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    • 2. 发明授权
    • Steer unit for steer-by-wire
    • 转向单元用于转向线
    • US07207411B2
    • 2007-04-24
    • US10484771
    • 2002-07-25
    • Johannes Adrianus Maria DuitsAndreas Clemens Van Der HamJohannes Haaye Van Der KampKlemens Schmidt
    • Johannes Adrianus Maria DuitsAndreas Clemens Van Der HamJohannes Haaye Van Der KampKlemens Schmidt
    • B62D5/04
    • B66F9/07568B62D5/005
    • Steer unit for steer-by-wire comprising angle sensing means (12) for detecting the angular position of a steering wheel (11), processing means (10) connected to the angle sensing means (12) and connectable to a wheel position sensor (22), the wheel position sensor (22) being arranged for providing an output signal representing the position of steered wheels (20) of a vehicle. The processing means (10) are connectable to a steering actuator (21) mechanically coupled to the steered wheels (20), the processing means (10) being arranged for driving the steering actuator (21) dependent on the angular position of the steering wheel (11). The steer unit further comprises friction means (14) for providing a friction force on the steering wheel (11), the friction means (14) being connected to the processing means (10), and the processing means (10) being arranged for driving the friction means (14) in dependence of the wheel position sensor output signal.
    • 用于转向线的转向装置包括用于检测方向盘(11)的角位置的角度检测装置(12),连接到角度感测装置(12)并可连接到车轮位置传感器 车轮位置传感器(22)布置成提供表示车辆的转向轮(20)的位置的输出信号。 处理装置(10)可连接到机械地联接到转向轮(20)的转向致动器(21),所述处理装置(10)设置成用于驱动转向致动器(21),这取决于方向盘的角位置 (11)。 转向单元还包括用于在方向盘(11)上提供摩擦力的摩擦装置(14),摩擦装置(14)连接到处理装置(10),并且处理装置(10)被布置成用于驱动 所述摩擦装置(14)根据所述车轮位置传感器输出信号。
    • 3. 发明申请
    • SENSOR BEARING ASSEMBLY
    • 传感器轴承总成
    • US20150107380A1
    • 2015-04-23
    • US14368142
    • 2012-12-21
    • Klemens SchmidtJan Doornenbal
    • Klemens SchmidtJan Doornenbal
    • G01D11/02
    • G01D11/02F16C19/52G01D5/145G01P1/026G01P3/443
    • A sensor bearing assembly having a rolling element bearing and at least one sensor is provided. The rolling element bearing includes an inner ring, an outer ring, and rolling elements arranged between the inner ring and the outer ring. The at least one sensor is arranged to convert one or more physical magnitudes to electrical sensor signals. The sensor is attached directly or indirectly to the rolling element bearing. The assembly further comprises a converter unit. The converter unit is arranged to convert the electrical sensor signals to output signals, the output signals are different to in type, form and/or amplitude in relation to the electrical sensor signals. The converter unit is also disposed in a separate enclosure that does not share the same enclosure with the sensor.
    • 提供具有滚动元件轴承和至少一个传感器的传感器轴承组件。 滚动体轴承包括内圈,外圈和布置在内圈和外圈之间的滚动元件。 所述至少一个传感器被布置成将一个或多个物理量值转换成电传感器信号。 传感器直接或间接安装在滚动体轴承上。 组件还包括转换器单元。 转换器单元布置成将电传感器信号转换为输出信号,输出信号与电传感器信号的类型,形式和/或振幅不同。 转换器单元还设置在不与传感器共享相同外壳的单独外壳中。
    • 7. 发明授权
    • Sensor bearing assembly
    • 传感器轴承总成
    • US09506780B2
    • 2016-11-29
    • US14368142
    • 2012-12-21
    • Klemens SchmidtJan Doornenbal
    • Klemens SchmidtJan Doornenbal
    • G01D5/00G01P1/00G01P3/00G01L5/00F16C19/00G01D11/02G01P1/02G01P3/44F16C19/52G01D5/14
    • G01D11/02F16C19/52G01D5/145G01P1/026G01P3/443
    • A sensor bearing assembly having a rolling element bearing and at least one sensor is provided. The rolling element bearing includes an inner ring, an outer ring, and rolling elements arranged between the inner ring and the outer ring. The at least one sensor is arranged to convert one or more physical magnitudes to electrical sensor signals. The sensor is attached directly or indirectly to the rolling element bearing. The assembly further comprises a converter unit. The converter unit is arranged to convert the electrical sensor signals to output signals, the output signals are different to in type, form and/or amplitude in relation to the electrical sensor signals. The converter unit is also disposed in a separate enclosure that does not share the same enclosure with the sensor.
    • 提供具有滚动元件轴承和至少一个传感器的传感器轴承组件。 滚动体轴承包括内圈,外圈和布置在内圈和外圈之间的滚动元件。 所述至少一个传感器被布置成将一个或多个物理量值转换成电传感器信号。 传感器直接或间接安装在滚动体轴承上。 组件还包括转换器单元。 转换器单元布置成将电传感器信号转换为输出信号,输出信号与电传感器信号的类型,形式和/或振幅不同。 转换器单元还设置在不与传感器共享相同外壳的单独外壳中。
    • 8. 发明授权
    • Ring for a roller
    • 环为滚轮
    • US06379051B1
    • 2002-04-30
    • US09660183
    • 2000-09-12
    • Werner HornHans-Jürgen LiesegangKlemens Schmidt
    • Werner HornHans-Jürgen LiesegangKlemens Schmidt
    • F16C3364
    • F16C33/58B66F9/08F16C13/006F16C2300/02
    • An annular ring used as either the outer race or the bearing race in a roller includes at least one annular recess in which is disposed an annular reinforcement body. The reinforcement body subjects the region of the annular ring radially inside the reinforcement body to mechanical stresses. The side of the reinforcement body oriented toward this region is materially joined or bonded to the ring. The annular reinforcement body preferably possesses an internal radius that is smaller than the internal radius of the recess and the reinforcement body press-fitted into the recess. According to one embodiment, the reinforcement body is poured in liquid form into the recess. The shrinkage of the reinforcement body that occurs during the cooling phase after solidification produces stresses as well. The manner in which the reinforcement body is introduced into the recess of the ring is preferably selected so that the radially inwardly oriented surface of the reinforcement body is joined materially to the outer ring so that the stresses generated in the reinforcement body, for instance as a consequence of the press fit, are transmitted to the outer ring. The material joining can be done by forging, welding, and friction welding, and possibly also by adhesive bonding if the stresses are not overly high.
    • 在滚子中用作外圈或轴承座的环形圈包括至少一个环形凹部,其中设置有环形增强体。 加强体使加强体内径向的环形区域受到机械应力。 朝向该区域的加强体的侧面物理地接合或结合到环上。 环形增强体优选地具有小于凹部的内半径的内半径,并且加压体压配合到凹部中。 根据一个实施例,加强体以液体形式注入到凹部中。 在凝固后的冷却阶段发生的增强体的收缩也产生应力。 加强体被引入环的凹部中的方式优选地被选择成使得增强体的径向向内取向的表面与外圈材料接合,使得在加强体中产生的应力例如为 压配合的结果被传递到外圈。 材料接合可以通过锻造,焊接和摩擦焊接,也可以通过粘合剂粘合来实现,如果应力不会过高。