Battery pack and vehicle comprising the battery pack
The disclosure relates to the technical field of traction batteries, and in particular to a battery pack and a vehicle comprising the battery pack. The invention aims at the problem of large heat loss in the existing traction battery in a low-temperature environment. To this end, the battery pack of the disclosure comprises: a frame internally formed with an installation site; a battery module mounted in the installation site and comprising a number of cells; and a side beam connected to an outer side wall of the frame and made of a first thermal insulation material. The above arrangement can reduce the heat transfer coefficient of natural convection between the side wall of the frame and the environment, and reduce the heat flux, thereby reducing the temperature loss of the cells.
1 . A battery pack, comprising:
a frame internally formed with an installation site;
an upper cover plate and a lower cover plate;
a battery module mounted in the installation site and comprising a number of cells; both the upper cover plate and the lower cover plate are connected with the frame to accommodate the battery module; and
an active thermal compensation assembly provided on a heat dissipation path of the battery module and is configured to be able to heat the cells;
wherein the active thermal compensation assembly is an electric heater;
wherein the frame comprises an outer frame and an inner frame, and a plurality of installation sites are formed in an enclosed manner between the outer frame and the inner frame, and the active thermal compensation assembly is provided on an inner side wall of the outer frame.
2 . The battery pack according to claim 1 , wherein the active thermal compensation assembly is attached to the inner side wall or embedded in the inner side wall.
3 . The battery pack according to claim 1 , wherein the active thermal compensation assembly is connected to a battery management system.
4 . The battery pack according to claim 3 , wherein an optimal working time and power of the active thermal compensation assembly is determined according to a state of the cells and a standing time of the battery pack.
5 . The battery pack according to claim 3 , wherein a power of the active thermal compensation assembly is determined based on a heat preservation target.
6 . The battery pack according to claim 1 , wherein the electric heater comprises a resistance heater, an electromagnetic heater, or a short-wave heater.
7 . The battery pack according to claim 1 , wherein the battery pack further comprises a temperature equalizing assembly, which is arranged in the frame and is configured to be able to balance a temperature between different cells.
8 . The battery pack according to claim 7 , wherein the temperature equalizing assembly is attached to an outer side wall of the battery module close to an outer periphery of the frame.
9 . The battery pack according to claim 7 , wherein the temperature equalizing assembly is a heat pipe group, a thermal conductive aluminum plate group or a thermal conductive silicon pad group.
10 . The battery pack according to claim 1 , wherein the battery pack further comprises a temperature equalizing assembly which is a heat pipe group, a thermal conductive aluminum plate group or a thermal conductive silicon pad group.
11 . The battery pack according to claim 10 , wherein the battery pack comprises a plurality of battery modules and the temperature equalizing assembly comprises a plurality of heat pipe groups; and
wherein the plurality of heat pipe groups are attached to outer side walls of some of the plurality of battery modules close to the outer frame.
12 . The battery pack according to claim 11 , wherein two heat pipe groups are respectively attached to the outer side walls of two battery modules arranged in a length direction of the frame.
13 . The battery pack according to claim 12 , wherein a length of each heat pipe group is substantially equal to that of a side wall of the battery module.
14 . The battery pack according to claim 1 , wherein the frame has an outer side wall formed with a plurality of reinforcing ribs, a plurality of filling spaces are formed between the plurality of reinforcing ribs, and each of the plurality of filling spaces is filled with a thermal insulation material.
15 . The battery pack according to claim 14 , wherein the thermal insulation material is an expanded thermal insulation material.
16 . The battery pack according to claim 15 , wherein the expanded thermal insulation material is silicone foam, polyurethane sponge or polyvinyl chloride expanded plastic.
17 . The battery pack according to claim 1 , wherein the frame is a hollow structure and is formed with a cavity, and the cavity is filled with a phase-change material.
18 . The battery pack according to claim 17 , wherein the phase-change material is an inorganic phase-change material, an organic phase-change material or a composite phase-change material.