Provided is a battery pack, and more particularly, a battery pack capable of preventing degradation of performance at a low temperature by allowing a portion of air exhausted through an exhaust port to be introduced into an inhalation port to optimize a temperature of external air introduced into a cell module.
1. A battery pack, comprising:
a case having an inhalation port opened to outside and an exhaust port formed therein, the inhalation port always being opened to inhale external air into the case;
a cell module included in the case and configured by arranging a plurality of battery cells in parallel to each other while having a predetermined distance;
an inhalation duct having one side connected to the inhalation port and the other side opened toward the cell module side;
an exhaust duct having one side connected to the exhaust port and the other side opened toward the cell module side;
a circulation flow path connecting the inhalation duct and the exhaust duct to each other;
a valve disposed in the circulation flow path between the exhaust duct and the inhalation duct, the valve being configured to regulate an amount of exhaust air passing through the circulation flow path from the exhaust duct to the inhalation duct and an amount of exhaust air directed from the exhaust duct to an outside of the battery pack; and
a controlling part controlling opening and closing of the valve based on a difference between a temperature of the cell module and a temperature of external air,
wherein the inhalation port is formed to be close to cooling channels formed between the plurality of battery cells of the cell module, and
wherein the inhalation duct is connected to the inhalation port and the circulation flow path such that the external air inhaled into the inhalation port and the exhaust air passing through the circulation flow path to the inhalation duct are mixed in the inhalation duct.
2. The battery pack of claim 1 , wherein the controlling part does not open the valve if the difference between a temperature of the cell module and a temperature of external air which is inhaled into the inhalation port is less than 10° C.
3. The battery pack of claim 1 , wherein the controlling part opens the valve if the difference between a temperature of the cell module and a temperature of external air which is inhaled into the inhalation port exceeds 20° C.
4. The battery pack of claim 1 , wherein the valve is configured to open and close gradually to regulate the amount of exhaust air passing through the circulation flow path to the inhalation duct and the amount of exhaust air directed to the outside of the battery pack according to a degree of opening of the valve so that a temperature of cooling air flowing into the cell module is varied according to the degree of opening of the valve.
5. The battery pack of claim 4 , wherein the external air introduced into the inhalation port and the exhaust air passing through the circulation flow path to the inhalation duct are mixed in the inhalation duct depending on the degree of opening of the valve.
6. The battery pack of claim 5 , wherein the controlling part gradually opens the valve by 10% of full opening.
7. A battery pack, comprising:
a case having an inhalation port opened to outside and an exhaust port formed therein, the inhalation port always being opened to inhale external air into the case;
a cell module included in the case and configured by arranging a plurality of battery cells in parallel to each other while having a predetermined distance;
an inhalation duct having one side connected to the inhalation port and the other side opened toward the cell module side;
an exhaust duct having one side connected to the exhaust port and the other side opened toward the cell module side;
a circulation flow path connecting the inhalation duct and the exhaust duct to each other;
a valve disposed in the circulation flow path between the exhaust duct and the inhalation duct, the valve being configured to regulate an amount of exhaust air passing through the circulation flow path from the exhaust duct to the inhalation duct and an amount of exhaust air directed from the exhaust duct to an outside of the battery pack; and
a controlling part controlling opening and closing of the valve based on a difference between a temperature of the cell module and a temperature of external air,
wherein the controlling part does not open the valve if the difference between a temperature of the cell module and a temperature of external air which is inhaled into the inhalation port is below a first determined temperature, and the controlling part opens the valve if the difference between a temperature of the cell module and a temperature of external air which is inhaled into the inhalation port exceeds a second determined temperature,
wherein the inhalation port is formed to be close to cooling channels formed between the plurality of battery cells of the cell module, and
wherein the inhalation duct is connected to the inhalation port and the circulation flow path such that the external air inhaled into the inhalation port and the exhaust air passing through the circulation flow path to the inhalation duct are mixed in the inhalation duct.
8. The battery pack of claim 7 ,
wherein the valve is configured to open and close gradually to regulate the amount of exhaust air passing through the circulation flow path to the inhalation duct and the amount of exhaust air directed to the outside of the battery pack according to a degree of opening of the valve so that a temperature of cooling air flowing into the cell module is varied according to the degree of opening of the valve, and
wherein the external air introduced into the inhalation port and the exhaust air passing through the circulation flow path to the inhalation duct are mixed in the inhalation duct depending on the degree of opening of the valve.
9. The battery pack of claim 8 , wherein the controlling part gradually opens the valve by 10% of full opening.