Claims
- 1. A lock-up mechanism control device comprising:
a lock-up mechanism arranged in parallel with a hydraulic type torque transmitting mechanism transmitting a rotatory power of a pump impeller connected with an output shaft of an engine to a turbine impeller connected with a wheel side element, the lock-up mechanism controlling a slip value between a rotational speed of the pump impeller and a rotational speed of the turbine impeller in response to hydraulic pressure supplied to the lock-up mechanism; target slip value calculating means for calculating a target slip value based on driving condition of a vehicle; actual slip value detecting means for detecting an actual slip value from the difference between the rotational speed of the pump impeller and the rotational speed of the turbine impeller; intermediate slip value setting means for setting an intermediate slip value between the actual slip value and the target slip value; hydraulic pressure controlling means for controlling the hydraulic pressure supplied to the lock-up mechanism in order for the actual slip value to coincide with the intermediate slip value; and intermediate slip value renewal means for reducing the intermediate slip value to a renewed value closer to the target slip value than the intermediate slip value when the actual slip value reaches the intermediate slip value.
- 2. The control device of the lock-up mechanism according to claim 1, wherein the intermediate slip value renewal means renews the intermediate slip value until the intermediate slip value reaches the target slip value.
- 3. The control device of the lock-up mechanism according to claim 1, wherein the intermediate slip value renewal means adjusts the renewed value in response to a time until the actual slip value reaches the intermediate slip value after the intermediate slip value is renewed.
- 4. A method for controlling a lock-up mechanism arranged in parallel with a hydraulic type torque transmitting mechanism that transmits rotatory power of a pump impeller connected with an output shaft of an engine to a turbine impeller connected with a wheel side element, with the lock-up mechanism controlling a slip value between a rotational speed of the pump impeller and a rotational speed of the turbine impeller in response to hydraulic pressure supplied to the lock-up mechanism, comprising:
calculating a target slip value based on driving conditions of a vehicle; detecting an actual slip value between the rotational speed of the pump impeller and the rotational speed of the turbine impeller based on the difference between the rotational speed of the pump impeller and the rotational speed of the turbine impeller; setting an intermediate slip value between the actual slip value and the target slip value; controlling hydraulic pressure supplied to the lock-up mechanism to cause the actual slip value to approach the intermediate slip value; and reducing the intermediate slip value to a renewed value closer to the target slip value than the intermediate slip value when the actual slip value reaches the intermediate slip value.
- 5. The method according to claim 4, wherein the intermediate slip value is repeatedly renewed until the intermediate slip value equals the target slip value.
- 6. The method according to claim 4, including adjusting the renewed value in response to a time until the actual slip value reaches the intermediate slip value after the intermediate slip value is renewed.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2000-300018 |
Sep 2000 |
JP |
|
Parent Case Info
[0001] This application is based on and claims priority under 35 U.S.C. § 119 with respect to Japanese Patent Application No. 2000-300018 filed on Sep. 29, 2000, the entire content of which is incorporated herein by reference.