Claims
- 1. A lock-up control device for a torque converter in a vehicle, said torque converter comprising an input element connected to an engine which rotates according to a depression of an accelerator and an output element connected to an automatic transmission, said control device comprising:a sensor for detecting a depression degree of the accelerator, a sensor for detecting a throttle opening, a sensor for detecting a vehicle speed, and a microprocessor programmed to: determine whether or not the vehicle is coasting based on the depression degree of the accelerator, determine whether or not the torque converter is in a lock-up state wherein said input and output elements are directly combined, calculate an accelerator depression speed from the depression degree of the accelerator, shift the torque converter to the lock-up state when a lock-up condition holds, said lock-up condition including that the vehicle speed is in a predetermined lock-up speed range and the throttle opening is in a predetermined lock-up opening range, shift the torque converter to an unlock state, in which said input and output elements are indirectly combined, when an unlock condition holds, said unlock condition including that the accelerator is depressed at a speed larger than a predetermined speed after a state where the vehicle has been coasting at a speed within said predetermined lock-up speed range with a throttle opening within said predetermined lock-up opening range and the torque converter has been in the lock-up state, determine whether or not the vehicle speed is within a predetermined re-lock-up prevention speed range, and prevent the torque converter from shifting to the lock-up state, irrespective of the accelerator depression, as long as the vehicle speed is within the predetermined re-lock-up prevention speed range, after the torque converter has been shifted to the unlock state in said unlock condition, while allowing the torque converter to shift to the lock-up state after the torque converter has been shifted to the unlock state in a condition other than said unlock condition.
- 2. The lock-up control device as defined in claim 1, wherein the engine comprises a throttle which operates according to the depression of the accelerator, and the accelerator depression degree sensor comprises a sensor for detecting an opening of the throttle.
- 3. The lock-up control device as defined in claim 1, wherein the microprocessor is further programmed not to shift the torque converter to the lock-up state when the vehicle speed is less than the predetermined re-lock-up prevention speed range irrespective of the accelerator depression speed.
- 4. The lock-up control device as defined in claim 1, wherein the microprocessor is further programmed to calculate a time elapsed from when the torque converter was shifted from the lock-up state to the unlock state, and allow the torque converter to shift to the lock-up state when the elapsed time has reached a set time even when the vehicle speed is within the predetermined re-lock-up prevention speed range.
- 5. The lock-up control device as defined in claim 4 wherein the microprocessor is further programmed to learn an average speed of the accelerator depression after coasting of the vehicle, and modify the set time to a longer time when the average speed is larger than a standard value.
- 6. A lock-up control device for a torque converter in a vehicle, said torque converter comprising an input element connected to an engine which rotates according to a depression of an accelerator and an output element connected to an automatic transmission, said control device comprising:means for detecting a depression degree of the accelerator, means for detecting a throttle opening, means for detecting a vehicle speed, and means for determining whether or not the vehicle is coasting based on the depression degree of the accelerator, means for determining whether or not the torque converter is in a lock-up state wherein said input and output elements are directly combined, means for calculating an accelerator depression speed from the depression degree of the accelerator, means for shifting the torque converter to the lock-up state when a lock-up condition holds, said lock-up condition including that the vehicle speed is in a predetermined lock-up speed range and the throttle opening is in a predetermined lock-up opening range, means for shifting the torque converter to an unlock state, in which said input and output elements are indirectly combined, when an unlock condition holds, said unlock condition including that the accelerator is depressed at a speed larger than a predetermined speed after a state where the vehicle has been coasting at a speed within said predetermined lock-up speed range with a throttle opening within said predetermined lock-up opening range and the torque converter has been in the lock-up state, means for determining whether or not the vehicle speed is within a predetermined re-lock-up prevention speed range, and means for preventing the torque converter from shifting to the lock-up state, irrespective of the accelerator depression as long as the vehicle speed has been within the predetermined re-lock-up prevention speed range, after the torque converter is shifted to the unlock state in said unlock condition, while allowing the torque converter to shift to the lock-tip state after the torque converter has been shifted to the unlock state in a condition other than said unlock condition.
Priority Claims (1)
Number |
Date |
Country |
Kind |
9-294212 |
Oct 1997 |
JP |
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Parent Case Info
This application is a continuation of application Ser. No. 09/176,021, filed Oct. 21, 1998.
US Referenced Citations (15)
Foreign Referenced Citations (1)
Number |
Date |
Country |
8-233098 |
Sep 1996 |
JP |
Continuations (1)
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Number |
Date |
Country |
Parent |
09/176021 |
Oct 1998 |
US |
Child |
09/551661 |
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US |