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    • 1. 发明授权
    • Actuator with a centrifugal brake
    • 带离心制动器的执行机构
    • US06688438B2
    • 2004-02-10
    • US10117454
    • 2002-04-05
    • Johannes Bucher
    • Johannes Bucher
    • B60T872
    • H02K7/102F16D2127/002
    • An operating mechanism for operating an actuating member is provided with an electric motor, a resetting spring and a centrifugal brake, wherein the actuating member can be operated in a first direction of movement by the electric motor activated by means of a control or regulating device, and in a second direction of movement by means of the resetting spring. In accordance with the invention, a brake body of the centrifugal brake is arranged on the rotor of the electric motor. The centrifugal brake arranged directly on the rotor can be configured such that a braking effect is generated only when the actuating member is operated by the resetting spring. When operated by the electric motor being switched on, on the other hand, the centrifugal brake has no braking effect. By means of the centrifugal brake, the speeds that can be reached are limited to the extent that no spurious vibrations and noises occur.
    • 用于操作致动构件的操作机构设置有电动马达,复位弹簧和离心式制动器,其中致动构件可以通过借助于控制或调节装置启动的电动机在第一运动方向上操作, 并且通过复位弹簧在第二移动方向上移动。 根据本发明,离心式制动器的制动体布置在电动机的转子上。 直接布置在转子上的离心式制动器可以被构造成使得只有当致动构件由复位弹簧操作时才产生制动效果。 另一方面,当电动机接通时,离心制动器没有制动效果。 通过离心式制动器,可以达到的速度被限制在不产生寄生振动和噪声的程度上。
    • 2. 发明授权
    • Gear mechanism apparatus
    • 齿轮机构装置
    • US08322244B2
    • 2012-12-04
    • US11389292
    • 2006-03-24
    • Johannes Bucher
    • Johannes Bucher
    • F16H1/24F16H55/02
    • F16K31/047F16H25/2454F16H2025/2463F16H2035/005Y10T74/18696Y10T74/18704Y10T74/19702
    • A gear mechanism arrangement includes an axial bearing apparatus and a shaft mounted rotatably in the axial bearing apparatus. The shaft is fixedly coupled to a first mechanical coupling point and a second mechanical coupling point, the first mechanical coupling point configured to engage a gear stage and the second mechanical configured to engage a movement converter. The movement converter is configured to convert between a rotational movement and a longitudinal movement of the gear mechanism arrangement. The axial bearing apparatus is configured to transmit a force which acts axially on the shaft to a stationary part of the gear mechanism apparatus arrangement. The axial bearing apparatus is further configured such that active bearing friction is dependent on a rotational direction of the rotational movement and differs for each of first and second rotational directions of the rotational movement.
    • 齿轮机构装置包括轴向轴承装置和可旋转地安装在轴向轴承装置中的轴。 所述轴固定地联接到第一机械联接点和第二机械联接点,所述第一机械联接点被配置为接合齿轮级,并且所述第二机构构造成接合运动转换器。 运动转换器构造成在齿轮机构装置的旋转运动和纵向运动之间进行转换。 轴向轴承装置构造成将轴上作用在轴上的力传递到齿轮机构装置装置的固定部分。 轴向轴承装置进一步构造成使得主动轴承摩擦取决于旋转运动的旋转方向,并且对于旋转运动的第一和第二旋转方向中的每一个而言是不同的。
    • 3. 发明申请
    • Gear mechanism apparatus
    • 齿轮机构装置
    • US20060219038A1
    • 2006-10-05
    • US11389292
    • 2006-03-24
    • Johannes Bucher
    • Johannes Bucher
    • F16H1/24
    • F16K31/047F16H25/2454F16H2025/2463F16H2035/005Y10T74/18696Y10T74/18704Y10T74/19702
    • A gear mechanism arrangement includes an axial bearing apparatus and a shaft mounted rotatably in the axial bearing apparatus. The shaft is fixedly coupled to a first mechanical coupling point and a second mechanical coupling point, the first mechanical coupling point configured to engage a gear stage and the second mechanical configured to engage a movement converter. The movement converter is configured to convert between a rotational movement and a longitudinal movement of the gear mechanism arrangement. The axial bearing apparatus is configured to transmit a force which acts axially on the shaft to a stationary part of the gear mechanism apparatus arrangement. The axial bearing apparatus is further configured such that active bearing friction is dependent on a rotational direction of the rotational movement and differs for each of first and second rotational directions of the rotational movement.
    • 齿轮机构装置包括轴向轴承装置和可旋转地安装在轴向轴承装置中的轴。 所述轴固定地联接到第一机械联接点和第二机械联接点,所述第一机械联接点被配置为接合齿轮级,并且所述第二机构构造成接合运动转换器。 运动转换器构造成在齿轮机构装置的旋转运动和纵向运动之间进行转换。 轴向轴承装置构造成将轴上作用在轴上的力传递到齿轮机构装置装置的固定部分。 轴向轴承装置进一步构造成使得主动轴承摩擦取决于旋转运动的旋转方向,并且对于旋转运动的第一和第二旋转方向中的每一个而言是不同的。