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    • 22. 发明公开
    • GEAR DEVICE, PREFERABLY MOTOR DEVICE
    • 传输装置及方法,用于产生旋转运动
    • EP2265843A1
    • 2010-12-29
    • EP08735274.6
    • 2008-04-17
    • Erke Erke Arastirmalari Ve Muhendislik A.S.
    • OZTÜRK, Mustafa, Naci
    • F16H33/10
    • F16H33/10Y10T74/1254
    • The invention concerns a gear device, preferably motor device, for providing rotation about at least one output axis and a method for providing rotation. A body (2) is mounted for a rotation about first (4), second (11), and third (16) axes. The first axis (4) is oriented with respect to the second axis (11) at an inclination angle. The second axis (11) and/or the third axis (16) constitute the at least one output axis of device. The rotation of the body (2) about the third axis (16) gives rise to a change in the inclination angle. A ram (15) applies a torque (21) to the body (2) about the third axis (16) in a sense of increasing inclination angle when the first axis (4) is at a selected inclination angle with respect to the second axis (11) which is greater than 0° and less than 90°. The rotation of the body (2) about the third axis (16) in a sense of decreasing inclination angle is limited such that the inclination angle of the first axis (4) with respect to the second axis (11) remains greater than 0 degrees and less than 90 degrees. The body (2) is rotated about the first axis (4) at an angular velocity greater than a critical angular velocity so that a constant or a decreasing inclination angle is reached.
    • 23. 发明公开
    • GYRO PRECESSIONAL AUTOMATIC TRANSMISSION
    • GYRO PRECESSIONAL自动变速器
    • EP1828637A1
    • 2007-09-05
    • EP05800964.8
    • 2005-11-07
    • Han, Gi HyokHan, Gi HunLim, Sung Chol
    • Han, Gi HyokHan, Gi HunLim, Sung Chol
    • F16H33/10
    • F16H33/10Y10T74/1218
    • An automatic transmission consisting of a planetary gear unit comprising in combination an input shaft (1 ), an input gear (2), a key planet gear (3), an output gear (4), an output shaft (5), a bearing planet gear (6), a rotating frame (7), a rotor (8), wherein the planet shaft is the rotor (8) having a certain inertia moment, so its revolving is equivalent to the precession of a gyroscope due to an external force wherein the precession-production external force is the load acting on the output shaft (5). Hence the revolutionary speed of the rotor (8) varies depending upon changes in the output load and the same holds true for the rotational speed of the output shaft (5), which makes the speed ratio spontaneously vary with changes in the outpot load. Accordingly, the transmission of the present invention operates at speed ratios spontaneously varying with changes in load, without any controlling operation.
    • 一种由行星齿轮单元组成的自动变速器,所述行星齿轮单元包括输入轴(1),输入齿轮(2),键行星齿轮(3),输出齿轮(4),输出轴(5),轴承 行星齿轮(6),旋转架(7),转子(8),其中行星轴是具有一定惯性力矩的转子(8),所以它的旋转相当于由于外部的陀螺仪的进动 其中进动生产外力是作用在输出轴(5)上的负载。 因此,转子(8)的革命速度取决于输出负载的变化而变化,并且输出轴(5)的转速也是如此,这使得速度比自发地随着外部负载的变化而变化。 因此,本发明的变速器以随着负载变化而自发变化的速比运行,而没有任何控制操作。
    • 25. 发明专利
    • Gear device, preferably motor device
    • JP2011517753A
    • 2011-06-16
    • JP2011504320
    • 2008-04-17
    • エルケ・エルケ・アラスティルマラリ・ヴェ・ムヘンディスリク・エイ・エス
    • オズターク,ムスタファ・ナジ
    • F16H33/10
    • F16H33/10Y10T74/1254
    • 【課題】本発明は、少なくとも1つの出力軸の周りの回転を与えるための、歯車デバイス、好ましくはモーターデバイス、および回転を与えるための方法に関する。
      【解決手段】本体部(2)は、第1の軸(4)、第2の軸(11)、および第3の軸(16)の周りで回転するように取り付けられる。 第1の軸(4)は、傾斜角度で第2の軸(11)に関して配向される。 第2の軸(11)及び/又は第3の軸(16)は、デバイスの少なくとも1つの出力軸を構成する。 本体部(2)が第3の軸(16)の周りで回転すると傾斜角度の変化が生じる。 ラム(15)は、第1の軸(4)が第2の軸(11)に関して0°より大きく90°より小さい選択された傾斜角度をなすときに、傾斜角度の増大の方向に第3の軸(16)の周りでトルク(21)を本体部(2)に印加する。 第2の軸(11)に関する第1の軸(4)の傾斜角度が0度より大きく90度より小さいままであるように、傾斜角度の減少の方向の第3の軸(16)の周りの本体部(2)の回転が制限される。 本体部(2)は、一定のまたは減少する傾斜角度に達するように、臨界角速度より大きな角速度で第1の軸(4)の周りに回転する。
      【選択図】図1
    • 27. 发明授权
    • GYROSCOPIC TORQUE CONVERTER
    • 回转扭矩转换器
    • EP2118520B1
    • 2011-11-02
    • EP07848750.1
    • 2007-12-27
    • Harrison, Duncan James
    • Harrison, Duncan James
    • F16H33/10
    • F16H33/10Y10T74/1218Y10T74/1225Y10T74/1236
    • A torque converter comprises a stationary mount, input and output shafts, a primary frame (301) supported by the stationary mount for rotation about a primary axis and coupled for rotation with one of the input and output shafts (302,303), a secondary frame (50) supported by the primary frame (301) for rotation about a secondary axis perpendicular to the primary axis and coupled for rotation with the other of the input and output shafts, a plurality of flywheels (10) supported by the secondary frame (50) with their spin axes disposed at an angle to one another in the same plane, or in mutually parallel planes, and torsional springs acting between the flywheels and the secondary frame to cause the flywheels to oscillate in use, so as to effect a gyroscopic torque coupling between the primary and secondary frames. An excitation system (110) is mounted on the primary frame (301) for applying to each flywheel (50) a periodic torque that varies with the angular velocity of the secondary frame and the angular position of the axis of the flywheel relative to the secondary axis, so as to cause each flywheel to oscillate at its natural frequency in response to relative rotation between the primary and secondary frames.
    • 28. 发明公开
    • GYROSCOPIC TORQUE CONVERTER
    • 回转扭矩转换器
    • EP2118520A2
    • 2009-11-18
    • EP07848750.1
    • 2007-12-27
    • Harrison, Duncan James
    • Harrison, Duncan James
    • F16H33/10
    • F16H33/10Y10T74/1218Y10T74/1225Y10T74/1236
    • A torque converter comprises a stationary mount, input and output shafts, a primary frame (301) supported by the stationary mount for rotation about a primary axis and coupled for rotation with one of the input and output shafts (302,303), a secondary frame (50) supported by the primary frame (301) for rotation about a secondary axis perpendicular to the primary axis and coupled for rotation with the other of the input and output shafts, a plurality of flywheels (10) supported by the secondary frame (50) with their spin axes disposed at an angle to one another in the same plane, or in mutually parallel planes, and torsional springs acting between the flywheels and the secondary frame to cause the flywheels to oscillate in use, so as to effect a gyroscopic torque coupling between the primary and secondary frames. An excitation system (110) is mounted on the primary frame (301) for applying to each flywheel (50) a periodic torque that varies with the angular velocity of the secondary frame and the angular position of the axis of the flywheel relative to the secondary axis, so as to cause each flywheel to oscillate at its natural frequency in response to relative rotation between the primary and secondary frames.