Battery
The present invention provides a battery, comprising a case, a cell packaged in the case, an electrical terminal located at one end of the case and electrically connected to the cell, a safety device and a current cut-off device. The safety device comprises a first and second electrode respectively electrically connected to a positive electrode or a negative electrode. The first electrode and the second electrode are arranged spaced apart from each other and form an electric field, and a gas generating material capable of generating an inert gas when a voltage reaches or exceeds a threshold value is provided in the electric field. The current cut-off device is electrically connected between the cell and the electrical terminal and is capable of causing a brake of circuit in response to a pressure difference between the inside and the outside of the battery caused by the inert gas.
1 . A battery, comprising:
a case;
a cell, the cell being packaged in the case;
an electrical terminal, the electrical terminal being located at one end of the case and electrically connected to the cell;
a safety device, the safety device comprising:
a first electrode, wherein the first electrode is electrically connected to one of a positive electrode and a negative electrode of the cell, wherein the first electrode is configured as a cylinder;
a second electrode, wherein the second electrode is electrically connected to the other one of the positive electrode and the negative electrode, wherein the second electrode is configured as a needle-like structure which extends at least partially into the cylinder in an axial direction of the cylinder, the first electrode and the second electrode are arranged spaced apart from each other, and an electric field is formed between the first electrode and the second electrode;
a gas generating material, wherein the gas generating material is provided in the electric field and capable of generating an inert gas when a voltage in the electric field reaches or exceeds a predetermined threshold value, wherein the gas generating material is doped with conductive particles; and
a current cut-off device, the current cut-off device being electrically connected between the cell and the electrical terminal and capable of causing a brake of circuit in response to a pressure difference between an inside of the battery and an external environment caused by the inert gas generated by the safety device.
2 . The battery according to claim 1 , wherein the battery is a lithium-ion battery, the cell is composed of a positive electrode plate, a separator and a negative electrode plate that are stacked and wound, and has an internal winding cavity, the safety device is configured to have an elongated shape and arranged in the winding cavity, and preferably, the positive electrode plate is not doped with lithium carbonate.
3 . The battery according to claim 2 , wherein the first electrode is configured to be filled with the gas generating material, and the second electrode is configured to be buried in the gas generating material within the first electrode.
4 . The battery according to claim 3 , wherein at least a part of the needle-like structure that is in contact with the gas generating material is provided with an insulating layer.
5 . The battery according to claim 4 , wherein the conductive particles are carbon black.
6 . The battery according to claim 3 , wherein the cylinder is provided with at least one opening through which an internal space of the cylinder is capable of communicating with the winding cavity.
7 . The battery according to claim 6 , wherein at least one of the at least one opening is provided at an end portion of the cylinder that faces towards the needle-like structure.
8 . The battery according to claim 1 , wherein the first electrode and the second electrode are made of a corrosion-resistant metal material, and preferably of stainless steel.
9 . The battery according to claim 1 , wherein the gas generating material comprises particles of an inorganic material that have a micron-order size, the inorganic material preferably comprises lithium carbonate, and the size is preferably 10 μm to 20 μm.
10 . The battery according to claim 9 , wherein the gas generating material has a mass of 10 mg to 200 mg.