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    • 4. 发明申请
    • SPIRAL GEAR RACK FOR A MECHANICAL TORQUE CONVERTER CROSS-NOTING TO RELATED APPLICATIONS
    • 机械扭矩转换器的螺旋齿轮架相关应用交叉
    • WO2004111495A1
    • 2004-12-23
    • PCT/IB2004/002005
    • 2004-06-16
    • BORBOLLA GONZALEZ, Teodoro Rodrigo
    • BORBOLLA GONZALEZ, Teodoro Rodrigo
    • F16H15/50
    • F16H15/50F16H3/423F16H37/0853
    • A mechanical torque converter which receives power in an cylindrical impeller of increasing diameter, the impeller circumferentially incorporates a spiral rack and, afterwards, transmits the power in a controlled manner through a composed planetary system, lodged inside the impeller, consisting of a group of satellite gears engaging with said rack, at the diameter of the impeller corresponding to the demanded power. The satellites will make cyclically the change of spire, by always matching the outlet tooth with certain tooth at every revolution, and maintaining the same position for each torque condition. In order to change the torque by means of a control mechanism or torque sensor, the rack's diameter that makes contact with the satellites will be varied in a given number of positions at each spire, within the same advance pattern of the satellites, by means of the rotation of a grooved shaft which jointly with a threaded central bar, will make the spider to move forward, placing all the planetary system in said position, and transmitting the traction to the planets, to the central gear, and to the outlet shaft, in a positive way, and variable speed, depending on the demanded torque.
    • 一种机械变矩器,其在直径增大的圆筒形叶轮中接收动力,叶轮周向地包括螺旋齿条,然后以受控的方式通过组合的行星系统传递动力,该行星系统装在叶轮内部,由一组卫星 齿轮与所述齿条啮合,叶轮的直径与所需功率相对应。 卫星将通过始终将出口齿与特定的齿匹配在一个转动周期上,使得尖塔的变化周期性地变化,并且为每个转矩条件保持相同的位置。 为了通过控制机构或扭矩传感器改变扭矩,与卫星接触的机架的直径将在卫星的相同预加载模式下的每个尖顶处的给定数量的位置中通过 与螺纹中心杆联合的带槽轴的旋转将使得蜘蛛向前移动,将所有行星系统置于所述位置,并将牵引力传递到行星机构到中心齿轮和出口轴, 以积极的方式,变速,取决于所需的扭矩。
    • 5. 发明申请
    • INERTIAL VARIATOR
    • 惯性变量
    • WO2002066864A1
    • 2002-08-29
    • PCT/RU2001/000184
    • 2001-05-03
    • F16H15/50
    • F16H21/14
    • The invention relates to drive mechanisms having a variable rotation speed for gearing from a drive element to a driven element, in particular to the drive mechanisms having a variable rotation speed and provided with the drive element whose rotation speed is automatically changed with respect to the rotation speed of the driven element at a load variation, the mechanism having an increased specific power. An existing inertial variator comprises a drive shaft, a sleeve connected thereto and arms provided with runners and connected to the sleeve in such a way that they are rotatable. Said runners interact with a profiled internal surface of a holder. The novelty of the invention lies in that the holder, the arms and the sleeve embodied in the form of disks are spaced on different planes of rotation.
    • 本发明涉及具有可变转速的驱动机构,用于从驱动元件传递到从动元件,特别涉及具有可变转速的驱动机构,并具有驱动元件,该驱动元件的转速相对于转动自动地改变 驱动元件在负载变化时的速度,该机构具有增加的比功率。 现有的惯性变换器包括驱动轴,与其连接的套筒和设置有流道并且以可旋转的方式连接到套筒的臂。 所述跑步者与保持器的异形内表面相互作用。 本发明的新颖之处在于,以盘的形式体现的保持器,臂和套筒在不同的旋转平面上间隔开。
    • 6. 发明申请
    • VARIABLE TRANSMISSION SYSTEM
    • 可变传动系统
    • WO02016803A1
    • 2002-02-28
    • PCT/GB2001/003706
    • 2001-08-20
    • F16H15/50
    • F16H15/503
    • The present invention relates to a variable traction drive transmission system. There is described a variable transmission system comprising input and output plates (11,14) each formed with a toroidal surface (12,15) having inner and outer edges and each being mounted for co-axial rotation upon respective axles (13,16); wherein the input and output plates are mounted with their toroidal surfaces opposed and wherein the system further comprises a rotation transmission element mounted between the input and output plates and in contact therewith. The present invention is characterised in that the rotation transmission element comprises two contacting races (21,22) of spheres, an input race (21) associated with the input plate and an output race (22) associated with the output plate. The system further comprises adjustment means (31;40,41,42,43,44,48) to enable movement of at least one sphere from a first position in which it contacts the adjacent plate at a position adjacent the outer edge thereof and a second in which it contacts the adjacent plate at a position adjacent the inner edge thereof.
    • 本发明涉及一种可变牵引驱动传动系统。 描述了一种包括输入和输出板(11,14)的可变传动系统,每个板形成有具有内边缘和外边缘的环形表面(12,15),并且每个安装成用于在相应的轴(13,16)上同轴旋转, ; 其中所述输入和输出板以其环形表面相对安装,并且其中所述系统还包括安装在所述输入和输出板之间并与其接触的旋转传动元件。 本发明的特征在于,旋转传动元件包括球体的两个接触圈(21,22),与输入板相关联的输入座圈(21)和与输出板相关联的输出座圈(22)。 该系统还包括调节装置(31; 40,41,42,43,44,48),以使得至少一个球体能够在其邻近其外边缘的位置与第二位置相接触的第一位置移动;以及 第二,其在与其内边缘相邻的位置处接触相邻的板。
    • 7. 发明申请
    • CONTINUOUSLY VARIABLE TRANSMISSION WITH RATIO SYNCHRONIZING SYSTEM
    • 连续同步传输与同步同步系统
    • WO99040345A1
    • 1999-08-12
    • PCT/US1999/002367
    • 1999-02-03
    • F16H37/00F16H15/20F16H15/50F16H37/02F16H37/08
    • F16H37/0853F16H15/20
    • A continuously variable transmission for varying the speed ratio of an output shaft (47) relative to an input shaft (26) driven by a vehicle engine or other input power source. The power transmission includes a driven input member (21) coupled in driving engagement with at least one rotor (7) to transfer torque to the rotor. A disk member (1) is positioned in cooperative relationship with a rotatable shaft (2) and in driving engagement with the rotor (7), such that the disk member is driven to transfer torque to the rotatable shaft. An output member (49) is driven by the rotatable shaft, and torque is transferred from the shaft to the output member, with the disk member being selectively axially moveable relative to the rotor and to the rotatable shaft in response to output load torque on the output member so as to vary the torque transferred from the rotor. A gear system (27) driven by the at least one rotor includes a planetary gear set (29, 30, 31) to extend the speed range of the output member.
    • 一种用于改变输出轴(47)相对于由车辆发动机或其它输入动力源驱动的输入轴(26)的速比的无级变速器。 动力传动装置包括与至少一个转子(7)驱动接合的从动输入构件(21),以将转矩传递给转子。 盘构件(1)与可旋转轴(2)配合关系并且与转子(7)驱动接合,使得盘构件被驱动以将扭矩传递到可旋转轴。 输出构件(49)由可旋转轴驱动,扭矩从轴传递到输出构件,其中盘构件相对于转子和旋转轴选择性地轴向移动,响应于在 输出构件,以便改变从转子传递的扭矩。 由所述至少一个转子驱动的齿轮系统(27)包括行星齿轮组(29,30,31),以延伸所述输出构件的速度范围。