and, it having been modified by a specified machining allowance, entered as the nominal diameter (11) into the machine control for the machining tools.
    • 本发明涉及一种用于重新安装在轨道车辆的车轴轴承座(6)上的轮对(1)的方法,所述车轮轴承壳体(6)装备有加工工具,用于加工工具的机床控制装置,驱动辊(15) ),轴向导辊(17),测量辊(13)以及夹紧装置(21; 22)以接合轴承壳体(6)。 该方法的特征在于,使用驱动辊(15)将轮对(1)从轨道上提起,在该过程中对其进行称重,轴承座(6)固定在驱动辊(15)和夹紧装置 (21; 22),轴向引导辊(17)被调节以接触轮对(1)的两个轮子(3; 4)中的每一个的内侧(16)并固定在该位置,附加的力 20)被施加到驱动辊(15)上,通过测量辊(13)确定每个车轮(3; 4)的实际直径(8)和磨损轮廓,确定较小的实际直径 基于测量结果,并且已经通过指定的加工余量修改,作为公称直径(11)输入到加工工具的机器控制中。