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    • 1. 发明授权
    • Variable valve timing control system
    • 可变气门正时控制系统
    • US06330870B1
    • 2001-12-18
    • US09639235
    • 2000-08-16
    • Masaomi InoueOsamu SatoMichio Adachi
    • Masaomi InoueOsamu SatoMichio Adachi
    • F01L134
    • F02D13/0215F01L1/34F01L2001/0537F01L2001/3443F01L2001/34453F01L2001/34483F01L2001/34496F01L2800/00F01L2820/041F02D13/0219F02D13/0249F02D13/0261F15B15/12F15B15/261Y02T10/18
    • A variable valve timing adjuster with an intermediate lock mechanism learns a lock position and a lock release control. During a lock control, a learning of the lock position from a real camshaft phase is repeated to update the learned value, and the learning is ended when it is judged that the learned values have converged. At this time, when the learned values of the lock position do not converge even if the number of learning of the lock position exceeds a predetermined value, an insufficient lock state is judged, and the learned value of the lock position is set to an initial value or the learned value at the previous lock control thereby to make a lock release control. During the lock release control, on the other hand, the control (or the lock release control) of a hydraulic control valve is learned. When the lock cannot be released during the lock release control, the lock release control (or the learned value) is corrected in a direction to facilitate the lock release. When the correction of the lock release control is repeated a predetermined or more number of times or when the lock release control goes outside a predetermined range, the lock release failure is judged.
    • 具有中间锁定机构的可变气门正时调节器学习锁定位置和锁定释放控制。 在锁定控制期间,重复从真实凸轮轴相位学习锁定位置以更新学习值,并且当判断学习值已经收敛时学习结束。 此时,即使锁定位置的学习数量超过预定值,锁定位置的学习值也不会收敛,则判断为不充分的锁定状态,并将锁定位置的学习值设定为初始值 值或先前锁定控制的学习值,从而进行锁定释放控制。 另一方面,在锁定解除控制期间,学习了液压控制阀的控制(或锁定解除控制)。 在锁定释放控制期间不能释放锁定时,锁定释放控制(或学习值)在一个方向上被纠正以便于释放锁定。 当锁定解除控制的校正重复预定次数或更多次时,或者当锁定解除控制超出预定范围时,判断锁定解除失败。
    • 2. 发明授权
    • Valve timing adjusting device
    • 气门正时调整装置
    • US06848401B2
    • 2005-02-01
    • US10419272
    • 2003-04-21
    • Akihiko TakenakaMichio AdachiTakayuki Inohara
    • Akihiko TakenakaMichio AdachiTakayuki Inohara
    • F01L1/46F01L1/34F01L1/344
    • F01L1/352F01L2250/02F01L2820/032
    • A valve timing adjusting device adjusts valve timing by shifting rotational phase of a camshaft relative to a crankshaft. The device has an electric motor for rotating a rotor member that drives and moves a phase defining member to a required position. The phase defining member defines the rotational phase of the camshaft in accordance with the position itself. The phase defining member may be a planetary gear rotatably supported on an eccentric shaft as the rotor member. The planetary gear works as both a reduction mechanism and a phase shifting mechanism. The phase defining member may be a control pin slidably supported on a rotatable member as the rotor member. A planetary gear may be additionally used as the reduction mechanism for rotating the rotatable member. It is possible to control the phase with high accuracy and durability.
    • 气门正时调节装置通过使凸轮轴相对于曲轴的旋转相位移动来调节气门正时。 该装置具有用于使转子部件转动的电动机,该转子部件将相位限定部件驱动并移动到所需位置。 相位限定构件根据位置本身限定凸轮轴的旋转相位。 相定义构件可以是作为转子构件可旋转地支撑在偏心轴上的行星齿轮。 行星齿轮同时作用于减速机构和相移机构。 相定义构件可以是作为转子构件可滑动地支撑在可旋转构件上的控制销。 可以另外使用行星齿轮作为用于旋转可旋转构件的减速机构。 可以高精度和耐久地控制相位。
    • 4. 发明授权
    • Valve timing control system for internal combustion engine
    • 内燃机气门正时控制系统
    • US5669343A
    • 1997-09-23
    • US644942
    • 1996-05-13
    • Michio Adachi
    • Michio Adachi
    • F01L1/34F01L1/344F02D11/06
    • F01L1/34406F01L2001/34433
    • A valve timing control system for an internal combustion engine includes a valve timing varying mechanism having a camshaft for driving an intake or exhaust valve, a hydraulic piston for varying an angular phase of the camshaft relative to an engine crankshaft, and valve timing advancing and retarding hydraulic pressure chambers for determining a position of the hydraulic piston. The valve timing control system further includes a control valve for controlling hydraulic pressures to be applied to the hydraulic pressure chambers. The control valve includes a sleeve and a spool slidably received in the sleeve. The sleeve is formed with a plurality of openings which, in cooperation with the spool, selectively establish and prohibit communication of the hydraulic pressure chambers relative to high and low pressure sides. Each of the openings is in the form of a groove and extends partially along the circumference of the sleeve. Arrangement of these openings is such that the adjacently arranged openings of at least one pair are offset relative to each other by 180 degrees in a circumferential direction of the sleeve and by a given small distance in an axial direction of the sleeve.
    • 用于内燃机的气门正时控制系统包括具有用于驱动进气门或排气门的凸轮轴的气门正时变化机构,用于改变凸轮轴相对于发动机曲轴的角相位的液压活塞和气门正时推进和延迟 用于确定液压活塞的位置的液压室。 气门正时控制系统还包括用于控制施加到液压室的液压的控制阀。 控制阀包括套筒和可滑动地容纳在套筒中的阀芯。 套筒形成有多个开口,其与阀芯协作选择地建立和禁止液压室相对于高压侧和低压侧的连通。 每个开口均为凹槽的形式,并且部分沿着套筒的圆周延伸。 这些开口的布置使得至少一对的相邻布置的开口在套筒的圆周方向上相对于彼此偏移180度,并且在套筒的轴向方向上给定小的距离。
    • 6. 发明授权
    • Valve timing adjustment device for internal combustion engine
    • 内燃机气门正时调整装置
    • US5724928A
    • 1998-03-10
    • US759421
    • 1996-12-05
    • Yasushi MoriiTomomasa OonishiMichio Adachi
    • Yasushi MoriiTomomasa OonishiMichio Adachi
    • F01L1/34F01L1/344
    • F01L1/34406
    • According to the present invention, in a valve timing adjustment device, an arc-shaped gears are assembled alternately on a piston in the peripheral direction. A spring biases an annular member and the arc-shaped gear in the direction as to be away from the piston. A pin is press-fitted into a retainer ring. A spring biases the arc-shaped gear toward the retainer ring, that is, in the direction as to be closer to the piston. An annular member, an annular groove, the head of the pin, a cap, and a containing hole function as a hydraulic damper, respectively. Accordingly, the collision speed of the annular member with the piston accompanied by the movement of the arc-shaped gears, and the piston and the collision speed of the head of the pin with the piston are slowed down. In this way, the respective collision noises can be reduced.
    • 根据本发明,在气门正时调整装置中,在圆周方向的活塞上交替地组装弧形齿轮。 弹簧在远离活塞的方向偏置环形构件和弧形齿轮。 销钉压入固定环。 弹簧将弧形齿轮朝向保持环偏压,即朝向靠近活塞的方向。 分别为环形构件,环形槽,销头,帽和容纳孔。 因此,环形构件与活塞的碰撞速度伴随着弧形齿轮的移动,活塞和活塞头的碰撞速度变慢。 以这种方式,可以减少各自的碰撞噪声。
    • 7. 发明授权
    • Valve timing control device
    • 气门正时控制装置
    • US5483930A
    • 1996-01-16
    • US386908
    • 1995-02-08
    • Yoshihito MoriyaAkihiko TakenakaMichio Adachi
    • Yoshihito MoriyaAkihiko TakenakaMichio Adachi
    • F01L1/34F01L1/344
    • F01L1/34406Y10T74/2102
    • In a valve timing control device, when a camshaft is retained relative to a timing pulley, a hydraulic piston is applied with a force which moves it in a direction toward an advancing-side hydraulic chamber (i.e., in the direction to vary a valve timing to a delaying side) owing to reaction of the driving torque of the camshaft. This force causes fluid to leak out of the advancing-side hydraulic chamber, and the hydraulic piston is liable to move toward this hydraulic chamber. However, fluid of an amount corresponding to an amount of this leakage is supplied to the advancing-side hydraulic chamber by way of a control valve. Also, discharge of fluid from a delaying-side hydraulic chamber via the control valve is stopped. Thus, the movement of the hydraulic piston toward the advancing-side hydraulic chamber when the hydraulic piston is retained at a desired position is prevented. Therefore, the hydraulic piston can be stably retained at the desired position, and a desired valve timing can be maintained.
    • 在气门正时控制装置中,当凸轮轴相对于正时滑轮保持时,液压活塞被施加一个力,该力使其沿着前进侧液压室的方向(即,在改变气门正时的方向 由于凸轮轴的驱动转矩的反作用而导致延迟侧)。 该力导致流体从前进液压室泄漏出来,液压活塞易于向该液压室移动。 然而,通过控制阀将对应于该泄漏量的量的流体提供给前进侧液压室。 而且,通过控制阀从延迟侧液压室排出的液体停止。 因此,防止当液压活塞保持在期望位置时液压活塞向前进侧液压室的移动。 因此,可以将液压活塞稳定地保持在期望的位置,并且可以保持期望的气门正时。
    • 9. 发明授权
    • Valve timing adjusting apparatus
    • 气门正时调节装置
    • US06655332B2
    • 2003-12-02
    • US10369710
    • 2003-02-21
    • Akihiko TakenakaMichio Adachi
    • Akihiko TakenakaMichio Adachi
    • F01L134
    • F01L1/352F01L1/34409
    • Upon transmission of a first torque from a first brake portion to a first eccentric shaft, the first eccentric shaft rotates in a retarding direction relative to a rotating member. This causes a first planetary gear to rotate in an advancing direction together with a first output shaft and a driven shaft. Upon transmission of a second torque from a second brake portion to a second eccentric shaft, the second eccentric shaft rotates in a retarding direction relative to the rotating member. This causes a second planetary gear to rotate in the advancing direction together with a second output shaft and the first eccentric shaft, relative to the rotating member, while maintaining rotation in the advancing direction relative to the second eccentric shaft and causes the first planetary gear to rotate in the retarding direction together with the first output shaft and the driven shaft relative to the rotating member.
    • 当第一扭矩从第一制动部分传递到第一偏心轴时,第一偏心轴相对于旋转构件沿延迟方向旋转。 这使得第一行星齿轮与第一输出轴和从动轴一起在前进方向上旋转。 当第二扭矩从第二制动部分传递到第二偏心轴时,第二偏心轴相对于旋转构件沿延迟方向旋转。 这使得第二行星齿轮相对于旋转构件与第二输出轴和第一偏心轴一起在前进方向上旋转,同时保持相对于第二偏心轴在前进方向上的旋转,并使第一行星齿轮 与第一输出轴和从动轴相对于旋转构件一起在减速方向上旋转。
    • 10. 发明授权
    • Variable valve timing mechanism
    • 可变气门正时机构
    • US06269785B1
    • 2001-08-07
    • US09546713
    • 2000-04-10
    • Michio Adachi
    • Michio Adachi
    • F01L134
    • F01L1/3442
    • A cylindrical bush is provided at the distal end of an oil distributor inserted from the front cover side of a housing to prevent pressure oil from leaking from hydraulic chambers via a clearance formed between the hydraulic chambers and the housing. Further, sealing members are provided on both sides in the axial direction of a connecting section between an oil passage for supplying pressure oil to advancing hydraulic chambers and the oil distributor. The sealing members prevent a leakage from the connecting section.
    • 在从壳体的前盖侧插入的油分配器的远端处设置有圆柱形衬套,以防止压力油经由形成在液压室和壳体之间的间隙从液压室泄漏。 此外,在用于向前进液压室供给压力油的油路和油分配器之间的连接部的轴向的两侧设置密封构件。 密封构件防止连接部分的泄漏。