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    • 53. 发明授权
    • Vehicle control apparatus
    • 车辆控制装置
    • US07564145B2
    • 2009-07-21
    • US11519804
    • 2006-09-13
    • Yoshihito MoriyaHaruyuki UrushihataAkihiko Takenaka
    • Yoshihito MoriyaHaruyuki UrushihataAkihiko Takenaka
    • B60L1/00
    • H02J7/1438H02J1/14
    • A vehicle includes a battery and an alternator as a power source, and a plurality of vehicle load groups that operate commonly receiving power supply from the power source. When a plurality of requests for actuating the plurality of loads are made simultaneously, a control circuit determines a request of higher priority and a request of lower priority based on a predetermined priority for each of said requests. The control circuit operates the corresponding load as requested in response to the request of high priority, and operates the corresponding load with the operation limited to consume smaller power than requested in response to the request of low priority. More preferably, one of the plurality of loads is variable valve timing apparatus changing a timing of opening/closing an intake valve or an exhaust valve of an internal combustion engine.
    • 车辆包括作为电源的电池和交流发电机,以及从电源共同接收电力供给的多个车载负载组。 当同时进行多个致动多个负载的请求时,控制电路基于每个所述请求的预定优先级确定较高优先级的请求和较低优先级的请求。 控制电路响应于高优先级的请求来操作相应的负载,并且操作相应的负载,其操作被限制为响应于低优先级的请求而消耗比所请求的功率更小的功率。 更优选地,多个负载中的一个是改变打开/关闭内燃机的进气门或排气门的定时的可变气门正时装置。
    • 54. 发明授权
    • Valve timing controller
    • 气门正时控制器
    • US07458351B2
    • 2008-12-02
    • US11798548
    • 2007-05-15
    • Akihiko TakenakaEiji IsobeTakayuki InoharaYoshihito MoriyaTakashi InoueKoichi Shimizu
    • Akihiko TakenakaEiji IsobeTakayuki InoharaYoshihito MoriyaTakashi InoueKoichi Shimizu
    • F01L1/34
    • F01L1/344F01L1/352F01L1/356F01L2820/032
    • A valve timing controller includes a guide rotation member provided with a guide groove, a bearing rotation member radially supporting the guide rotation member, and a plurality of movable bodies sliding in the guide groove in accordance with a rotation of the guide rotation member. A plurality of link mechanisms connects the bearing rotation member with each one of movable bodies respectively, and rotates the bearing rotation member in accordance with a movement of the movable bodies. The valve timing of at least one of the intake valve and the exhaust valve is adjusted in accordance with a rotation of the bearing rotation body. A clearance gap is provided between the guide rotation member and the bearing rotation member in order to permit a relative radial movement of the guide rotation member with respect to the bearing rotation member.
    • 气门正时控制装置包括:导向旋转构件,其具有导向槽,支承旋转构件,径向地支撑导向旋转构件;以及多个可动体,其根据导向旋转构件的旋转而在导向槽中滑动。 多个连杆机构分别将轴承旋转构件与可移动体各自连接,并且根据可移动体的运动使轴承旋转构件旋转。 根据轴承旋转体的旋转来调节进气门和排气阀中的至少一个的气门正时。 在导向旋转构件和轴承旋转构件之间设置有间隙,以允许引导旋转构件相对于轴承旋转构件的相对径向移动。
    • 56. 发明授权
    • Valve timing controller
    • 气门正时控制器
    • US07341030B2
    • 2008-03-11
    • US11712553
    • 2007-03-01
    • Akira HoriEiji IsobeYoshihito MoriyaTakashi InoueKoichi Shimizu
    • Akira HoriEiji IsobeYoshihito MoriyaTakashi InoueKoichi Shimizu
    • F01L1/34
    • F01L1/3442
    • A valve timing controller is provided with a first rotary element that rotates in response to the movement of a crankshaft, a second rotary element that rotates in response to the movement of a camshaft. A link mechanism changes a relative rotation phase between the first and second rotary elements. The first and second rotary elements include introduction passages that introduce a lubricating fluid in the first rotary element. In the link mechanism, shafts are fitted in the links. The links relatively rotate with respect to the shaft, and include conveying passages to communicate with the introduction passages and convey the lubricating fluid from the introduction passages to the circumference of the shaft.
    • 气门正时控制器设置有响应于曲轴的运动而旋转的第一旋转元件,响应于凸轮轴的运动而旋转的第二旋转元件。 连杆机构改变第一和第二旋转元件之间的相对旋转相位。 第一和第二旋转元件包括在第一旋转元件中引入润滑流体的引入通道。 在连杆机构中,轴连接在轴上。 连杆相对于轴相对旋转,并且包括与引入通道连通的输送通道,并将润滑流体从引入通道输送到轴的圆周。
    • 59. 发明授权
    • Valve driving apparatus for engine
    • 发动机气门驱动装置
    • US6067947A
    • 2000-05-30
    • US266746
    • 1999-03-12
    • Yoshihito MoriyaKiyoshi SugimotoTadao HasegawaNoriyuki Iden
    • Yoshihito MoriyaKiyoshi SugimotoTadao HasegawaNoriyuki Iden
    • F01L1/14F01L1/26F01L1/34F01L13/00
    • F01L1/34F01L1/143F01L1/26F01L1/262F01L13/0042F02B2275/18
    • A valve driving apparatus for an internal combustion engine. Each combustion chamber has a pair of intake ports and a pair of intake valves for selectively opening and closing the intake ports. Each intake valve is driven with a variable amount of valve lift. The apparatus includes a camshaft rotatably supported by the engine, cams, cam followers, a shaft moving mechanism, and brackets. Each cam lifts an associated intake valve in response to rotation of the camshaft. Each cam has a cam nose for lifting a corresponding intake valve. The radius of the cam nose varies in the axial direction. Cam followers transmit movement of the intake cams to the intake valves. The shaft moving mechanism moves the cams relative to the valves in an axial direction of the camshaft thereby varying the amount of valve lift. A lifter structure is provided that is circularly shaped to improve manufacturing accuracy. In another embodiment, the valves are oriented to increase the amount of axial movement that the cam can make, which results in greater optimization of the air intake amount.
    • 一种用于内燃机的阀驱动装置。 每个燃烧室具有一对进气口和一对进气门,用于选择性地打开和关闭进气口。 每个进气阀都由可变量的气门升程驱动。 该装置包括由发动机,凸轮,凸轮从动件,轴移动机构和支架可旋转地支撑的凸轮轴。 每个凸轮响应于凸轮轴的旋转提升相关的进气门。 每个凸轮具有用于提升相应的进气门的凸轮鼻。 凸轮凸轮的半径在轴向上变化。 凸轮从动件将进气凸轮的运动传递到进气门。 轴移动机构在凸轮轴的轴向上相对于阀移动凸轮,从而改变气门升程量。 提供了一种圆形的升降机结构,以提高制造精度。 在另一个实施例中,阀被定向成增加凸轮可以产生的轴向移动量,这导致空气进入量的更大优化。