Apparatus for real-time analysis of gas generated inside secondary battery
The present invention relates to a gas analysis apparatus for a secondary battery, the gas analysis apparatus being capable of effectively performing quantitative analysis and qualitative analysis of the gas generated up to the ignition or explosion of the secondary battery.
1. A device for analyzing a gas generated in a secondary battery, the device comprising:
a chamber configured to receive the secondary battery mounted therein;
an induction medium supply module configured to generate a flow of an induction medium into the chamber; and
an analysis module configured to analyze the gas introduced into the analysis module by the flow of the induction medium,
wherein the chamber comprises:
an inlet in fluid communication with the induction medium supply module;
an outlet in fluid communication with the analysis module; and
a safety valve configured to release flame, dust, and the gas generated in the secondary battery during explosion or ignition of the secondary battery to an outside of the device,
further comprising a first shutoff valve connected between and in fluid communication with the inlet and the chamber; and a second shutoff valve connected between and in fluid communication with the outlet and the chamber,
wherein the first shutoff valve is configured to shut off a first flow of the gas from the chamber to the induction medium supply module when the secondary battery is exploded or ignited, and the second shut-off valve is configured to shut off a second flow of the gas from the chamber to the analysis module when the secondary battery is exploded or ignited.
2. The device according to claim 1 , wherein the first shutoff valve and the second shutoff valve are configured to be switched from an open state to a closed state at a shutoff pressure equal to or greater than a predetermined pressure, and the safety valve is configured to be switched from a closed state to an open state at a release pressure equal to or greater than the predetermined pressure.
3. The device according to claim 2 , wherein the first shutoff valve and the second shutoff valve are configured to be automatically switched from the open state to the closed state when the gas has the shutoff pressure equal to or greater than the predetermined pressure, and the safety valve is configured to be automatically switched from the closed state to the open state when the gas of has the release pressure equal to or greater than the predetermined pressure.
4. The device according to claim 2 , further comprising:
a pressure gauge configured to measure a first pressure of a surface of the secondary battery or a second pressure inside the chamber; and
a control unit configured to immediately transmit control signals for closing the first shutoff valve, closing the second shutoff valve and opening the safety valve to the first shutoff valve, the second shutoff valve, and the safety valve, respectively, upon receiving a signal indicating that the first pressure or the second pressure measured by the pressure gauge is equal to or greater than the predetermined pressure,
wherein when the control signals are received, the first shutoff valve and the second shutoff valve are switched to a closed state and the safety valve is switched to an open state.
5. The device according to claim 1 , further comprising:
a temperature sensor configured to measure a first temperature of a surface of the secondary battery or a second temperature inside the chamber; and
a control unit configured to immediately transmit control signals for closing the first shutoff valve, closing the second shutoff valve and opening the safety valve to the first shutoff valve, the second shutoff valve, and the safety valve, respectively, upon receiving a signal indicating that the first temperature or the second temperature measured by the temperature sensor is equal to or greater than a predetermined temperature,
wherein, when the control signals are received, the first shutoff valve and the second shutoff valve are switched to a closed state and the safety valve is switched to an open state.
6. The device according to claim 1 , wherein the chamber further comprises charging/discharging terminals configured to be electrically connected to electrodes of the secondary battery, and
wherein the device further comprises a charge/discharge module configured to be electrically connected to the electrodes of the secondary battery through the charging/discharging terminals to charge/discharge the secondary battery.
7. The device according to claim 1 , wherein the chamber comprises a chamber body configured to receive the secondary battery mounted therein and which has a cuboid shape with an open front portion and a chamber cover adapted to shield the open front portion,
wherein the inlet is disposed on a first side of the chamber body, the outlet is disposed on a second side of the chamber body, and the safety valve is disposed at a center of the chamber body.
8. The device according to claim 2 , wherein the predetermined pressure is between 0.5 Bar and 5 Bar.