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Battery Pack Including Structure For Suppressing Thermal Diffusion

Abstract: The present invention relates to a battery pack comprising: a battery pack case in which one or more battery modules are accommodated; and a heat sink which is disposed over the battery modules, wherein each of the battery modules comprises: a plurality of battery cells; a water tank which is disposed over the plurality of battery cells; and a module case in which the plurality of battery cells and the water tank are accommodated. In the case of a fire occurring in a battery cell, the present invention can quickly and accurately prevent flames from spreading from the battery cell where the fire has occurred.

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Patent Information

Application #
Filing Date
30 November 2022
Publication Number
07/2024
Publication Type
INA
Invention Field
ELECTRICAL
Status
Email
Parent Application

Applicants

LG ENERGY SOLUTION, LTD.
Tower1 108, Yeoui-daero Yeongdeungpo-gu Seoul 07335

Inventors

1. KIM, Kyung Woo
LG Chem Research Park, 188 Munji-ro Yuseong-Gu Daejeon 34122
2. CHO, Young Bum
LG Chem Research Park, 188 Munji-ro Yuseong-Gu Daejeon 34122
3. MOON, Jeong Oh
LG Chem Research Park, 188 Munji-ro Yuseong-Gu Daejeon 34122
4. YUN, Hyeon Ki
LG Chem Research Park, 188 Munji-ro Yuseong-Gu Daejeon 34122
5. SHIN, Eun Gyu
LG Chem Research Park, 188 Munji-ro Yuseong-Gu Daejeon 34122
6. CHI, Ho June
LG Chem Research Park, 188 Munji-ro Yuseong-Gu Daejeon 34122
7. PARK, Jin Yong
LG Chem Research Park, 188 Munji-ro Yuseong-Gu Daejeon 34122

Specification

【Technical Field】
[1] This application claims the benefit of priority
to Korean Patent Application No. 2020-0157816 filed on
November 23, 2020, the disclosure of which is
incorporated herein by reference in its entirety.
[2] The present invention relates to a battery pack
including a thermal spread inhibition structure. More
particularly, the present invention relates to a battery
pack including a thermal spread inhibition structure
capable of directly injecting a coolant into an ignited
battery cell in order to prevent spread of flames of the
ignited battery cell in the battery pack.
[3]
【Background Art】
[4] As the result of continuous research and
development of a lithium secondary battery, it has been
possible to manufacture and commercialize a lithium
secondary battery having increased capacity and improved
output. In addition, demand for the lithium secondary
2
battery as an energy source replaceable fossil fuels,
which cause environmental pollution, has increased.
[5] Accordingly, application of the lithium secondary
battery to various devices has increased. For example,
the lithium secondary battery has been widely used as an
energy source for wireless mobile devices, which are
small multifunctional products, and wearable devices,
which are worn on the body, and has also been used as an
energy source for electric vehicles and hybrid electric
vehicles presented as alternatives to existing gasoline
and diesel vehicles or as an energy storage system (ESS).
[6] As the lithium secondary battery is used as a
large-capacity, high-output energy source, as described
above, securing safety of the lithium secondary battery
becomes an important subject of interest.
[7] Generally, in the case in which fire breaks out
in a battery cell received in the energy storage system,
a method of injecting water into a battery module or a
battery pack through a separate watering device is used.
[8] In this case, however, facilities and space for
the watering device are required, and the fire may spread
due to a time difference between sensing time of gas
discharged due to venting of the battery cell and
watering time.
[9] Alternatively, a method of disposing an
3
insulating material or a fire extinguishing agent inside
or outside the battery module or the battery pack in
order to interrupt heat transfer between battery cells or
to cool the ignited battery cell may be used.
[10] In the case in which the insulating material is
used, however, a fire extinguishing function is not
performed although propagation of flames is interrupted.
In the case in which the fire extinguishing agent is used,
the fire extinguishing agent is not exactly spread to the
point at which fire breaks out, since the fire
extinguishing agent is disposed in an empty space in the
battery pack in consideration of energy density.
[11] As technology for preventing thermal runaway of
the battery pack, Patent Document 1 discloses an
apparatus configured such that a bag containing water is
located above a battery, the bag is made of a material
that has a relatively low melting point, and when the
temperature of the battery is increased, the bag is
melted and the water in the bag is discharged to the
battery.
[12] In Patent Document 1, the entirety of the bag is
made of material that has a low melting point. When the
temperature of the battery is increased, therefore, the
water is not discharged from a specific portion of the
bag but the entirety of the water in the bag is
4
discharged while the bag is melted.
[13] In the case in which the bag is disposed so as to
be located under the battery cell, therefore, the water
cannot be injected into the battery cell, whereby it is
not possible to exhibit a fire extinguishing function.
Consequently, there is a limitation in that the bag must
be used only in a specific direction such that the bag is
disposed above the battery cell.
[14] Patent Document 2 discloses a battery pack
configured to have a structure in which a plurality of
battery cells is received in a case body and in which the
space between the plurality of battery cells is filled
with an insulative coolant.
[15] In Patent Document 2, the battery cells are
received so as to be spaced apart from each other in
order to fill the space between the battery cells with
the insulative coolant, whereby energy density is
remarkably reduced.
[16] Patent Document 3 is configured such that a
middle case and an inner case are received in an outer
case, a plurality of cells is received in the middle case,
a fire extinguishing agent is received in the inner case,
and when the cells generate heat to an upper limit
temperature or higher, the fire extinguishing agent is
introduced into the middle case through an injection pipe.
5
When the cells generate heat to an upper limit
temperature or higher, the injection pipe is opened,
whereby the fire extinguishing agent received in the
inner case is injected into the middle case.
[17] In Patent Document 3, compressed gas for spraying
the fire extinguishing agent, a nozzle used as the
injection pipe, and the inner case configured to receive
the fire extinguishing agent are included, whereby an
additional space therefor is necessary, and expense
necessary to purchase the fire extinguishing agent and
the compressed gas is also further incurred.
[18] Therefore, there is a high necessary for
technology capable of minimizing spread of flames and
preventing a decrease in energy density without needing
an additional space when fire breaks out in a battery
cell received in a battery pack.
[19]
[20] (Prior Art Documents)
[21] (Patent Document 1) Japanese Patent Application
Publication No. 2014-523622 (2014.09.11)
[22] (Patent Document 2) Japanese Patent Application
Publication No. 2013-62023 (2013.04.04)
[23] (Patent Document 3) Japanese Patent Application
Publication No. 2012-252909 (2012.12.20)
[24]
6
【Disclosure】
【Technical Problem】
[25] The present invention has been made in view of
the above problems, and it is an object of the present
invention to provide a battery pack including a fire
extinguishing and thermal spread inhibition structure
capable of extinguishing ignition of a battery cell when
the battery cell catches fire or explodes and preventing
spread of flames to battery cells adjacent thereto.
[26]
【Technical Solution】
[27] A battery pack according to the present invention
to accomplish the above object includes a battery pack
case configured to receive one or more battery modules;
and a heat sink located above the battery modules,
wherein each of the battery modules includes a plurality
of battery cells, a water tank located above the
plurality of battery cells, and a module case configured
to receive the plurality of battery cells and the water
tank.
[28] In the battery pack according to the present
invention, the water tank may be mounted integrally to
the inside of an upper surface of the module case.
7
[29] In the battery pack according to the present
invention, an upper part of the module case may be open,
and the water tank may be coupled to the module case so
as to cover the upper surface of the open module case.
[30] In the battery pack according to the present
invention, the heat sink may be configured to have a
size that covers upper surfaces of all of the battery
modules.

【Claim 1】 A battery pack comprising:
a battery pack case configured to receive one or
more battery modules; and
a heat sink located above the battery modules,
wherein
each of the battery modules comprises:
a plurality of battery cells;
a water tank located above the plurality of battery
cells; and
a module case configured to receive the plurality of
battery cells and the water tank.
【Claim 2】 The battery pack according to claim 1,
wherein the water tank is mounted integrally to an
inside of an upper surface of the module case.
【Claim 3】 The battery pack according to claim 1,
wherein an upper part of the module case is open, and
wherein the water tank is coupled to the module case
so as to cover the upper surface of the open module case.
【Claim 4】 The battery pack according to claim 1,
wherein the heat sink is configured to have a size that
28
covers upper surfaces of all of the battery modules.
【Claim 5】 The battery pack according to claim 1,
wherein an upper part of the battery pack case is open,
and
wherein the heat sink is coupled to the battery pack
case so as to cover the upper surface of the open battery
pack case.
【Claim 6】 The battery pack according to claim 1,
wherein a through-hole is formed in one surface of the
water tank that faces the plurality of battery cells, and
wherein a sealing member is added to the throughhole.
【Claim 7】 The battery pack according to claim 6,
wherein the sealing member is made of a material that is
melted by high-temperature gas or sparks discharged from
the battery cell.
【Claim 8】 The battery pack according to claim 7,
wherein the through-hole is opened as a result of
melting of the sealing member, and
wherein a coolant received in the water tank is
introduced into the battery cell through the through-
29
hole.
【Claim 9】 The battery pack according to claim 6,
wherein the through-hole is configured to have a
structure in which a plurality of holes is formed in one
surface of the water tank so as to be uniformly
dispersed.
【Claim 10】 The battery pack according to claim 1,
wherein a flow path configured to guide flow of a
coolant is formed in the heat sink.
【Claim 11】 The battery pack according to claim 1,
wherein a partition wall is added between the module
cases.
【Claim 12】 The battery pack according to claim 1,
wherein the through-hole is filled with the sealing
member, and
wherein the sealing member comprises an extension
portion further extending outwards from an outer surface
of the water tank than a circumference of the throughhole.
【Claim 13】 The battery pack according to claim 1,
30
wherein each of the battery cells is a pouch-shaped
battery cell, a prismatic battery cell, or a cylindrical
battery cell.

Documents

Application Documents

# Name Date
1 202217069088-TRANSLATIOIN OF PRIOIRTY DOCUMENTS ETC. [30-11-2022(online)].pdf 2022-11-30
2 202217069088-STATEMENT OF UNDERTAKING (FORM 3) [30-11-2022(online)].pdf 2022-11-30
3 202217069088-PROOF OF RIGHT [30-11-2022(online)].pdf 2022-11-30
4 202217069088-PRIORITY DOCUMENTS [30-11-2022(online)].pdf 2022-11-30
5 202217069088-POWER OF AUTHORITY [30-11-2022(online)].pdf 2022-11-30
6 202217069088-FORM 1 [30-11-2022(online)].pdf 2022-11-30
7 202217069088-DRAWINGS [30-11-2022(online)].pdf 2022-11-30
8 202217069088-DECLARATION OF INVENTORSHIP (FORM 5) [30-11-2022(online)].pdf 2022-11-30
9 202217069088-COMPLETE SPECIFICATION [30-11-2022(online)].pdf 2022-11-30
10 202217069088.pdf 2022-12-01
11 202217069088-FORM 3 [11-05-2023(online)].pdf 2023-05-11
12 202217069088-FORM 3 [14-11-2023(online)].pdf 2023-11-14
13 202217069088-FORM 18 [12-04-2024(online)].pdf 2024-04-12