Claims
- 1. A pressure valve drive control method for a continuously variable vehicle speed change gear mechanism including a pulley having a fixed pulley member fixed to a rotary shaft and a movable pulley member movable toward and away from the fixed pulley member in response to oil pressure so that a groove width between said fixed and movable pulley members is respectively decreased and increased to thereby respectively increase and reduce the effective rotational radius of a belt extending between said fixed and movable pulley members to thus change a gear ratio and thereby control a gear change, pressure control valve means for controlling said oil pressure, vehicle velocity detecting means for detecting a velocity of the vehicle, and control unit means for controlling said pressure ontrol valve means in accord with an oil temperature, said method including the step of causing said control unit means to vary a driving frequency of said pressure control valve means in respeonse to variation of a vehicle velocity detecting signal from said vehicle velocity detecting means indicative of a change in vehicle velocity.
- 2. A method according to claim 1, wherein said pressure control valve includes a three-way electromagnetic valve.
- 3. A pressure valve drive control method for a continuously variable vehicle speed change gar mechanism includng a pulley having a fixed pulley member fixed to a rotary shfat and a movable pulley member movable toward and away from the fixed pulley member in response to oil pressure so that a groove width between said fixed and movable pulley members is respectiely decreased and increased to thereby respectively increase and reduce the effective rotational radius of a belt extending between said fixed and movable pulley members to thus change a gear ratio and thereby control a gear change, pressure control valve means for controling said oil pressure, vehicle velocity detecting means for detecting a velocity of the vehicle, and control unit means for controlling said pressure control valve means in accord with an oil temperature, said method including the step of causing said control unit valve means in response to a vehicle velotity detecting signal from said vehicle velocity detecting means; wherein said step of causing said control unit means to switch said driving frequency includes the step, when the vehicle velocity is at least 60 kn/hous, of cuasing tsaid control unit means to swtich the driving frequency of said pressure control valve means from a fundamental frequency of 100 Hz to a frequency pf 50 Hz.
- 4. A method of controlling a vehicle gear change mechanism responsive to the fluid pressure in a fluid line using electrically actuable valve means for selectively supplying a pressurized fluid to said fluid line, comprising the steps of supplying to said valve means an electrical signal at a selected frequency to control actuation of said valve mena, varying a duty ratio of said electrical signal to adjust the fluid pressure within said fluid line, measuring the velocity of the vehicle, and adjusting said selected frequency in response to variation of the measured velocity of the vehicle.
- 5. A method of claim 4, wherein said adjusting step includes the step of setting said selected frequency to a first frequency value when the measured velocity of the vehicle is below a first velocity and to a second frequency value when the measured velocity of the vehicle thereafter exceeds said first vehocity, said first frequency value being higher than said second freuency value.
- 6. A method of claim 5, wherein said adjusting step including the step of thereafter changing said selected frequency from said second frequency value to said first frequency value when the measured velocity of the vehicle drops below a second velocity which is less than said first velocity.
- 7. A method of claim 6, wherein said first velocity is approzimately 5 kilometers per hour higher than said second velocity.
- 8. A method of claim 7 wherein said first velocity is approximately 60 kilometers per hour, said second velocty is approximately 55 kilometers per hour, said first frequency value is approximately 100 Hz and said second frequency value is approximately 50 Hz.
- 9. A method of claim 5, wherein said adjusting step includes the step of continuing to use said second frequency value as said selected frequency when a temperature of said fluid is less than a predetermined temperature, regardless of changes in the measured velocity of the vehicle, and the step of changing said selected frequency from said second frequency value to said first frequency value when said temperature of said fluid is above said predetermined temperature and the measured velocity of the vehicle changes from a velocity above to a velocity below said second velocity.
- 10. A method of claim 9, wherein said first velocity is approximately 60 kilometers per hour, said second velocity is approximately 55 kilometers per hour, said first frequency value is approximately 100 Hz, said second frequency value is approximately 50 Hz, and said predetermined temperature is approximately -5.degree. C.
- 11. A method of claim 6, wherein said second frequency value is approximately half of said first frequency value.
- 12. A method of claim 6, including prior to said adjusting step the step of selectng as a function of the temperature of said fluid one of a plurality of different frequency values as an initial frequency value, said plurality of values including said first and second frequency values and at least one frequency value less than said second frequency vaue, and using said initial frequency value as said selected frequency when said initial frequency value is less than said second frequency value.
- 13. A method of claim 12, wherein said step of selecting said initial frequency value is carried out by selecting progressively higher frequency values from said plurality of values as the temperature of said pressurzed fluid progrssively increases.
- 14. A method of claim 5, including the step of detecting whether a clutch coupled to said gear change mechanism is fully engaged, and carryng out said adjusting step in response to a determination in said detecting step that said clutch is fully engaged.
Priority Claims (3)
Number |
Date |
Country |
Kind |
62-199420 |
Aug 1987 |
JPX |
|
62-274746 |
Oct 1987 |
JPX |
|
62-310815 |
Dec 1987 |
JPX |
|
Parent Case Info
This is a division of Ser. No. 07/229,942, filed 8 Aug. 1988.
US Referenced Citations (12)
Divisions (1)
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Number |
Date |
Country |
Parent |
229942 |
Aug 1988 |
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