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    • 7. 发明申请
    • Valve Timing Control Apparatus
    • 气门正时控制装置
    • US20080163838A1
    • 2008-07-10
    • US11885761
    • 2006-02-10
    • Taiyu IwataKenji FujiwakiShigeru Nakajima
    • Taiyu IwataKenji FujiwakiShigeru Nakajima
    • F01L1/344
    • F01L1/022F01L1/3442F01L2001/34436F01L2001/34473F01L2001/34483
    • A valve timing control apparatus is provided having a locking mechanism that can minimize the accumulation of foreign material in a concave engagement part, can minimize the penetration of foreign material to the sliding parts of a locking member, and can reduce the sliding resistance of the locking member. A locking mechanism (5) is provided with a sliding groove (52) provided to an outer rotor (2); a locking member (53) capable of sliding along the sliding groove (52); and a concave engagement part (51) that is provided to the inner rotor (3), is formed to be capable of engaging with the locking member (53) in a state in which the phase of relative rotation is a lock phase, and has an inlet port (58) capable of introducing hydraulic fluid. Flow channels (57) for hydraulic fluid are provided to at least one of the sliding groove (52) and the locking member (53), are formed along the sliding direction of the locking member (53), and are communicatingly connected to the concave engagement part (51).
    • 一种气门正时控制装置,其具有锁定机构,该锁定机构可使外部材料在凹形接合部分中的积聚最小化,能够最大限度地减少外部材料对锁定构件的滑动部分的渗透,并且可以降低锁定的滑动阻力 会员。 锁定机构(5)设置有设置在外转子(2)上的滑动槽(52); 能够沿着滑动槽(52)滑动的锁定构件(53)。 以及设置在所述内转子(3)上的凹形卡合部(51),能够以相对旋转相位为锁定相的状态与所述卡定部件(53)卡合, 能够引入液压流体的入口(58)。 用于液压流体的流动通道(57)设置在滑动槽(52)和锁定构件(53)中的至少一个上,沿着锁定构件(53)的滑动方向形成,并且连通地连接到凹部 接合部(51)。
    • 8. 发明授权
    • Valve timing control apparatus and valve timing control mechanism
    • 气门正时控制装置及气门正时控制机构
    • US08631774B2
    • 2014-01-21
    • US13810180
    • 2011-07-07
    • Kenji FujiwakiMasaki KobayashiYoshihiro KawaiKenji Ikeda
    • Kenji FujiwakiMasaki KobayashiYoshihiro KawaiKenji Ikeda
    • F01L1/34
    • F01L1/344F01L1/3442F01L2001/34453F01L2001/34463F01L2001/34466F01L2001/34469F01L2001/34476
    • A valve timing control apparatus includes a partitioning portion in a driven-side rotary member for partitioning the fluid pressure chamber into an advance angle chamber and a retard angle chamber, a restricting member in the driven-side rotary member and projectable and retractable relative to a driving-side rotary member, a restricting recess in the driving-side rotary member and restricting a relative rotational phase to a predetermined range in association with projection of the restricting member therein, a locking member disposed in the driven-side rotary member and projectable and retractable relative to the driving-side rotary member, a locking recess formed in the driving-side rotary member and locking the relative rotational phase to the predetermined phase in association with projection of the locking member therein, a communication passage formed between the restricting member and the locking member, and an urging passage for feeding fluid for projecting the restricting member into the restricting recess.
    • 气门正时控制装置包括:驱动侧旋转部件中的分隔部分,用于将流体压力室分隔成提前角室和延迟角室;从动侧旋转部件中的限制部件,相对于 驱动侧旋转构件,驱动侧旋转构件中的限制凹部,并且将相对旋转相位限制在与限制构件的突出相关联的预定范围内;锁定构件,其设置在从动侧旋转构件中并且可投射; 相对于驱动侧旋转部件缩回的锁定凹部,形成在驱动侧旋转部件中的锁定凹部,并且将相对旋转相位锁定到与锁定部件的突出部相关联的预定相位;形成在限制部件和 锁定构件,以及用于供给用于突出限制构件的流体的推压通道 进入限制槽。
    • 9. 发明申请
    • VALVE TIMING CONTROL APPARATUS AND VALVE TIMING CONTROL MECHANISM
    • 阀门定时控制装置和阀门时序控制机制
    • US20130112161A1
    • 2013-05-09
    • US13810180
    • 2011-07-07
    • Kenji FujiwakiMasaki KobayashiYoshihiro KawaiKenji Ikeda
    • Kenji FujiwakiMasaki KobayashiYoshihiro KawaiKenji Ikeda
    • F01L1/344
    • F01L1/344F01L1/3442F01L2001/34453F01L2001/34463F01L2001/34466F01L2001/34469F01L2001/34476
    • A valve timing control apparatus includes a partitioning portion in a driven-side rotary member for partitioning the fluid pressure chamber into an advance angle chamber and a retard angle chamber, a restricting member in the driven-side rotary member and projectable and retractable relative to a driving-side rotary member, a restricting recess in the driving-side rotary member and restricting a relative rotational phase to a predetermined range in association with projection of the restricting member therein, a locking member disposed in the driven-side rotary member and projectable and retractable relative to the driving-side rotary member, a locking recess formed in the driving-side rotary member and locking the relative rotational phase to the predetermined phase in association with projection of the locking member therein, a communication passage formed between the restricting member and the locking member, and an urging passage for feeding fluid for projecting the restricting member into the restricting recess.
    • 气门正时控制装置包括:驱动侧旋转部件中的分隔部分,用于将流体压力室分隔成提前角室和延迟角室;从动侧旋转部件中的限制部件,相对于 驱动侧旋转构件,驱动侧旋转构件中的限制凹部,并且将相对旋转相位限制在与限制构件的突出相关联的预定范围内;锁定构件,其设置在从动侧旋转构件中并且可投射; 相对于驱动侧旋转部件缩回的锁定凹部,形成在驱动侧旋转部件中的锁定凹部,并且将相对旋转相位锁定到与锁定部件的突出部相关联的预定相位;形成在限制部件和 锁定构件,以及用于供给用于突出限制构件的流体的推压通道 进入限制槽。
    • 10. 发明授权
    • Variable valve timing system
    • 可变气门正时系统
    • US06439181B1
    • 2002-08-27
    • US09963394
    • 2001-09-27
    • Kenji FujiwakiOsamu Komazawa
    • Kenji FujiwakiOsamu Komazawa
    • F01L1344
    • F01L1/3442F01L2001/34476F01L2001/34483
    • A variable valve timing system includes a relative rotation controlling mechanism restricting relative rotation of a housing member and a rotor member at the intermediate lock phase between the most advanced angle phase and the most retarded angle phase. An auxiliary controlling mechanism actuated in response to the operation fluid to be supplied to and discharged from a fluid pressure circuit allows the relative rotation of the housing member and the rotor member under the unlock condition and restricts the rotation of the rotor member to the retarded angle side or to the advanced angle side relative to the housing member at a set phase between the most retarded angle phase or the most advanced angle phase and the intermediate lock phase under the lock condition.
    • 可变气门正时系统包括相对旋转控制机构,该相对旋转控制机构限制在最前进角度相位和最大延迟角度相位之间的中间锁定阶段的壳体构件和转子构件的相对旋转。 响应于被供给到流体压力回路而被排放的操作流体而致动的辅助控制机构允许壳体构件和转子构件在解锁状态下的相对旋转,并且将转子构件的旋转限制到延迟角 在锁定状态下,在最大延迟角相位或最提前角度相位与中间锁定相位之间的设定相位处相对于壳体部件的前侧角度或高级角度侧。