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    • 11. 发明申请
    • VALVE TIMING ADJUSTING APPARATUS
    • 阀调时调整装置
    • US20100199937A1
    • 2010-08-12
    • US12702507
    • 2010-02-09
    • Toshiki Fujiyoshi
    • Toshiki Fujiyoshi
    • F01L1/34
    • F01L1/3442F01L2001/34453F01L2001/34483
    • A valve timing adjusting apparatus includes a housing, a vane rotor, and a spiral spring. The spiral spring has a most radially inward part engaged with a rotational shaft of the vane rotor in a state, where the most radially inward part is wound around the rotational shaft. The rotational phase has an intermediate position defined between a full retard position and a full advance position of the rotational phase. The spiral spring has a radially outward segment that is located radially outward of the most radially inward part. When the rotational phase is in a range on a retard side of the intermediate position or on an advance side of the intermediate position, the radially outward segment is engaged with the stopper such that the spiral spring urges the vane rotor in the advance direction or in the retard direction relative to the housing, respectively.
    • 气门正时调节装置包括壳体,叶片转子和螺旋弹簧。 螺旋弹簧具有最大径向向内的部分,该部分在叶片转子的旋转轴处以最大径向向内的部分缠绕在旋转轴上的状态。 旋转相位具有在旋转相位的完全延迟位置和完全提前位置之间限定的中间位置。 螺旋弹簧具有径向向外的部分,其位于最径向向内部分的径向外侧。 当旋转相位在中间位置的延迟侧或中间位置的前进侧的范围内时,径向向外的部分与止动件接合,使得螺旋弹簧沿前进方向推动叶片转子或者在 相对于壳体的延迟方向。
    • 13. 发明授权
    • Valve timing control apparatus
    • 气门正时控制装置
    • US09085997B2
    • 2015-07-21
    • US14074825
    • 2013-11-08
    • Toshiki FujiyoshiTakashi Yamaguchi
    • Toshiki FujiyoshiTakashi Yamaguchi
    • F01L1/34F01L1/344
    • F01L1/3442F01L1/344F01L2001/34423F01L2001/3445F01L2001/34466F01L2001/34469F01L2001/34473F01L2001/34483
    • A valve timing control apparatus has a regulation member to fix a phase. The regulation member has a main regulation member and a sub regulation member. The main regulation member is inserted into a recess part to regulate the phase. The sub regulation member has an engagement part engageable with the main regulation member in an escape direction Y and disengageable from the main regulation member in an insertion direction X. Further, the sub regulation member has a pressure reception part that receives pressure in the escape direction Y from hydraulic fluid in an operation chamber. The main regulation member is urged in the insertion direction X by a main resilient member. Further, the sub regulation member is urged in the insertion direction X by a sub resilient member. The main regulation member moves in the escape direction Y only by hydraulic fluid, and moves in the insertion direction X only by the resilient member.
    • 气门正时控制装置具有用于固定相的调节构件。 调节构件具有主调节构件和副调节构件。 主调节构件插入凹部以调节相位。 辅助调节构件具有接合部,该接合部能够沿着排出方向Y与主调节构件接合,并且在插入方向X上与主调节构件脱离接合。此外,副调节构件具有受压部, Y来自操作室中的液压流体。 主调节构件通过主弹性构件沿插入方向X被推压。 此外,副调节构件通过副弹性构件沿插入方向X被推压。 主调节构件仅通过液压流体在逸出方向Y上移动,并且仅通过弹性构件沿插入方向X移动。