IP Library › Granted Patent US 9,827,846
Granted Patent B2
US 9,827,846 · App. 14/735,658 · Granted Nov 28, 2017

Traction battery cooling system

Inventors: Angel Fernando Porras (Dearborn, MI); Mark G. Smith (Canton, MI); Timothy Noah Blatchley (Dearborn, MI); Kenneth J. Jackson (Dearborn, MI)
Assignee: Ford Global Technologies, LLC
B60K11/085B60K6/48B60K11/04B60L1/02B60L11/1816B60L11/1874B60K2001/005B60L2240/545B60L2240/662Y02T10/6221
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Quick Facts
Patent No.
US 9,827,846
App. No.
14/735,658
Granted
Nov 28, 2017
Kind
B2
Abstract

A vehicle includes a traction battery and a cooling system. The cooling system has a chiller, a radiator, and conduit and valving arranged to form a thermal circuit configured to selectively transport heat via coolant from the traction battery to the radiator. The vehicle also includes a grille shutter assembly having an opening and shutters movable to alter an effective cross-sectional area of the opening. A controller is programed to operate the shutters to change the effective cross-sectional area of the opening to increase or decrease air flow over the radiator based on a temperature of the coolant and an ambient air temperature.

Claims (34)

1. A vehicle comprising:

a traction battery;

a grill shutter assembly including an opening and shutters movable to alter an effective cross-sectional area of the opening;

a battery thermal management system including

a refrigerant subsystem having a compressor, a condenser, and a chiller,

a coolant subsystem having a pump, a radiator, and conduit arranged to carry coolant between the traction battery and the radiator to cool the traction battery, the coolant subsystem further having a radiator-bypass conduit in fluid communication with the chiller and a valve configured to selectively route coolant to the radiator or the chiller depending upon a position of the valve, and

a fan adjacent to the radiator and the condenser and configured to circulate air over the radiator and the condenser; and

a controller configured to,

in response to a temperature of the traction battery being greater than a first threshold and an ambient air temperature being less than the temperature of the traction battery, (i) actuate the valve to route coolant to the radiator and (ii) operate the shutters to change the effective cross-sectional area of the opening to increase or decrease air flow over the radiator based on a temperature of the coolant, the ambient air temperature, and a speed of the vehicle,

in response to the temperature of the traction battery being greater than the first threshold and less than a second threshold, and the ambient air temperature being less than the temperature of the traction battery, (i) actuate the valve to route coolant to the radiator, (ii) operate the shutters to change the effective cross-sectional area of the opening to increase or decrease air flow over the radiator based on a temperature of the coolant, the ambient air temperature, and a speed of the vehicle, and (iii) run the fan at a duty cycle that is based on a temperature of the coolant and the ambient air temperature, and

in response to the temperature of the traction battery being above the second threshold or the ambient air temperature being above the temperature of the traction battery, actuate the valve to route coolant to the chiller.

2. The vehicle of claim 1 wherein the duty cycle of the fan increases in response to the temperature of the coolant increasing.

3. The vehicle of claim 1 further comprising a charge port, wherein the controller is further programed to run the fan in response to the traction battery receiving charge via the charge port.

4. The vehicle of claim 1 wherein the controller is further programmed, in response to the temperature of the battery being greater than the first threshold and the vehicle being in parked, actuate the shutters to a fully opened position.

5. The vehicle of claim 1 wherein the controller is further programmed to de-energize the fan in response to the temperature of the traction battery being less than a third threshold and an ambient air temperature being less than the temperature of the traction battery.

6. A vehicle comprising:

a traction battery;

a grill shutter assembly;

a battery thermal management system including

a refrigerant subsystem having a chiller and a condenser,

a coolant subsystem having a radiator and conduit arranged to carry coolant between the traction battery, the radiator, and the chiller,

a valve configured to selectively route coolant to the radiator or the chiller, and

a fan configured to circulate air through the radiator and the condenser; and

a controller programmed to,

in response to a temperature of the traction battery being between first and second thresholds, and an ambient air temperature being less than the temperature of the traction battery, (i) actuate the valve to route coolant to the radiator, (ii) open the grill shutters, and (iii) run the fan at a duty cycle that is based on a temperature of the coolant and the ambient air temperature, and

in response to the temperature of the traction battery being greater than the second threshold or the ambient air temperature being greater than the temperature of the traction battery, actuate the valve to route coolant to the chiller.

7. The vehicle of claim 6 wherein the controller is further programmed to, in response to a temperature of the traction battery being less than the first threshold and an ambient air temperature being below the temperature of the traction battery, (i) actuate the valve to route coolant to the radiator and (ii) operate the grill shutter assembly to increase or decrease air flow over the radiator based on a temperature of the coolant, the ambient air temperature, and a speed of the vehicle, and (iii) de-energize the fan.

8. The vehicle of claim 6 wherein the grill shutter assembly further includes a first bank of shutters and a second bank of shutters, wherein the first and second banks are independently movable relative to each other.

9. The vehicle of claim 6 wherein the controller is further programmed to operate the grill shutter assembly to change an effective cross-sectional area of an opening of the grill shutter assembly to increase or decrease air flow though the radiator based on a temperature of the coolant, the ambient air temperature, and a speed of the vehicle.

10. The vehicle of claim 6 wherein the controller is further programmed, in response to the temperature of the battery being greater than the first threshold and the vehicle being in parked, actuate the grill shutter assembly to a fully opened position.

11. A vehicle comprising:

a controller programmed to,

in response to a temperature of a traction battery being between first and second thresholds, and an ambient air temperature being less than a temperature of the traction battery, (i) actuate a valve to route coolant to a radiator, (ii) increase an opening of a grill shutter assembly, and (iii) run a fan at a duty cycle that is based on a temperature of coolant circulating through the battery and the ambient air temperature, and

in response to a temperature of the traction battery being greater than a second threshold or the ambient air temperature being greater than the temperature of the traction battery, actuate the valve to route coolant to a chiller of a refrigerant system.

Assignments (2)
CORRECTIVE ASSIGNMENT TO CORRECT THE THE INVENTOR NAME MIKE G. SMITH TO MARK G. SMITH AS INDICATED ON THE ASSIGNMENT DOCUMENT PREVIOUSLY RECORDED ON REEL 035817 FRAME 0837. ASSIGNOR(S) HEREBY CONFIRMS THE CORRECT INVENTOR NAME IS MARK G. SMITH, NOT MIKE G. SMITH. Recorded Jul 30, 2015
From: PORRAS, ANGEL FERNANDO; SMITH, MARK G.; BLATCHLEY, TIMOTHY NOAH; JACKSON, KENNETH J.
To: FORD GLOBAL TECHNOLOGIES, LLC
Reel/Frame 036229/0940 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 10, 2015
From: PORRAS, ANGEL FERNANDO; SMITH, MIKE G.; BLATCHLEY, TIMOTHY NOAH; JACKSON, KENNETH J.
To: FORD GLOBAL TECHNOLOGIES, LLC
Reel/Frame 035817/0837 →
Continuity (1)
Related Publication 20160361990A1 · Dec 15, 2016