Battery module and battery pack including the same
Discussed is battery module that may include a battery cell stack in which a plurality of battery cells are stacked, a module frame that houses the battery cell stack and including a module frame upper part, and a fire extinguishing member located between the module frame upper part and an upper part of the battery cell stack, wherein the module frame upper part includes a venting part located between a central part of the module frame upper part and a peripheral part of the module frame upper part, wherein the venting part penetrates the module frame upper part toward the battery cell stack.
1 . A battery module comprising:
a battery cell stack in which a plurality of battery cells are stacked;
a module frame that houses the battery cell stack and including a module frame upper part; and
a fire extinguishing member located between the module frame upper part and an upper part of the battery cell stack,
wherein the module frame upper part comprises a venting part located between a central part of the module frame upper part and a peripheral part of the module frame upper part, and
wherein the venting part penetrates the module frame upper part toward the battery cell stack, and
wherein the fire extinguishing member overlaps the venting part.
2 . The battery module of claim 1 , wherein:
the venting part is formed in a frame-like structure that surrounds the central part of the module frame upper part.
3 . The battery module of claim 2 , wherein:
the venting part comprises at least one connection part that connects the central part of the module frame upper part and the peripheral part of the module frame upper part.
4 . The battery module of claim 3 , wherein:
the at least one connection part is formed at each corner of the venting part.
5 . The battery module of claim 3 , wherein:
the venting part comprises a first venting part and a second venting part, and
the second venting part is located in the central part of the module frame upper part surrounded by the first venting part, and is located separately from the first venting part.
6 . The battery module of claim 5 , wherein:
each of the at least one connection part comprises a first connection part and a second connection part,
the first connection part is formed at each corner of the first venting part, and
the second connection part is formed at each corner of the second venting part.
7 . The battery module of claim 2 , wherein:
the venting part penetrates the module frame upper part in a diagonal direction toward the battery cell stack.
8 . The battery module of claim 7 , wherein:
the diagonal direction has an angle toward the central part of the battery cell stack with respect to the module frame upper part.
9 . The battery module of claim 1 , wherein:
one end of the venting part is exposed to an outside of the module frame, and another end of the venting part is located adjacent to the fire extinguishing member.
10 . The battery module of claim 9 , wherein:
the fire extinguishing member extends along a stacking direction of the battery cell stack between the module frame upper part and the upper part of the battery cell stack.
11 . The battery module of claim 10 , wherein:
a thickness of the fire extinguishing member is equal to or smaller than a distance between the module frame upper part and the upper part of the battery cell stack.
12 . The battery module of claim 1 , wherein:
the fire extinguishing member includes a fire extinguishing material containing a fire extinguishing agent.
13 . A battery pack comprising the battery module of claim 1 .
14 . The battery module of claim 1 , wherein the fire extinguishing agent includes one at least one of sodium hydrogen carbonate (NaHCO 3 ), potassium hydrogen carbonate (KHCO 3 ), ammonium phosphate (NH 4 H 2 PO 3 ), and a mixture of potassium hydrogen carbonate (KHCO 3 ) and urea ((NH 2 ) 2 CO).
15 . The battery module of claim 1 , wherein the fire extinguishing member is attached to a lower surface of the module frame upper part.
16 . The battery module of claim 1 , wherein the fire extinguishing member is in a form of one of a foam, an aerogel blanket, and a mica sheet.
17 . The battery module of claim 1 , wherein the fire extinguishing member is configured to be melted when an ignition phenomenon occurs in the battery module.
18 . The battery module of claim 17 , wherein when the fire extinguishing member is melted during the ignition phenomenon, the venting part is exposed to discharge gas through the venting part.
19 . A battery module comprising:
a battery cell stack in which a plurality of battery cells are stacked;
a module frame that houses the battery cell stack and including a module frame upper part; and
a fire extinguishing member located between the module frame upper part and an upper part of the battery cell stack,
wherein the module frame upper part comprises a venting part located between a central part of the module frame upper part and a peripheral part of the module frame upper part,
wherein the venting part penetrates the module frame upper part toward the battery cell stack,
wherein the venting part comprises a first venting part, a second venting part, and a connection part connecting the central part and the peripheral part of the module frame upper part, and
wherein:
the connection part comprises a first connection part and a second connection part,
the first connection part is formed at each corner of the first venting part, and
the second connection part is formed at each corner of the second venting part.
20 . A battery module comprising:
a battery cell stack in which a plurality of battery cells are stacked;
a module frame that houses the battery cell stack and including a module frame upper part; and
a fire extinguishing member located between the module frame upper part and an upper part of the battery cell stack,
wherein the module frame upper part comprises a venting part located between a central part of the module frame upper part and a peripheral part of the module frame upper part,
wherein the venting part penetrates the module frame upper part toward the battery cell stack,
wherein:
the venting part is formed in a frame-like structure that surrounds the central part of the module frame upper part,
the venting part comprises at least one connection part that connects the central part of the module frame upper part and the peripheral part of the module frame upper part,
the venting part comprises a first venting part and a second venting part,
the second venting part is located in the central part of the module frame upper part surrounded by the first venting part, and is located separately from the first venting part,
each of the at least one connection part comprises a first connection part and a second connection part,
the first connection part is formed at each corner of the first venting part, and
the second connection part is formed at each corner of the second venting part.