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    • 7. 发明申请
    • LOCK-UP CLUTCH CONTROL DEVICE
    • 锁定离合器控制装置
    • US20100145584A1
    • 2010-06-10
    • US12452463
    • 2008-07-07
    • Sei Kojima
    • Sei Kojima
    • G06F19/00
    • F16H61/143F16H2059/186F16H2061/0087Y10T477/75Y10T477/755Y10T477/78
    • When deceleration lock-up differential pressure learning control is entered and a difference between this deceleration lock-up differential pressure instruction value and a disengagement initial pressure of lock-up smooth off control becomes smaller than prior to deceleration lock-up differential pressure learning control, the disengagement initial pressure PS of lock-up smooth off control is corrected to a low side in accordance with a difference between that deceleration lock-up differential pressure instruction value and the disengagement initial pressure. Furthermore, by changing the sweep gradient of lock-up smooth off control to a small side, and in addition, correcting the disengagement initial pressure PS of lock-up smooth off control to a low side in consideration of disengagement delay of the lock-up clutch pursuant to that sweep gradient change, the actual disengagement time during lock-up smooth off control can be matched with a target disengagement time.
    • 当减速锁定差压学习控制进入时,该减速锁定差压指令值与解锁初始压力之间的差异平滑关闭控制变得比减速锁定差压学习控制之前的差, 根据该减速锁定差压指示值与分离初始压力的差,将锁定平滑关闭控制的分离初始压力PS修正为低侧。 此外,通过将锁定平滑关闭控制的扫掠梯度改变为小侧,并且另外,考虑到锁定的分离延迟,将锁定的分离初始压力PS修正到低侧 离合器根据该扫描梯度变化,锁定期间的实际分离时间平滑关闭控制可以与目标分离时间相匹配。