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    • 81. 发明公开
    • 기어 장치
    • 齿轮装置优先电机装置
    • KR1020110004842A
    • 2011-01-14
    • KR1020107020617
    • 2008-04-17
    • 에스아이엠 네덜란드 비.브이.
    • 오즈툴크,무스타파,나시
    • F16H33/10F16H33/08
    • F16H33/10Y10T74/1254
    • 본 발명은 적어도 하나의 출력 축을 중심으로 회전을 제공하기 위한, 모터 장치가 바람직한, 기어 장치 및 회전을 제공하기 위한 방법에 관한 것이다. 본체(2)는 제1(4), 제2(11) 및 제3 축(16)을 중심으로 회전하도록 제공된다. 제1 축(4)은 제2 축(11)에 대해 경사각으로 배향된다. 제2 축(11) 및/또는 제3 축(16)은 상기 장치의 적어도 하나의 출력 축을 구성한다. 제3 축(16)을 중심으로 한 본체(2)의 회전에 의해 경사각의 변화가 발생한다. 제1 축(4)이 제2 축(11)에 대해 0도보다 크고 90도보다 작은 선택된 경사각으로 있을 때 경사각이 증가하는 형태로 램(15)이 제3 축(16)을 중심으로 제2 축(11)에 토크(21)를 인가한다. 제1 축(4)의 제2 축(11)에 대한 경사각이 0도보다 크고 90도보다 작게 유지되도록 경사각이 감소하는 형태로의 제3 축(16)을 중심으로 한 본체(2)의 회전은 제한된다. 본체(2)는 일정 또는 감소하는 경사각이 도달되도록 임계 각속도보다 큰 각속도로 제1 축(4)을 중심으로 회전된다.
    • 82. 发明授权
    • 쟈이로 세차 자동변속기
    • 쟈이로세차자동변속기
    • KR100874816B1
    • 2008-12-19
    • KR1020077012766
    • 2005-11-07
    • 사이데리스 제팬 컴퍼니 리미티드
    • 한,기혁한,기훈임,성철
    • 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。
    • 84. 发明申请
    • APPARATUS AND METHOD FOR A HIGH SPEED ROTATION-TO-ROTATION OSCILLATION CONVERTER FOR SURGICAL USE
    • 用于手术用途的高速旋转 - 旋转振荡转换器的装置和方法
    • WO2007047070A3
    • 2009-04-30
    • PCT/US2006038146
    • 2006-09-29
    • KIESTER P DOUGLAS
    • KIESTER P DOUGLAS
    • F16H33/10
    • A61B17/1624Y10T74/1804
    • A converter for use in a high speed rotationally oscillating surgical burring device comprises an output shaft, and a rotationally oscillating secondary drive rotor coupled to the output shaft. The secondary drive rotor is arranged and configured with a size and mass to minimize its angular momentum. A unidirectionally rotating primary drive rotor is provided. A linearly reciprocating transmission converts unidirectional rotation to bidirectional rotational oscillation coupling the primary and secondary drive rotors. The transmission is arranged and configured with a size and mass to minimize its linear momentum. An input shaft is coupled to the rotating primary drive rotor to which a unidirectional rotational force is applied.
    • 用于高速旋转摆动手术翻转装置的转换器包括输出轴和联接到输出轴的旋转振动次级驱动转子。 次级驱动转子被布置和配置成具有尺寸和质量以最小化其角动量。 提供了单向旋转的主驱动转子。 线性往复传动器将单向旋转转换成耦合到主驱动转子和次驱动转子的双向旋转振荡。 传动装置被布置和配置为具有尺寸和质量以使其线性动量最小化。 输入轴联接到施加单向旋转力的旋转主驱动转子。
    • 85. 发明申请
    • GYROSCOPIC TORQUE CONVERTER
    • WO2008084195A3
    • 2008-07-17
    • PCT/GB2007/050790
    • 2007-12-27
    • AZEDA LIMITEDHARRISON, Duncan, James
    • HARRISON, Duncan, James
    • F16H33/10
    • 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.
    • 86. 发明申请
    • CONTINUOUSLY VARIABLE TRANSMISSION
    • 连续可变传输
    • WO2005119097A1
    • 2005-12-15
    • PCT/NZ2005/000111
    • 2005-06-03
    • JEGATHEESON, Muthuvetpillai
    • JEGATHEESON, Muthuvetpillai
    • F16H33/10
    • F16H33/10
    • A transmission has a fixed housing 103, a rotatable or reciprocable input member, a torque shaft 109, and a rotatable linkage arrangement. A gyroscopic rotor mounted on the linkage arrangement has a spin axis which is cyclically angularly deflected to generate gyroscopic reaction forces which are applied to the torque shaft as positive and negative torque. A first one-way clutch 131a and a second one-way clutch of opposite sense are operatively connected to the torque shaft 109. An output 134 is selectively or permanently operatively connected to the first one-way clutch 131a. The transmission has a forward operating configuration in which the output 134 is driven by the input member in one direction and a reverse operating configuration in which the output 134 is driven by the input member in the opposte direction. The transmission is preferably capable of engine braking.
    • 变速器具有固定壳体103,可旋转或可往复运动的输入构件,扭矩轴109和可旋转连杆装置。 安装在联动装置上的陀螺转子具有循环角度偏转的旋转轴,以产生作为正转矩和负转矩施加到扭矩轴的陀螺反作用力。 第一单向离合器131a和相反方向的第二单向离合器可操作地连接到扭矩轴109.输出端134选择性地或永久性地连接到第一单向离合器131a。 变速器具有前进操作构造,其中输出134由输入构件沿一个方向驱动,反向操作构造,其中输出134由对方方向上的输入构件驱动。 传动装置最好能发动机制动。
    • 87. 发明申请
    • CONTINUOUSLY VARIABLE TRANSMISSION
    • 连续可变传输
    • WO1993017261A1
    • 1993-09-02
    • PCT/NZ1992000004
    • 1992-12-17
    • JEGATHEESON, Muthuvetpillai
    • F16H33/10
    • F16H33/10
    • A continuously variable transmission comprising an input shaft (1), an output shaft (8), a rotatably mounted main frame (2), a sub-frame (5) rotatably mounted within the main frame (2) substantially perpendicularly to the rotational axis of the main frame (2), and a mass distribution (4) mounted within the sub-frame (5) movable about an axis lying in a plane substantially perpendicular to the rotational axis of the sub-frame (5), wherein the main frame (2) is driven by the input shaft (1) and the output shaft (8) is connected, by way of a right angled gear train, to the sub-frame (5) rotational axis. Coupling between the input shaft (1) and output shaft (8) is achieved using the variable coupling torque generated by an inertial reaction from the oscillating mass distribution (4). The coupling torque fluctuates are utilised to generate coupling energy which is withdrawn from the transmission in a manner allowing the torque fluctuations to be synchronized with the sub-frame (5) rotation to achieve a net coupling advantage.
    • 一种无级变速器,包括输入轴(1),输出轴(8),可旋转地安装的主框架(2),可旋转地安装在主框架(2)内的基本垂直于旋转轴线的副框架 以及安装在所述子框架(5)内的质量分布(4),所述质量分布(4)围绕位于基本上垂直于所述子框架(5)的旋转轴线的平面中的轴线移动,其中所述主框架 框架(2)由输入轴(1)驱动,输出轴(8)通过直角齿轮系连接到子框架(5)旋转轴线。 使用由振荡质量分布(4)的惯性反应产生的可变耦合扭矩实现输入轴(1)和输出轴(8)之间的耦合。 耦合扭矩波动用于产生耦合能量,其以允许扭矩波动与子框架(5)旋转同步的方式从变速器中取出以实现网络耦合优点。
    • 88. 发明授权
    • Wave gear device and flexible externally toothed gear
    • 波齿轮装置和柔性外齿齿轮
    • US09163710B2
    • 2015-10-20
    • US13812090
    • 2012-05-31
    • Satoru Kanai
    • Satoru Kanai
    • F16H33/10F16H35/00F16H49/00
    • F16H35/00F16H49/001Y10T74/19
    • In a hollow wave gear device, a rigid internally toothed gear and a wave generator are disposed adjacent along a center axis line so as to enclose a cylindrical barrel part of a flexible externally toothed gear from the outside. A pushed cylindrical portion adjacent to an external-tooth-formed cylindrical portion of the cylindrical barrel part is pushed from the outside and made to flex into an ellipsoidal shape by the wave generator disposed on the outside thereof, whereby external teeth partially mesh with internal teeth of the rigid internally toothed gear. The inside diameter dimension of a hollow part can be the inside diameter of the cylindrical barrel part of the flexible externally toothed gear, and a hollow wave gear device can be achieved which is formed with a hollow part having a large inside diameter.
    • 在中空波齿轮装置中,刚性内齿轮和波发生器沿着中心轴线相邻设置,以便从外部包围柔性外齿齿轮的圆柱形筒体部分。 与圆柱形筒部的外齿形圆筒部相邻的被推压的圆筒部从外部被推出并通过设置在其外侧的波发生部弯曲成椭圆形,由此外齿与内齿部分地啮合 的刚性内齿齿轮。 中空部的内径尺寸可以是柔性外齿轮的圆筒部的内径,可以实现形成有内径大的中空部的中空波轮装置。
    • 89. 发明授权
    • Gear device, preferably motor device
    • 齿轮装置,优选电机装置
    • US09140341B2
    • 2015-09-22
    • US12988313
    • 2008-04-17
    • Mustafa Naci Ozturk
    • Mustafa Naci Ozturk
    • G01C19/30F16H33/10
    • F16H33/10Y10T74/1254
    • A gyroscopic device is described 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.
    • 描述了一种用于提供关于至少一个输出轴的旋转的陀螺装置和用于提供旋转的方法。 主体(2)安装成围绕第一(4),第二(11)和第三(16)轴线旋转。 第一轴线(4)以倾斜角相对于第二轴线(11)定向。 第二轴(11)和/或第三轴(16)构成装置的至少一个输出轴。 主体(2)围绕第三轴线(16)的旋转引起倾斜角度的变化。 当第一轴线(4)相对于第二轴线(15)处于选定的倾斜角度时,冲头(15)以关于第三轴线(16)的主体(2)施加扭矩(21) (11)大于0°且小于90°。 第一轴线(4)相对于第二轴线(11)的倾斜角度保持大于0度,因此限制了主体(2)围绕第三轴线(16)的倾斜角减小的旋转 小于90度。 主体(2)以大于临界角速度的角速度围绕第一轴线(4)旋转,使得达到恒定或降低的倾斜角度。
    • 90. 发明申请
    • Vibration Exciter For Generating A Directed Excitation Vibration
    • 用于产生定向励磁振动的振动激振器
    • US20130055835A1
    • 2013-03-07
    • US13565899
    • 2012-08-03
    • Christian SchmidtJens Wagner
    • Christian SchmidtJens Wagner
    • F16H33/10
    • B06B1/166Y10T74/18552
    • The present invention relates to a vibration exciter for generating a directed excitation vibration, especially for installation in a vibration tamper, and a machine with such a vibration exciter, comprising at least two parallel extending unbalance shafts which are rotatable against one another, on which at least one respective fixed unbalance mass and at least one respective movable unbalance mass are arranged, with the positions of the movable unbalance masses on the unbalance shafts being variable by way of an adjusting device for adjusting the amplitude of the exciter vibration, and with the adjusting device comprising a central adjusting element for amplitude adjustment which acts on the movable unbalance masses of the two unbalance shafts, which central adjusting element is arranged coaxially to a rotational axis (AS) about which the vibration exciter is rotatable for the purpose of vector adjustment of the excitation vibration.
    • 本发明涉及一种用于产生定向激励振动的振动激励器,特别是用于安装在振动捣固器中的振动激励器以及具有这种振动激励器的机器,该振动激励器包括至少两个彼此可旋转的平行延伸的不平衡轴, 设置至少一个相应的固定不平衡质量和至少一个相应的可移动不平衡块,其中不平衡轴上的可移动不平衡块的位置可通过用于调节激振器振动幅度的调节装置而变化,并且通过调节 装置,其包括用于振幅调节的中心调节元件,其作用于两个不平衡轴的可移动不平衡质量块,该中心调节元件与旋转轴线(AS)同轴地布置,振动激励器围绕该旋转轴线可旋转,用于矢量调整 励磁振动。