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    • 34. 发明专利
    • Force controlled rotary locking device
    • 强制控制旋转锁定装置
    • JP2004162919A
    • 2004-06-10
    • JP2003383127
    • 2003-10-07
    • Moog Incムーグ インコーポレイテッド
    • GITNES SETH EHOUSE WILLIAM HNAKASHIMA KENNETH KPOLCUCH ERIC A
    • B64C13/50B64C13/28F16D63/00F16H25/20
    • F16H25/2021B64C13/28Y10T74/18704
    • PROBLEM TO BE SOLVED: To prevent a shaft from continuously rotating in one angular direction in a force controlled rotary locking device to be arranged between a driving shaft and one or more blade surfaces such as a flap and a blade plate. SOLUTION: The force controlled rotary locking device 20 for the shaft 21 arranged to a housing so as to be capable of rotational movement and movement in the axial direction to the housing 22 includes a projected member 28 arranged to the shaft as a whole, and a claw 51 arranged to the housing. The claw can be moved at a first position and a second position to the housing. A cam 25 is mounted to the shaft. A driven lever 49 is mounted to a box body. Accordingly, when the shaft is displaced from a prescribed position to the axial direction, the claw is selectively moved between the first position and the second position. The shaft is displaced from a prescribed position to the axial direction. The claw is engaged with the projected member. As a result, the shaft is prevented from continuously rotating in one angular direction. COPYRIGHT: (C)2004,JPO
    • 要解决的问题:为了防止轴在力控制的旋转锁定装置中沿一个角度方向连续旋转以布置在驱动轴和一个或多个叶片表面(例如翼片和叶片板)之间。 解决方案:用于轴21的力控制的旋转锁定装置20,其布置成能够旋转运动并沿轴向方向移动到壳体22的壳体,包括布置成作为整体的轴的突出构件28 ,以及设置在壳体上的爪51。 爪可以在第一位置和第二位置移动到壳体。 凸轮25安装到轴上。 从动杆49安装在箱体上。 因此,当轴从规定位置向轴向移动时,爪选择性地在第一位置和第二位置之间移动。 轴从规定位置向轴向移位。 爪与突出构件接合。 结果,防止轴沿一个角度方向连续旋转。 版权所有(C)2004,JPO
    • 35. 发明专利
    • Combination type differential planetary gear assembly
    • 组合式差速行星齿轮总成
    • JP2004108582A
    • 2004-04-08
    • JP2003321455
    • 2003-09-12
    • Moog Incムーグ インコーポレイテッド
    • LARSON LOWELL V
    • F16H48/10F16H1/46F16H57/02
    • F16H1/46
    • PROBLEM TO BE SOLVED: To provide an improved combination type differential planetary gear assembly.
      SOLUTION: This combination type differential planetary gear assembly 50 includes a sun gear 52, a plurality of planetary gears 53 engaged with the sun gear, a plurality of first ring gears 54, and a plurality of second ring gears 55. The second ring gears respectively have the number of teeth different from that of the first ring gears. The first and second ring gears are alternately arranged in an axial stack. Each planetary gear has a gear tooth cross section along a length of the stack, where the gear teeth are engaged with the teeth of the first and second ring gears. The loads respectively transmitted between the first and second ring gears and the planetary gears act in the alternate directions along the length of the stack.
      COPYRIGHT: (C)2004,JPO
    • 要解决的问题:提供一种改进的组合型差速行星齿轮组件。 解决方案:该组合型差速行星齿轮组件50包括太阳轮52,与太阳轮啮合的多个行星齿轮53,多个第一环形齿轮54和多个第二环形齿轮55.第二 齿圈分别具有与第一环形齿轮不同的齿数。 第一和第二齿圈交替地布置在轴向堆叠中。 每个行星齿轮具有沿堆叠长度的齿轮齿横截面,其中齿轮齿与第一和第二环形齿轮的齿接合。 分别在第一和第二环形齿轮和行星齿轮之间传递的载荷沿着堆叠的长度在交替的方向上起作用。 版权所有(C)2004,JPO
    • 36. 发明专利
    • Propellant feeding device
    • 推进式送料装置
    • JP2003312599A
    • 2003-11-06
    • JP2003117634
    • 2003-03-18
    • Moog Incムーグ インコーポレイテッド
    • REINICKE ROBERT H
    • B64G1/26B64G1/40B65D88/62F02K9/50F02K9/60F02K9/80F17C1/00
    • B64G1/26B64G1/402F02K9/50F02K9/605
    • PROBLEM TO BE SOLVED: To provide an improved propulsion system with a low cost, simple structure, light weight and small size, and having a substantially constant center- of-gravity position while a propellant is consumed.
      SOLUTION: A propellant feeding device for a vehicle (11) having a main propulsion motor (12) and an attitude control system (13) containing a plurality of propellers (14A, 14B, 14C to 14F) is provided. This improved device comprises a pressure vessel (15), first and second movable walls (20, 21) disposed in the pressure vessel to be actuated dividing the interior space of the pressure vessel into three separated and sealed chambers (22, 23, 24) capable of supplying a fluid, a first fluid in one of the chambers (ex. first propellant of a bypropellant), a second fluid in the second of the chambers (ex. second propellant of the bypropellant), and a third fluid in the third of the chambers (ex. third propellant of the bypropellant). The third fluid is a volatile fluid having a liquid phase and a gaseous phase, and pressurized so that all the three chamber have pressures same as the vapor pressure of the third fluid.
      COPYRIGHT: (C)2004,JPO
    • 要解决的问题:提供一种具有低成本,简单结构,重量轻和体积小的改进的推进系统,并且在推进剂被消耗时具有基本上恒定的重心位置。 解决方案:提供一种具有主推进电机(12)和含有多个螺旋桨(14A,14B,14C至14F)的姿态控制系统(13)的车辆(11)的推进剂供给装置。 该改进的装置包括压力容器(15),设置在压力容器中的第一和第二可移动壁(20,21),以被致动将压力容器的内部空间分成三个分离和密封的腔室(22,23,24) 能够供应流体,第一流体在其中一个室中(例如由推进剂的第一推进剂),第二腔室中的第二流体(例如推进剂的第二推进剂)和第三流体 (例如推进剂的第三推进剂)。 第三流体是具有液相和气相的挥发性流体,并被加压,使得所有三个室具有与第三流体的蒸汽压力相同的压力。 版权所有(C)2004,JPO