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    • 1. 发明申请
    • VALVE-TIMING CONTROL APPARATUS FOR INTERNAL COMBUSTION ENGINE
    • 内燃机用阀门控制装置
    • US20110253085A1
    • 2011-10-20
    • US13078016
    • 2011-04-01
    • Naoki KOKUBOShinichi KawadaSeiji Tsuruta
    • Naoki KOKUBOShinichi KawadaSeiji Tsuruta
    • F01L1/344
    • H02K11/0021F01L1/34F01L1/352H02K11/215
    • A valve-timing control apparatus includes a drive rotator configured to receive a rotation from a crankshaft; a driven rotator fixed to a cam shaft; and an electric motor. The electric motor includes a stator fixed to the driven rotator, a rotor that rotates relative to the stator, a coil provided to at least one of the stator and the rotor, and a motor output shaft fixed to the rotor. The valve-timing control apparatus further includes a speed-reduction mechanism; a slip ring provided to one of the drive rotator and a fixed member, and configured to feed power to the coil; a power-feeding brush provided to another of the drive rotator and the fixed member, and abutting on the slip ring; a detection-target section provided to one of the fixed member and the motor output shaft, and located on an inner circumferential side beyond a contact portion between the slip ring and the power-feeding brush; and a detecting section provided to another of the fixed member and the motor output shaft, and configured to detect a rotational position of the motor output shaft by detecting a position of the detection-target section.
    • 一种阀门定时控制装置,包括构造成从曲轴接收旋转的驱动旋转器; 固定在凸轮轴上的从动转子; 和电动机。 电动机包括固定到从动转子的定子,相对于定子旋转的转子,设置在定子和转子中的至少一个的线圈以及固定在转子上的电动机输出轴。 气门正时控制装置还包括减速机构; 滑动环,其设置在所述驱动旋转体和固定部件中的一个上,并且构造成向所述线圈供电; 设置在所述驱动旋转体和所述固定部件的另一个上并与所述滑环抵接的供电刷; 检测目标部分,其设置在所述固定部件和所述电动机输出轴中的一个上,并且位于所述滑环和所述供电电刷之间的接触部分的内周侧上; 以及检测部,其设置在所述固定部件和所述电动机输出轴的另一个上,并且被配置为通过检测所述检测目标部的位置来检测所述电动机输出轴的旋转位置。
    • 2. 发明授权
    • Valve-timing control apparatus for internal combustion engine
    • 内燃机用气门正时控制装置
    • US08899197B2
    • 2014-12-02
    • US13078016
    • 2011-04-01
    • Naoki KokuboShinichi KawadaSeiji Tsuruta
    • Naoki KokuboShinichi KawadaSeiji Tsuruta
    • F01L1/34H02K11/00F01L1/352
    • H02K11/0021F01L1/34F01L1/352H02K11/215
    • A valve-timing control apparatus includes a drive rotator configured to receive a rotation from a crankshaft; a driven rotator fixed to a cam shaft; and an electric motor. The electric motor includes a stator fixed to the driven rotator, a rotor that rotates relative to the stator, a coil provided to at least one of the stator and the rotor, and a motor output shaft fixed to the rotor. The valve-timing control apparatus further includes a speed-reduction mechanism; a slip ring provided to one of the drive rotator and a fixed member, and configured to feed power to the coil; a power-feeding brush provided to another of the drive rotator and the fixed member, and abutting on the slip ring; a detection-target section provided to one of the fixed member and the motor output shaft, and located on an inner circumferential side beyond a contact portion between the slip ring and the power-feeding brush; and a detecting section provided to another of the fixed member and the motor output shaft, and configured to detect a rotational position of the motor output shaft by detecting a position of the detection-target section.
    • 一种阀门定时控制装置,包括构造成从曲轴接收旋转的驱动旋转器; 固定在凸轮轴上的从动转子; 和电动机。 电动机包括固定到从动转子的定子,相对于定子旋转的转子,设置在定子和转子中的至少一个的线圈以及固定在转子上的电动机输出轴。 气门正时控制装置还包括减速机构; 滑动环,其设置在所述驱动旋转体和固定部件中的一个上,并且构造成向所述线圈供电; 设置在所述驱动旋转体和所述固定部件的另一个上并与所述滑环抵接的供电刷; 检测目标部分,其设置在所述固定部件和所述电动机输出轴中的一个上,并且位于所述滑环和所述供电电刷之间的接触部分的内周侧上; 以及检测部,其设置在所述固定部件和所述电动机输出轴的另一个上,并且被配置为通过检测所述检测目标部的位置来检测所述电动机输出轴的旋转位置。
    • 4. 发明授权
    • Controller of valve timing control apparatus and valve timing control apparatus of internal combustion engine
    • 内燃机气门正时控制装置及气门正时控制装置的控制器
    • US08868316B2
    • 2014-10-21
    • US13270351
    • 2011-10-11
    • Naoki KokuboShinichi Kawada
    • Naoki KokuboShinichi Kawada
    • F01L1/34F01L1/352F01L1/344
    • F01L1/352F01L2001/3521
    • In a valve timing control apparatus configured to execute phase-control via a phase converter, a controller is configured to control a phase angle of a camshaft relative to a crankshaft during an engine stopping period to a target phase angle differing from a required phase angle suited for an engine operating condition. The controller is further configured to change the phase angle of the camshaft toward the required phase angle during a time period from a point of time when cranking starts to a point of time when detection of a rotational position of the camshaft initiates during an engine restarting period. The controller is still further configured to start feedback-control for the phase angle of the camshaft from the point of time of initiation of detection of the rotational position of the camshaft for bringing the phase angle of the camshaft closer to the required phase angle.
    • 在被配置为经由相变器执行相位控制的气门正时控制装置中,控制器构造成在发动机停止期间将凸轮轴相对于曲轴的相位角控制为与所需相位角不同的目标相位角 用于发动机工作状态。 所述控制器进一步构造成在从起动开始的时间点到在发动机重起动期期间检测到所述凸轮轴的旋转位置的开始的时间段期间将所述凸轮轴的相位角朝向所需相位角改变 。 控制器还被配置为从凸轮轴的旋转位置的检测开始时刻开始对凸轮轴的相位角进行反馈控制,以使凸轮轴的相位角更接近所需的相位角。
    • 5. 发明申请
    • VALVE TIMING CONTROL APPARATUS FOR INTERNAL COMBUSTION ENGINE
    • 内燃机用时间控制装置
    • US20130206087A1
    • 2013-08-15
    • US13611683
    • 2012-09-12
    • Ryo TADOKORONaoki KokuboAtsushi YamanakaShinichi Kawada
    • Ryo TADOKORONaoki KokuboAtsushi YamanakaShinichi Kawada
    • F01L1/344
    • F01L1/352F01L2250/02F01L2820/032F16C19/54
    • A valve timing control apparatus for an internal combustion engine, including a drive rotation member, a follower rotation member, an electric motor, and a speed reducer including an internal gear portion, an eccentric cam on an inner peripheral side of the internal gear portion, rollers disposed between the internal gear portion and the eccentric cam, and a cage rotatable relative to the internal gear portion by rotation of the eccentric cam. A motor output shaft is arranged in series relative to the eccentric cam in an axial direction thereof. A needle bearing is rollably disposed on a part of an outer peripheral surface of the follower rotation member. The eccentric cam and the motor output shaft are press-fitted onto an outer peripheral portion of the needle bearing. The needle bearing extends over both the eccentric cam and the motor output shaft.
    • 一种用于内燃机的气门正时控制装置,包括驱动旋转构件,从动旋转构件,电动马达和包括内齿轮部的减速器,内齿轮部的内周侧的偏心凸轮, 设置在内齿轮部分和偏心凸轮之间的滚子以及通过偏心凸轮的旋转相对于内齿轮部分旋转的保持架。 马达输出轴相对于偏心凸轮在其轴向方向上串联布置。 滚针轴承可滚动地设置在从动旋转构件的外周面的一部分上。 偏心凸轮和马达输出轴被压配合到滚针轴承的外周部分上。 滚针轴承在偏心凸轮和马达输出轴之间延伸。
    • 6. 发明申请
    • VARIABLE VALVE TIMING CONTROL APPARATUS OF INTERNAL COMBUSTION ENGINE
    • 内燃机可变阀定时控制装置
    • US20120312259A1
    • 2012-12-13
    • US13443927
    • 2012-04-11
    • Atsushi YAMANAKANaoki KokuboRyo TadokoroShinichi Kawada
    • Atsushi YAMANAKANaoki KokuboRyo TadokoroShinichi Kawada
    • F01L1/344
    • F01L1/352F01L2820/032
    • A variable valve timing control apparatus has a drive rotary member, a driven rotary member fixed to a camshaft, an electric motor relatively rotating a motor drive shaft with respect to the drive rotary member, a speed reduction mechanism transmitting rotation of the motor drive shaft to the driven rotary member a housing connected integrally with the drive rotary member and housing therein the electric motor, a cover member fixed to an engine so as to cover at least a front end part of the housing, a power feed mechanism having a slip ring and a power-feed brush that touches the slip ring and feeding power to the electric motor, and a ring-shaped member. The ring-shaped member is fixed to either one side of the cover member and the motor drive shaft, and makes sliding contact with the other side of the cover member and the motor drive shaft.
    • 可变气门正时控制装置具有驱动旋转构件,固定到凸轮轴的从动旋转构件,相对于驱动旋转构件相对旋转电动机驱动轴的电动机,将电动机驱动轴的旋转传递到 所述从动旋转构件与所述驱动旋转构件一体地连接并且容纳在所述电动机中的壳体,固定到发动机以覆盖所述壳体的至少前端部的盖构件,具有滑环的动力供给机构, 接触滑环并向电动机供电的供电刷和环形构件。 环状构件固定在盖构件和电动机驱动轴的一侧,并与盖构件和电动机驱动轴的另一侧滑动接触。
    • 7. 发明授权
    • Variable valve timing control apparatus of internal combustion engine
    • 内燃机可变气门正时控制装置
    • US08752515B2
    • 2014-06-17
    • US13443927
    • 2012-04-11
    • Atsushi YamanakaNaoki KokuboRyo TadokoroShinichi Kawada
    • Atsushi YamanakaNaoki KokuboRyo TadokoroShinichi Kawada
    • F01L1/14
    • F01L1/352F01L2820/032
    • A variable valve timing control apparatus has a drive rotary member, a driven rotary member fixed to a camshaft, an electric motor relatively rotating a motor drive shaft with respect to the drive rotary member, a speed reduction mechanism transmitting rotation of the motor drive shaft to the driven rotary member a housing connected integrally with the drive rotary member and housing therein the electric motor, a cover member fixed to an engine so as to cover at least a front end part of the housing, a power feed mechanism having a slip ring and a power-feed brush that touches the slip ring and feeding power to the electric motor, and a ring-shaped member. The ring-shaped member is fixed to either one side of the cover member and the motor drive shaft, and makes sliding contact with the other side of the cover member and the motor drive shaft.
    • 可变气门正时控制装置具有驱动旋转构件,固定到凸轮轴的从动旋转构件,相对于驱动旋转构件相对旋转电动机驱动轴的电动机,将电动机驱动轴的旋转传递到 所述从动旋转构件与所述驱动旋转构件一体地连接并且容纳在所述电动机中的壳体,固定到发动机以覆盖所述壳体的至少前端部的盖构件,具有滑环的动力供给机构, 接触滑环并向电动机供电的供电刷和环形构件。 环状构件固定在盖构件和电动机驱动轴的一侧,并与盖构件和电动机驱动轴的另一侧滑动接触。
    • 8. 发明申请
    • Controller of Valve Timing Control Apparatus and Valve Timing Control Apparatus of Internal Combustion Engine
    • 内燃机气门正时控制装置及气门正时控制装置控制器
    • US20120174883A1
    • 2012-07-12
    • US13270351
    • 2011-10-11
    • Naoki KokuboShinichi Kawada
    • Naoki KokuboShinichi Kawada
    • F01L1/344
    • F01L1/352F01L2001/3521
    • In a valve timing control apparatus configured to execute phase-control via a phase converter, a controller is configured to control a phase angle of a camshaft relative to a crankshaft during an engine stopping period to a target phase angle differing from a required phase angle suited for an engine operating condition. The controller is further configured to change the phase angle of the camshaft toward the required phase angle during a time period from a point of time when cranking starts to a point of time when detection of a rotational position of the camshaft initiates during an engine restarting period. The controller is still further configured to start feedback-control for the phase angle of the camshaft from the point of time of initiation of detection of the rotational position of the camshaft for bringing the phase angle of the camshaft closer to the required phase angle.
    • 在被配置为经由相变器执行相位控制的气门正时控制装置中,控制器构造成在发动机停止期间将凸轮轴相对于曲轴的相位角控制为与所需相位角不同的目标相位角 用于发动机工作状态。 所述控制器进一步构造成在从起动开始的时间点到在发动机重起动期期间检测到所述凸轮轴的旋转位置的开始的时间段期间将所述凸轮轴的相位角朝向所需相位角改变 。 控制器还被配置为从凸轮轴的旋转位置的检测开始时刻开始对凸轮轴的相位角进行反馈控制,以使凸轮轴的相位角更接近所需的相位角。
    • 9. 发明申请
    • VARIABLE VALVE ACTUATION APPARATUS OF INTERNAL COMBUSTION ENGINE
    • 内燃机可变阀门执行装置
    • US20110265747A1
    • 2011-11-03
    • US13078023
    • 2011-04-01
    • Ryo TADOKOROAtsushi YamanakaShinichi Kawada
    • Ryo TADOKOROAtsushi YamanakaShinichi Kawada
    • F01L1/344B21D51/16
    • F01L1/344F01L2101/00F01L2105/00Y10T29/49405
    • In a variable valve actuation apparatus with a speed reducer between a timing sprocket and a camshaft for changing a phase of the camshaft relative to the sprocket, while reducing normal-rotation/reverse-rotation of an electric motor, the speed reducer includes an eccentric rotation member connected to an output shaft of the motor, an annular member connected to the sprocket, a plurality of rollers installed between an inner toothed portion of the annular member and an outer peripheral surface of the eccentric rotation member, and a cage connected to the camshaft for circumferentially partitioning the respective rollers, while permitting a radial displacement of each roller. Depending on a dimension of a clearance space between the eccentric rotation member and the annular member, a suitable one of a plurality of roller sets, each having a different outside diameter, is selected, and then the selected rollers are installed.
    • 在减速器在正时链轮和凸轮轴之间具有用于改变凸轮轴相对于链轮的相位的减速器的可变气门致动装置中,在减小电动机的正常旋转/反向旋转的同时,减速器包括偏心旋转 连接到电动机的输出轴的构件,连接到链轮的环形构件,安装在环形构件的内齿部分和偏心旋转构件的外周表面之间的多个辊以及连接到凸轮轴的保持架 用于周向地分隔相应的辊,同时允许每个辊的径向位移。 根据偏心旋转构件和环形构件之间的间隙的尺寸,选择每个具有不同外径的多个辊组中的合适的一个,然后安装所选择的辊。