IP Library › Patent Application 12720047
Patent Application
App. No. 12/720,047

HYDRAULIC PRESSURE CONTROL APPARATUS FOR HYDRAULIC POWER TRANSMISSION

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Quick Facts
Patent No.
US None
App. No.
12/720,047
Abstract

A hydraulic pressure control apparatus for a hydraulic power transmission, which includes a pump impeller, a turbine runner, and a multi-plate impeller clutch, the multi-plate impeller clutch configured to engage the pump impeller to a power source by supplying a hydraulic pressure to a hydraulic pressure chamber. The apparatus further includes a control valve for controlling the hydraulic pressure to be supplied to the hydraulic pressure chamber, a fail valve disposed between the hydraulic pressure chamber and the control valve for selectively connecting the hydraulic pressure chamber and the control valve or the hydraulic pressure chamber and a source of a hydraulic pressure, and an electronic control portion controlling operations of the control valve and the fail valve. The hydraulic pressure chamber is connected to the source of the hydraulic pressure when at least one of the control valve, the fail valve, and the electronic control portion fails.

Claims (65)

1 . A hydraulic pressure control apparatus for a hydraulic power transmission, comprising:

the hydraulic power transmission comprising:

a pump impeller configured to rotate;

a turbine runner configured to rotate receiving an operational fluid provided from the rotating pump impeller; and

a multi-plate impeller clutch configured to disconnect the pump impeller from a power source, the multi-plate impeller clutch configured to engage the pump impeller to the power source by supplying a hydraulic pressure to a hydraulic pressure chamber;

a control valve for controlling a level of the hydraulic pressure to be supplied to the hydraulic pressure chamber;

a fail valve disposed between the hydraulic pressure chamber and the control valve, the fail valve for selectively connecting the hydraulic pressure chamber and the control valve or the hydraulic pressure chamber and a source of a hydraulic pressure; and

an electronic control portion controlling operations of the control valve and the fail valve; wherein the hydraulic pressure chamber is connected to the source of the hydraulic pressure when at least one of the control valve, the fail valve, and the electronic control portion fails.

2 . The hydraulic pressure control apparatus for the hydraulic power transmission according to claim 1 , further comprising:

a first solenoid valve connected to the fail valve for providing a hydraulic pressure to the fail valve when energized and not providing the hydraulic pressure to the fail valve when not energized; wherein

the hydraulic pressure chamber is adapted to be connected to the control valve when the hydraulic pressure is supplied to the fail valve via the first solenoid valve and the hydraulic pressure chamber is adapted to be connected to the source of hydraulic pressure when the hydraulic pressure is not supplied to the fail valve via the first solenoid valve; and wherein

the electronic control portion controls an operation of the first solenoid valve so that the hydraulic pressure chamber is connected to the source of the hydraulic pressure when the control valve fails in a state where the hydraulic pressure is not provided.

3 . The hydraulic pressure control apparatus for the hydraulic power transmission according to claim 1 , further comprising:

a second solenoid valve connected to the fail valve for selectively providing a reduced hydraulic pressure, which is controlled in accordance with an amount of energizing current supplied to the second solenoid valve, to the fail valve when energized and for providing the hydraulic pressure to the fail valve when not energized; wherein

the hydraulic pressure chamber is connected to the source of the hydraulic pressure when the hydraulic pressure is supplied to the fail valve via the second solenoid valve and the hydraulic pressure chamber is connected to control valve when the hydraulic pressure is not supplied to the fail valve via the second solenoid valve; and wherein

the electronic control portion controls an operation of the second solenoid valve so that the hydraulic pressure chamber is connected to the source of the hydraulic pressure when the control valve fails in a state where the hydraulic pressure is not provided.

4 . The hydraulic pressure control apparatus for the hydraulic power transmission according to claim 1 , further comprising:

a third solenoid valve connected to the control valve for providing a hydraulic pressure to the control valve when energized and not providing the hydraulic pressure to the control valve when not energized; wherein

the fail valve is adapted to be connected to the supply source of the hydraulic pressure when the hydraulic pressure is supplied to the control valve via the third solenoid valve, and is adapted to be connected to a discharge passage when the hydraulic pressure is not supplied to the control valve via the third solenoid valve; and wherein

the electronic control portion controls an operation of the third solenoid valve so that the hydraulic pressure chamber is connected to the source of the hydraulic pressure for engaging the impeller clutch.

5 . The hydraulic pressure control apparatus for the hydraulic power transmission according to claim 1 , wherein the control valve corresponds to a fourth solenoid valve for selectively providing a reduced hydraulic pressure, which is controlled in accordance with an amount of energizing current supplied to the fourth solenoid valve, to the fail valve when energized and which outputs the hydraulic pressure to the fail valve when not energized; and the electronic control portion controls an operation of the fourth solenoid valve so that the hydraulic pressure is supplied to the hydraulic pressure chamber via the fourth solenoid valve for engaging the impeller clutch.

6 . A hydraulic pressure control apparatus for a hydraulic power transmission, comprising:

the hydraulic power transmission comprising:

a pump impeller configured to rotate;

a turbine runner configured to rotate receiving an operational fluid provided from the rotating pump impeller; and

a single-plate impeller clutch for disconnecting the pump impeller from a power source, the single-plate impeller clutch configured to engage the pump impeller to the power source when a hydraulic pressure in a hydraulic pressure chamber is smaller than a predetermined level;

a control valve for controlling a level of the hydraulic pressure to be supplied to the hydraulic pressure chamber;

a fail valve disposed between the hydraulic pressure chamber and the control valve, the fail valve selectively connecting the hydraulic pressure chamber and the control valve or the hydraulic pressure chamber and a discharge passage; and

an electronic control portion controlling operations of the control valve and the fail valve; wherein

the hydraulic pressure chamber is connected to the discharge passage when at least one of the control valve, the fail valve, and the electronic control portion fails.

7 . The hydraulic pressure control apparatus for the hydraulic power transmission according to claim 6 , further comprising:

a first solenoid valve connected to the fail valve for providing a hydraulic pressure to the fail valve when energized and configured to connect the fail valve and the discharge passage for discharging the hydraulic pressure via the fail valve when not energized; wherein

the hydraulic pressure chamber is connected to the control valve when the hydraulic pressure is supplied to the fail valve via the first solenoid valve; and wherein

the electronic control portion controls an operation of the first solenoid valve so that the hydraulic pressure chamber is connected to the discharge passage when the control valve fails in a state where the hydraulic pressure is supplied.

8 . The hydraulic pressure control apparatus for the hydraulic power transmission according to claim 6 , further comprising:

a second solenoid valve connected to the fail valve for selectively providing a reduced hydraulic pressure, which is controlled in accordance with an amount of energizing current supplied to the second solenoid valve, to the fail valve when energized and for providing the hydraulic pressure to the fail valve when not energized; wherein

the hydraulic pressure chamber is connected to the discharge passage when the hydraulic pressure is supplied to the fail valve via the second solenoid valve and the hydraulic pressure chamber is connected to control valve when the hydraulic pressure is not supplied to the fail valve via the second solenoid valve; and wherein

the electronic control portion controls an operation of the second solenoid valve so that the hydraulic pressure chamber is connected to the discharge passage when the control valve fails in a state where the hydraulic pressure is provided.

9 . The hydraulic pressure control apparatus for the hydraulic power transmission according to claim 6 , further comprising:

a third solenoid valve connected to the control valve for providing a hydraulic pressure to the control valve when energized and not providing the hydraulic pressure to the control valve when not energized; wherein

the fail valve is adapted to be connected to the discharge passage when the hydraulic pressure is supplied to the control valve via the third solenoid valve, and is adapted to be connected to a source of a hydraulic pressure when the hydraulic pressure is not supplied to the control valve via the third solenoid valve; and wherein

the electronic control portion controls an operation of the third solenoid valve so that the hydraulic pressure chamber is connected to the discharge passage for engaging the impeller clutch.

10 . The hydraulic pressure control apparatus for the hydraulic power transmission according to claim 6 , wherein the control valve corresponds to a fifth solenoid valve which selectively provides a reduced hydraulic pressure which is controlled in accordance with an amount of energizing current supplied to the fifth solenoid valve and which provides the hydraulic pressure to the fail valve when non-energized; and the electronic control portion controls an operation of the fifth solenoid valve so that the hydraulic pressure is not supplied to the hydraulic pressure chamber via the fifth solenoid valve for engaging the impeller clutch.

11 . The hydraulic pressure control apparatus for the hydraulic power transmission according to claim 1 , wherein the hydraulic power transmission includes a multi-plate type lock-up clutch or a single-plate type lock-up clutch which is configured to directly connect the turbine runner and the power source.

12 . The hydraulic pressure control apparatus for the hydraulic power transmission according to claim 2 , wherein the hydraulic power transmission includes a multi-plate type lock-up clutch or a single-plate type lock-up clutch which is configured to directly connect the turbine runner and the power source.

13 . The hydraulic pressure control apparatus for the hydraulic power transmission according to claim 2 , further comprising:

a third solenoid valve connected to the control valve for providing a hydraulic pressure to the control valve when energized and not providing the hydraulic pressure to the control valve when not energized; wherein

the fail valve is adapted to be connected to the supply source of the hydraulic pressure when the hydraulic pressure is supplied to the control valve via the third solenoid valve, and is adapted to be connected to a discharge passage when the hydraulic pressure is not supplied to the control valve via the third solenoid valve; and wherein

the electronic control portion controls an operation of the third solenoid valve so that the hydraulic pressure chamber is connected to the source of the hydraulic pressure for engaging the impeller clutch.

14 . The hydraulic pressure control apparatus for the hydraulic power transmission according to claim 3 , further comprising:

a third solenoid valve connected to the control valve for providing a hydraulic pressure to the control valve when energized and not providing the hydraulic pressure to the control valve when not energized; wherein

the fail valve is adapted to be connected to the supply source of the hydraulic pressure when the hydraulic pressure is supplied to the control valve via the third solenoid valve, and is adapted to be connected to a discharge passage when the hydraulic pressure is not supplied to the control valve via the third solenoid valve; and wherein

the electronic control portion controls an operation of the third solenoid valve so that the hydraulic pressure chamber is connected to the source of the hydraulic pressure for engaging the impeller clutch.

15 . The hydraulic pressure control apparatus for the hydraulic power transmission according to claim 2 , wherein the control valve corresponds to a fourth solenoid valve for selectively providing a reduced hydraulic pressure, which is controlled in accordance with an amount of energizing current supplied to the fourth solenoid valve, to the fail valve when energized and which outputs the hydraulic pressure to the fail valve when not energized; and the electronic control portion controls an operation of the fourth solenoid valve so that the hydraulic pressure is supplied to the hydraulic pressure chamber via the fourth solenoid valve for engaging the impeller clutch.

16 . The hydraulic pressure control apparatus for the hydraulic power transmission according to claim 3 , wherein the control valve corresponds to a fourth solenoid valve for selectively providing a reduced hydraulic pressure, which is controlled in accordance with an amount of energizing current supplied to the fourth solenoid valve, to the fail valve when energized and which outputs the hydraulic pressure to the fail valve when not energized; and the electronic control portion controls an operation of the fourth solenoid valve so that the hydraulic pressure is supplied to the hydraulic pressure chamber via the fourth solenoid valve for engaging the impeller clutch.

17 . The hydraulic pressure control apparatus for the hydraulic power transmission according to claim 7 , further comprising:

a third solenoid valve connected to the control valve for providing a hydraulic pressure to the control valve when energized and not providing the hydraulic pressure to the control valve when not energized; wherein

the fail valve is adapted to be connected to the discharge passage when the hydraulic pressure is supplied to the control valve via the third solenoid valve, and is adapted to be connected to a source of a hydraulic pressure when the hydraulic pressure is not supplied to the control valve via the third solenoid valve; and wherein

the electronic control portion controls an operation of the third solenoid valve so that the hydraulic pressure chamber is connected to the discharge passage for engaging the impeller clutch.

18 . The hydraulic pressure control apparatus for the hydraulic power transmission according to claim 8 , further comprising:

a third solenoid valve connected to the control valve for providing a hydraulic pressure to the control valve when energized and not providing the hydraulic pressure to the control valve when not energized; wherein

the fail valve is adapted to be connected to the discharge passage when the hydraulic pressure is supplied to the control valve via the third solenoid valve, and is adapted to be connected to a source of a hydraulic pressure when the hydraulic pressure is not supplied to the control valve via the third solenoid valve; and wherein

the electronic control portion controls an operation of the third solenoid valve so that the hydraulic pressure chamber is connected to the discharge passage for engaging the impeller clutch.

19 . The hydraulic pressure control apparatus for the hydraulic power transmission according to claim 7 , wherein the control valve corresponds to a fifth solenoid valve which selectively provides a reduced hydraulic pressure which is controlled in accordance with an amount of energizing current supplied to the fifth solenoid valve and which provides the hydraulic pressure to the fail valve when energized; and the electronic control portion controls an operation of the fifth solenoid valve so that the hydraulic pressure is not supplied to the hydraulic pressure chamber via the fifth solenoid valve for engaging the impeller clutch.

20 . The hydraulic pressure control apparatus for the hydraulic power transmission according to claim 8 , wherein the control valve corresponds to a fifth solenoid valve which selectively provides a reduced hydraulic pressure which is controlled in accordance with an amount of energizing current supplied to the fifth solenoid valve and which provides the hydraulic pressure to the fail valve when energized; and the electronic control portion controls an operation of the fifth solenoid valve so that the hydraulic pressure is not supplied to the hydraulic pressure chamber via the fifth solenoid valve for engaging the impeller clutch.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 9, 2010
From: SAKAMOTO, OSAMU
To: AISIN SEIKI KABUSHIKI KAISHA
Reel/Frame 024050/0241 →