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    • 2. 发明申请
    • Method of Controlling a Hydraulic Continuously Variable Transmission
    • 控制液压无级变速器的方法
    • US20130080007A1
    • 2013-03-28
    • US13430254
    • 2012-03-26
    • David MonfetteJean-Philippe DesbiensRoger Rioux
    • David MonfetteJean-Philippe DesbiensRoger Rioux
    • B60W10/107
    • B60W10/107B60Y2200/252F16H61/66259F16H61/66272F16H63/065
    • A method of controlling a hydraulic CVT of a vehicle comprises: determining a speed of rotation of a driving shaft; determining a speed of rotation of a driven shaft; determining a ratio of the speed of rotation of the driving shaft versus the speed of rotation of the driven shaft; determining an engine torque; determining a base clamping force to be applied by the driving pulley onto the belt based on the ratio and the engine torque; determining a desired speed of rotation of the driving shaft; determining a corrective clamping force by comparing the speed of rotation of the driving shaft to the desired speed of rotation of the driving shaft; and controlling a hydraulic pressure applied to a movable sheave to apply a sum of the base and corrective clamping forces onto the belt. A vehicle having a CVT controlled by the method is also disclosed.
    • 控制车辆的液压CVT的方法包括:确定驱动轴的旋转速度; 确定从动轴的旋转速度; 确定所述驱动轴的旋转速度与所述从动轴的旋转速度的比率; 确定发动机转矩; 基于所述比率和所述发动机扭矩确定由所述驱动皮带轮施加到所述皮带上的基准夹紧力; 确定所述驱动轴的期望转速; 通过将所述驱动轴的旋转速度与所述驱动轴的所需旋转速度进行比较来确定校正夹紧力; 并且控制施加到可动滑轮的液压力以将基座和矫正夹紧力的总和施加到带上。 还公开了通过该方法控制的CVT的车辆。
    • 6. 发明申请
    • Driving Pulley for a Continuously Variable Transmission
    • 驱动皮带轮进行连续变速
    • US20120178561A1
    • 2012-07-12
    • US13496383
    • 2009-09-15
    • Eric LafreniereDavid MonfetteRoger Rioux
    • Eric LafreniereDavid MonfetteRoger Rioux
    • F16H55/56F16H61/662F16H9/14
    • F16H63/065F16H55/56F16H61/66259F16H61/66272
    • A driving pulley for a CVT has a shaft, a fixed sheave mounted on the shaft, a first sleeve disposed around the shaft and being operatively connected to the shaft, a movable sheave mounted on the first sleeve, a second sleeve disposed around the first sleeve and being connected to the shaft, a spring biasing the movable sheave away from the fixed sheave, and a CVT chamber having an annular cross-section. The fixed and movable sheaves are adapted to receive a belt therebetween. The CVT chamber has at least one opening adapted for fluidly communicating the CVT chamber with a hydraulic fluid reservoir. Hydraulic pressure in the CVT chamber biases the movable sheave toward the fixed sheave. The CVT chamber has an inner wall formed by the first sleeve, an outer wall formed by the second sleeve, an outer end, and an inner end formed by the movable sheave.
    • 用于CVT的驱动滑轮具有轴,安装在轴上的固定滑轮,围绕轴设置并且可操作地连接到轴的第一套筒,安装在第一套筒上的可动滑轮,设置在第一套筒周围的第二套筒 并且连接到所述轴,使可动滑轮偏离固定滑轮的弹簧和具有环形横截面的CVT室。 固定和可移动滑轮适于在其间接纳皮带。 CVT室具有至少一个适于使CVT室与液压流体储存器连通的开口。 CVT室内的液压压力将可动滑轮偏向固定滑轮。 CVT室具有由第一套筒形成的内壁,由第二套筒形成的外壁,外端和由可动滑轮形成的内端。
    • 7. 发明授权
    • Driving pulley for a continuously variable transmission
    • 用于无级变速器的驱动滑轮
    • US09109694B2
    • 2015-08-18
    • US13496383
    • 2009-09-15
    • Eric LafreniereDavid MonfetteRoger Rioux
    • Eric LafreniereDavid MonfetteRoger Rioux
    • F16H55/56F16H61/662F16H9/14F16H63/06
    • F16H63/065F16H55/56F16H61/66259F16H61/66272
    • A driving pulley for a CVT has a shaft, a fixed sheave mounted on the shaft, a first sleeve disposed around the shaft and being operatively connected to the shaft, a movable sheave mounted on the first sleeve, a second sleeve disposed around the first sleeve and being connected to the shaft, a spring biasing the movable sheave away from the fixed sheave, and a CVT chamber having an annular cross-section. The fixed and movable sheaves are adapted to receive a belt therebetween. The CVT chamber has at least one opening adapted for fluidly communicating the CVT chamber with a hydraulic fluid reservoir. Hydraulic pressure in the CVT chamber biases the movable sheave toward the fixed sheave. The CVT chamber has an inner wall formed by the first sleeve, an outer wall formed by the second sleeve, an outer end, and an inner end formed by the movable sheave.
    • 用于CVT的驱动滑轮具有轴,安装在轴上的固定滑轮,围绕轴设置并且可操作地连接到轴的第一套筒,安装在第一套筒上的可动滑轮,设置在第一套筒周围的第二套筒 并且连接到所述轴,使可动滑轮偏离固定滑轮的弹簧和具有环形横截面的CVT室。 固定和可移动滑轮适于在其间接纳皮带。 CVT室具有至少一个适于使CVT室与液压流体储存器连通的开口。 CVT室内的液压压力将可动滑轮偏向固定滑轮。 CVT室具有由第一套筒形成的内壁,由第二套筒形成的外壁,外端和由可动滑轮形成的内端。
    • 8. 发明授权
    • Method of controlling a hydraulic continuously variable transmission
    • 控制液压无级变速器的方法
    • US08798882B2
    • 2014-08-05
    • US13430254
    • 2012-03-26
    • David MonfetteJean-Philippe DesbiensRoger Rioux
    • David MonfetteJean-Philippe DesbiensRoger Rioux
    • G06F7/00
    • B60W10/107B60Y2200/252F16H61/66259F16H61/66272F16H63/065
    • A method of controlling a hydraulic CVT of a vehicle comprises: determining a speed of rotation of a driving shaft; determining a speed of rotation of a driven shaft; determining a ratio of the speed of rotation of the driving shaft versus the speed of rotation of the driven shaft; determining an engine torque; determining a base clamping force to be applied by the driving pulley onto the belt based on the ratio and the engine torque; determining a desired speed of rotation of the driving shaft; determining a corrective clamping force by comparing the speed of rotation of the driving shaft to the desired speed of rotation of the driving shaft; and controlling a hydraulic pressure applied to a movable sheave to apply a sum of the base and corrective clamping forces onto the belt. A vehicle having a CVT controlled by the method is also disclosed.
    • 控制车辆的液压CVT的方法包括:确定驱动轴的旋转速度; 确定从动轴的旋转速度; 确定所述驱动轴的旋转速度与所述从动轴的旋转速度的比率; 确定发动机转矩; 基于所述比率和所述发动机扭矩确定由所述驱动皮带轮施加到所述皮带上的基准夹紧力; 确定所述驱动轴的期望转速; 通过将所述驱动轴的旋转速度与所述驱动轴的所需旋转速度进行比较来确定校正夹紧力; 并且控制施加到可动滑轮的液压力以将基座和矫正夹紧力的总和施加到带上。 还公开了通过该方法控制的CVT的车辆。
    • 9. 发明授权
    • Method of controlling a hydraulic continuously variable transmission
    • 控制液压无级变速器的方法
    • US08645035B2
    • 2014-02-04
    • US13496387
    • 2009-09-15
    • Roger RiouxDavid MonfetteJean-Philippe Desbiens
    • Roger RiouxDavid MonfetteJean-Philippe Desbiens
    • G06F7/00
    • F16H61/66272F16H57/021F16H61/66259F16H63/065
    • A method of controlling a hydraulic CVT of a vehicle includes: determining a speed of rotation of a driving shaft; determining a speed of rotation of a driven shaft; determining a ratio of the speed of rotation of the driving shaft versus the speed of rotation of the driven shaft; determining an engine torque; determining a base clamping force to be applied by the driving pulley onto the belt based on the ratio and the engine torque; determining a desired speed of rotation of the driving shaft; determining a corrective clamping force by comparing the speed of rotation of the driving shaft to the desired speed of rotation of the driving shaft; and controlling a hydraulic pressure applied to a movable sheave to apply a sum of the base and corrective clamping forces onto the belt. A vehicle having a CVT controlled by the method is also disclosed.
    • 控制车辆的液压CVT的方法包括:确定驱动轴的旋转速度; 确定从动轴的旋转速度; 确定所述驱动轴的旋转速度与所述从动轴的旋转速度的比率; 确定发动机转矩; 基于所述比率和所述发动机扭矩确定由所述驱动皮带轮施加到所述皮带上的基准夹紧力; 确定所述驱动轴的期望转速; 通过将所述驱动轴的旋转速度与所述驱动轴的所需旋转速度进行比较来确定校正夹紧力; 并且控制施加到可动滑轮的液压力以将基座和矫正夹紧力的总和施加到带上。 还公开了通过该方法控制的CVT的车辆。