NO-BACK BRAKE FUNCTIONALITY MONITOR
    1.
    发明申请
    NO-BACK BRAKE FUNCTIONALITY MONITOR 审中-公开
    无背制动功能监视器

    公开(公告)号:US20160369877A1

    公开(公告)日:2016-12-22

    申请号:US14741512

    申请日:2015-06-17

    Applicant: Moog Inc.

    CPC classification number: F16H25/2454 B64C13/341 F16H2035/005 G01L3/1464

    Abstract: A no-back device usable in a Horizontal Stabilizer Trim Actuator (HSTA) includes a ratchet and pawl brake mechanism in which a pivot pin supporting the pawl includes a sensor for directly measuring torque developed by the brake mechanism. A signal generated by the sensor may be evaluated to determine the apparent operational integrity of the no-back device.

    Abstract translation: 可用于水平稳定器修剪致动器(HSTA)的无背装置包括棘爪和棘爪制动机构,其中支撑棘爪的枢轴销包括用于直接测量由制动机构产生的扭矩的传感器。 可以评估由传感器产生的信号以确定无背装置的视在操作完整性。

    Dynamic brake
    2.
    发明授权
    Dynamic brake 有权
    动态制动

    公开(公告)号:US09051981B2

    公开(公告)日:2015-06-09

    申请号:US13781796

    申请日:2013-03-01

    Applicant: Moog Inc.

    Inventor: Seth Gitnes

    Abstract: A power-off brake for stopping a rotating shaft comprises a solenoid including a coil and armature, an opposing plate axially spaced from the armature, and a ball carrier rotor between the armature and opposing plate. The ball carrier rotor rotates with the shaft and carries spherical balls in recesses angularly space about the shaft. The armature and opposing plate have respective braking surfaces. In one embodiment, at least one braking surface is ramped to urge the plurality of balls radially outward against an internal surface of a surrounding outer race as the armature is forced toward the opposing plate under spring loading when current to the solenoid coil is shut off. In another embodiment, the braking surfaces are not ramped, such that the balls are merely clamped between the braking surfaces upon solenoid deactivation. Increased rolling friction stops rotation of the ball carrier rotor and the shaft without problematic wear.

    Abstract translation: 用于停止旋转轴的断电制动器包括螺线管,其包括线圈和电枢,与电枢轴向间隔开的相对板和在电枢和相对板之间的球载体转子。 球载体转子与轴一起旋转,并且在围绕轴的角度空间中的凹槽中承载球形球。 电枢和相对板具有相应的制动表面。 在一个实施例中,当电流到螺线管线圈的电流被切断时,当电枢在弹簧加载下被迫朝向相对的板时,至少一个制动表面倾斜以将多个滚珠径向向外压靠在周围的外圈的内表面上。 在另一个实施例中,制动表面不会斜坡,使得当螺线管停用时,球仅被夹紧在制动表面之间。 增加的滚动摩擦阻止了球载体转子和轴的旋转,而没有磨损。

    Torque limiter responsive to output torque
    3.
    发明授权
    Torque limiter responsive to output torque 有权
    扭矩限制器响应输出扭矩

    公开(公告)号:US09470272B2

    公开(公告)日:2016-10-18

    申请号:US13937638

    申请日:2013-07-09

    Applicant: Moog Inc.

    Inventor: Seth Gitnes

    CPC classification number: F16D7/00 B64C13/28 F16D7/024 F16H35/10 Y02T50/44

    Abstract: A torque limiter limits transmission of torque between an input shaft an output shaft. The torque limiter may be incorporated in a geared rotary actuator for actuating an aircraft control surface. The torque limiter is responsive to output torque associated with the output shaft instead of input torque associated with the input shaft. The torque limiter includes a structural ground and a gear assembly for transmitting rotational motion of the input shaft to the output shaft. The gear assembly includes a reference gear coupled to the structural ground such that movement of the reference gear relative to the structural ground is dependent upon an output torque at the output shaft. The reference gear is stationary relative to the structural ground when the output torque is below an output torque limit, and the reference gear moves relative the structural ground when the output torque exceeds the output torque limit.

    Abstract translation: 扭矩限制器限制输入轴与输出轴之间的转矩传递。 扭矩限制器可以结合在用于致动飞行器控制表面的齿轮旋转致动器中。 转矩限制器响应于与输出轴相关联的输出转矩,而不是与输入轴相关联的输入转矩。 扭矩限制器包括结构地面和用于将输入轴的旋转运动传递到输出轴的齿轮组件。 齿轮组件包括联接到结构地面的参考齿轮,使得参考齿轮相对于结构地面的移动取决于输出轴处的输出扭矩。 当输出转矩低于输出转矩极限时,参考齿轮相对于结构接地固定,当输出扭矩超过输出转矩极限时,参考齿轮相对于结构接地移动。

    LOW FRICTION TRAVEL LIMITING STOP MODULE FOR A ROTATIONAL DRIVE SYSTEM
    4.
    发明申请
    LOW FRICTION TRAVEL LIMITING STOP MODULE FOR A ROTATIONAL DRIVE SYSTEM 有权
    用于旋转驱动系统的低摩擦限位停止模块

    公开(公告)号:US20160201775A1

    公开(公告)日:2016-07-14

    申请号:US14993121

    申请日:2016-01-12

    Applicant: Moog Inc.

    Inventor: Seth Gitnes

    CPC classification number: F16H25/2015 F16H25/2454

    Abstract: A stop module halts rotation of a shaft of a rotational drive system when an axial stroke limit is reached without the use of frictional brake plates. The module has a fixed nut and a pawl carrier coaxially mounted on the shaft for axial travel along the shaft and rotation with the shaft. The pawl carrier includes a screw portion mated with the nut such that rotation of the pawl carrier with the shaft causes the pawl carrier to travel axially along the shaft. A pawl member is pivotally coupled to the pawl carrier, and a stop element is fixed at an axial limit location. The pawl carrier is axially displaceable from a non-limit position wherein the pawl member is clear of the stop element during rotation to a limit position wherein the pawl member is interfered with by the stop element during rotation to stop rotation of the shaft.

    Abstract translation: 在不使用摩擦制动板的情况下,当达到轴向冲程极限时,停止模块停止旋转驱动系统的轴的旋转。 模块具有固定的螺母和同轴地安装在轴上的棘爪架,用于沿着轴轴向移动并与轴一起旋转。 棘爪托架包括与螺母配合的螺钉部分,使得棘爪托架与轴的旋转导致棘爪托架沿着轴线轴向移动。 棘爪构件枢转地联接到棘爪托架,并且止动元件固定在轴向极限位置处。 棘爪托架可以从非极限位置轴向移动,其中棘爪构件在旋转期间离开止动元件到极限位置,其中棘爪构件在旋转期间被止动元件干扰以停止轴的旋转。

    Low friction travel limiting stop module for a rotational drive system

    公开(公告)号:US09670999B2

    公开(公告)日:2017-06-06

    申请号:US14993121

    申请日:2016-01-12

    Applicant: Moog Inc.

    Inventor: Seth Gitnes

    CPC classification number: F16H25/2015 F16H25/2454

    Abstract: A stop module halts rotation of a shaft of a rotational drive system when an axial stroke limit is reached without the use of frictional brake plates. The module has a fixed nut and a pawl carrier coaxially mounted on the shaft for axial travel along the shaft and rotation with the shaft. The pawl carrier includes a screw portion mated with the nut such that rotation of the pawl carrier with the shaft causes the pawl carrier to travel axially along the shaft. A pawl member is pivotally coupled to the pawl carrier, and a stop element is fixed at an axial limit location. The pawl carrier is axially displaceable from a non-limit position wherein the pawl member is clear of the stop element during rotation to a limit position wherein the pawl member is interfered with by the stop element during rotation to stop rotation of the shaft.

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