Claims
- 1. A shift control system for an automatic transmission, the automatic transmission having a main gear train and an auxiliary gear train operatively coupled therewith, the main gear train including a forward one-way clutch and an overrunning clutch arranged in parallel therewith, the auxiliary gear train including a first friction element for high gear position and a second friction element for low gear position, the shift control system comprising:
- a source of hydraulic fluid;
- a first hydraulic passage connected with the second friction element through a one-way valve;
- a second hydraulic passage;
- shift valve means for supplying the hydraulic fluid from said source of hydraulic fluid selectively to said first hydraulic passage and said second hydraulic passage;
- a third hydraulic passage connected with the second friction element;
- a fourth hydraulic passage connected with the first friction element and said second hydraulic passage through an orifice;
- a fifth hydraulic passage connected with the overrunning clutch;
- means for supplying the hydraulic fluid to said fifth hydraulic passage when an engine brake is demanded;
- an accumulator including a first pressure chamber and a second pressure chamber, said first pressure chamber being connected with said fourth hydraulic passage; said shift valve means including a spool movable between a first position where the hydraulic fluid is supplied to said first hydraulic passage and hydraulic fluid is discharged from said second passage, and a second position where the hydraulic fluid is supplied to said second hydraulic passage and hydraulic fluid is discharged from said first hydraulic passage; and
- a sequence valve including a spool, a pilot port and an overrule port, said spool being movable between a connecting position where said third hydraulic passage connected with the second friction element communicates with said first hydraulic passage, and a discharge position where the hydraulic fluid of said third hydraulic passage is drained, said pilot port being connected with said fourth hydraulic passage, said overrule port being connected with said fifth hydraulic passage, in the event said overrule port fails to undergo the hydraulic pressure said spool being at said connecting position when the hydraulic pressure of said pilot port is smaller than a predetermined value, and being at said discharge position when the hydraulic pressure of said pilot port is greater than said predetermined value, in the event said overrule port undergoes the hydraulic pressure said spool being at said connecting position regardless of the hydraulic pressure of said pilot port.
- 2. A shift control system as claimed in claim 1, wherein said auxiliary gear train includes a planetary gear set having an internal gear, a pinion carrier and a sun gear.
- 3. A shift control system as claimed in claim 2, wherein said auxiliary gear train includes an input shaft connected with said internal gear, and an output shaft connected with said pinion carrier.
- 4. A shift control system as claimed in claim 1, wherein said first friction element includes a reduction brake, and said second friction element includes a direct clutch.
- 5. A shift control system as claimed in claim 4, wherein said reduction brake can hold stationary said sun gear, and said direct clutch can connect two desired of said internal gear, said pinion carrier, and said sun gear with each other.
- 6. A shift control system as claimed in claim 1, wherein said supplying means include a manual valve having a predetermined range position where said third hydraulic passage is connected with said source of the hydraulic fluid.
- 7. In an automatic transmission:
- a main gear train including a forward one-way clutch and an overrunning clutch arranged in parallel therewith;
- an auxiliary gear train operatively coupled with said main gear train, said auxiliary gear train including a first friction element for high gear position and a second friction element for low gear position;
- a source of hydraulic fluid;
- a first hydraulic passage connected with said second friction element through a one-way valve;
- a second hydraulic passage;
- shift valve means for supplying the hydraulic fluid from said source of hydraulic fluid selectively to said first hydraulic passage and said second hydraulic passage;
- a third hydraulic passage connected with said second friction element;
- a fourth hydraulic passage connected with said first friction element and said second hydraulic passage through an orifice;
- a fifth hydraulic passage connected with said overrunning clutch;
- means for supplying the hydraulic fluid to said fifth hydraulic passage when an engine brake is demanded;
- an accumulator including a first pressure chamber and a second pressure chamber, said first pressure chamber being connected with said fourth hydraulic passage;
- said shift valve means including a spool movable between a first position where the hydraulic fluid is supplied to said first hydraulic passage and hydraulic fluid is discharged from said second hydraulic passage, and a second position where the hydraulic fluid is supplied to said second hydraulic passage and hydraulic fluid is discharged from said first hydraulic passage; and
- a sequence valve including a spool, a pilot port and an overrule port, said spool being movable between a connecting position where said third hydraulic passage connected with said second friction element communicates with said first hydraulic passage, and a discharge position where the hydraulic fluid of said third hydraulic passage is drained, said pilot port being connected with said fourth hydraulic passage, said overrule port being connected with said fifth hydraulic passage, in the event said overrule port fails to undergo the hydraulic pressure said spool being at said connecting position when the hydraulic pressure of said pilot port is smaller than a predetermined value, and being at said discharge position when the hydraulic pressure of said pilot port is greater than said predetermined value, in the event said overrule port undergoes the hydraulic pressure said spool being at said connecting position regardless of the hydraulic pressure of said pilot port.
Priority Claims (1)
Number |
Date |
Country |
Kind |
63-198937 |
Aug 1988 |
JPX |
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BACKGROUND OF THE INVENTION
The present invention is a divisional application of U.S. patent application 07/391,772, filed Aug. 10, 1989 now U.S. Pat. No. 5,050,460, and relates to a shift control system for an automatic transmission.
US Referenced Citations (6)
Divisions (1)
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Number |
Date |
Country |
Parent |
391772 |
Aug 1989 |
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