IP Library › Granted Patent US 11,260,719
Granted Patent B2
US 11,260,719 · App. 16/718,983 · Granted Mar 1, 2022

Battery cooling system including a cooling water circulation circuit

Inventors: Mitsuaki Tomita (Susono, JP); Tsuyoshi Koga (Gotemba, JP); Yusuke Suzuki (Nagakute, JP); Masaya Kaji (Toyota, JP)
Assignee: TOYOTA JIDOSHA KABUSHIKI KAISHA
B60H1/00278B60H1/00328B60H1/00342B60H1/00885B60H1/26B60H1/323B60H1/3204B60H1/3228B60H2001/003B60H2001/00307B60H2001/00928
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Quick Facts
Patent No.
US 11,260,719
App. No.
16/718,983
Granted
Mar 1, 2022
Kind
B2
Abstract

A battery cooling system includes a cooling water circulation circuit for circulating cooling water for cooling the battery, a first heat exchanger for exchanging heat between air and cooling water, a second heat exchanger for exchanging heat between the low-pressure refrigerant of the refrigeration cycle circuit and cooling water, and an ion exchanger for removing impurity ions contained in the cooling water. The first heat exchanger and the second heat exchanger are arranged in series in the cooling water circulation circuit. The ion exchanger is disposed on the downstream side of the second heat exchanger in the cooling water circulation circuit.

Claims (27)

1. A battery cooling system for cooling a battery mounted on a vehicle, the system comprising:

a cooling water circulating circuit for circulating cooling water for cooling the battery;

a first heat exchanger for exchanging heat between air and the cooling water;

a second heat exchanger for exchanging heat between low-pressure refrigerant of a refrigeration cycle circuit and the cooling water, the first heat exchanger and the second heat exchanger being arranged in series in the cooling water circulation circuit; and

an ion exchanger for removing impurity ions contained in the cooling water, the ion exchanger being disposed downstream of the second heat exchanger in the cooling water circulation circuit.

2. The battery cooling system according to claim 1 ,

wherein the second heat exchanger is disposed downstream of the first heat exchanger in the cooling water circulation circuit.

3. The battery cooling system according to claim 1 ,

wherein the first heat exchanger is disposed downstream of the second heat exchanger in the cooling water circulation circuit, and

wherein the ion exchanger is disposed downstream of the first heat exchanger in the cooling water circulation circuit.

4. The battery cooling system according to claim 1 ,

wherein the first heat exchanger is disposed downstream of the second heat exchanger in the cooling water circulation circuit, and

wherein the ion exchanger is disposed upstream of the first heat exchanger in the cooling water circulation circuit.

5. The battery cooling system according to claim 1 ,

wherein the refrigeration cycle circuit includes:

a first flow path form for circulating the low-pressure refrigerant to a heat exchanger for air conditioning of the vehicle;

a second flow path form for circulating the low-pressure refrigerant to the second heat exchanger; and

a switching mechanism for switching between the first flow path form and the second flow path form according to a correlation value correlated with a temperature of the battery.

6. The battery cooling system according to claim 1 ,

wherein the first heat exchanger is disposed so as to face a traveling direction of the vehicle in a space extending from a rear wheel of the vehicle to a front side of the traveling direction, and

wherein a duct is provided for taking in outside air and leading the outside air to the first heat exchanger.

7. A battery cooling system for cooling a battery mounted on a vehicle, the system comprising:

a cooling water circulation circuit for circulating cooling water for cooling the battery;

a first heat exchanger for exchanging heat between air and the cooling water;

a second heat exchanger for exchanging heat between low-pressure refrigerant of a refrigeration cycle circuit and the cooling water, the first heat exchanger and the second heat exchanger being arranged in series in the cooling water circulation circuit and the second heat exchanger being disposed downstream of the first heat exchanger in the cooling water circulation circuit; and

an ion exchanger for removing impurity ions contained in the cooling water, the ion exchanger being disposed in a branch passage branched from the cooling water circulation circuit between the first heat exchanger and the second heat exchanger,

wherein the cooling water circulation circuit includes a cooling water switching mechanism for switching a flow destination of the cooling water distribution from the first heat exchanger between the second heat exchanger and the ion exchanger in accordance with a temperature of the cooling water circulating through the first heat exchanger.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 18, 2019
From: TOMITA, MITSUAKI; KOGA, TSUYOSHI; SUZUKI, YUSUKE; KAJI, MASAYA
To: TOYOTA JIDOSHA KABUSHIKI KAISHA
Reel/Frame 051324/0171 →
Priority Claims (1)
JP JP2019-001296 · Jan 8, 2019 · national
Continuity (1)
Related Publication 20200215871A1 · Jul 9, 2020