Oil vibration diagnosis apparatus and oil vibration diagnosis method
US-2018321079-A1 · Nov 8, 2018 · US
US9488197B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9488197-B2 |
| Application number | US-201314099709-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 6, 2013 |
| Priority date | Jul 10, 2013 |
| Publication date | Nov 8, 2016 |
| Grant date | Nov 8, 2016 |
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A hydraulic circuit may include a proportional control solenoid valve controlling hydraulic pressure such that an operating hydraulic pressure required by the friction member is supplied to the friction member; a supply hydraulic path connecting the proportional control solenoid valve with the friction member, and adapted to supply hydraulic pressure controlled by the proportional control solenoid valve to the friction member; and a switch valve disposed in the supply hydraulic path so as to selectively open/close the supply hydraulic path.
Opening claim text (preview).
What is claimed is: 1. A hydraulic circuit for an automatic transmission that is adapted to supply hydraulic pressure to a plurality of friction members provided in the automatic transmission so as to realize a plurality of shift speeds, the hydraulic circuit comprising: a plurality of proportional control solenoid valves controlling the hydraulic pressure such that an operating hydraulic pressure required by the friction members is supplied to the friction members; a plurality of supply hydraulic paths each connecting a corresponding one of the proportional control solenoid valves with a corresponding one of the friction members, and adapted to supply the operating hydraulic pressure controlled by the corresponding proportional control solenoid valve to the corresponding friction member; a plurality of switch valves each disposed in a corresponding one of the supply hydraulic paths so as to selectively open or close the corresponding supply hydraulic path; an on/off solenoid valve operating at least two of the switch valves; and an elastic member provided to each of the at least two switch valves for returning the switch valves to an original position, wherein foreign materials having flowed into the proportional control solenoid valves which are connected with the friction members are simultaneously removed in a case in which the plurality of switch valves are connected with the one on/off solenoid valve by stopping the switch valves and operating the one on/off solenoid valve in a full stroke. 2. The hydraulic circuit of claim 1 , further comprising: an inflow hydraulic path connected to the proportional control solenoid valves and provided for supplying oil to the proportional control solenoid valves; and an outflow hydraulic path connected to the proportional control solenoid valves and provided for exhausting oil from the proportional control solenoid valves. 3. The hydraulic circuit of claim 2 , wherein the operating hydraulic pressure supplied to the friction members is controlled according to the oil flowing into the proportional control solenoid valves through the inflow hydraulic path and the oil exhausted from the proportional control solenoid valves through the outflow hydraulic path. 4. The hydraulic circuit of claim 1 , each of the at least two switch valves comprising: an opening unit formed to open the supply hydraulic path when the opening unit is engaged in the supply hydraulic path; and a closing unit formed to close the supply hydraulic path when the closing unit is engaged in the supply hydraulic path, wherein the closing unit is engaged in the supply hydraulic path when the switch valve is operated, and the opening unit is engaged in the supply hydraulic path when the switch valve returns to the original position. 5. The hydraulic circuit of claim 1 , wherein an operation to remove the foreign materials having flowed into the proportional control solenoid valves is performed in a state of closing the supply hydraulic path. 6. The hydraulic circuit of claim 5 , wherein each proportional control solenoid valve includes a spool which reciprocates in the proportional control solenoid valve such that the operating hydraulic pressure generated from the proportional control solenoid valves is controlled, and the foreign materials having flowed into the proportional control solenoid valves are removed by a reciprocal motion of the spools in the state of closing the supply hydraulic path.
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