Battery module and battery pack including the same
US-2020067155-A1 · Feb 27, 2020 · US
US12512527B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12512527-B2 |
| Application number | US-202117919716-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 26, 2021 |
| Priority date | Aug 24, 2020 |
| Publication date | Dec 30, 2025 |
| Grant date | Dec 30, 2025 |
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Discussed is a battery back that includes: a plurality of battery modules that includes a battery cell stack, a module frame for housing the battery cell stack, and a heat sink located under a bottom part of the module frame; a pack frame that houses the plurality of battery modules; and a refrigerant transfer bolt that fastens the bottom part of the module frame, the heat sink, and the pack frame, wherein the pack frame includes a pack refrigerant pipe for supplying and discharging refrigerant, wherein a connection pipe for connecting the pack refrigerant pipe and the heat sink is formed through the refrigerant transfer bolt, and wherein the refrigerant transfer bolt includes an opening/closing member that opens or cuts off the connection pipe in response to a temperature of the refrigerant.
Opening claim text (preview).
The invention claimed is: 1 . A battery pack comprising: a plurality of battery modules that comprises a battery cell stack, a module frame for housing the battery cell stack, and a heat sink located under a bottom part of the module frame; a pack frame that houses the plurality of battery modules; and a refrigerant transfer bolt that fastens the bottom part of the module frame, the heat sink, and the pack frame, wherein the pack frame comprises a pack refrigerant pipe for supplying and discharging a refrigerant, wherein a connection pipe for connecting the pack refrigerant pipe and the heat sink is formed through the refrigerant transfer bolt, wherein the refrigerant transfer bolt includes an opening/closing member that opens or cuts off the connection pipe in response to a temperature of the refrigerant, and wherein: the refrigerant transfer bolt comprises a first opening and a second opening connected to the connection pipe, the first opening is disposed inside the pack refrigerant pipe, the second opening is disposed between the bottom part of the module frame and the heat sink, and the opening/closing member adjusts the opening/closing of the second opening in response to the temperature of the refrigerant. 2 . The battery pack according to claim 1 , wherein: the opening/closing member comprises a shape memory alloy and deforms according to the temperature of the refrigerant. 3 . The battery pack according to claim 1 , wherein: the opening/closing member comprises a cut-off part for opening or cutting-off the connection pipe and a spring part connected to the cut-off part and including a shape memory alloy. 4 . The battery pack according to claim 3 , wherein: the spring part is deformed in shape in response to the temperature of the refrigerant, and the cut-off part moves up and down according to the shape deformation of the spring part to open or cut off the connection pipe. 5 . The battery pack according to claim 3 , wherein: the spring part is a coil-shaped spring or a plate-shaped spring. 6 . The battery pack according to claim 3 , wherein: a refrigerant opening is formed in the pack frame, and the refrigerant opening comprises a stepped part for supporting one end of the spring part. 7 . The battery pack according to claim 1 , wherein: the module frame includes a module frame extension part formed by extending a part of the bottom part of the module frame, the heat sink includes a heat sink extension part extending from one side of the heat sink to a portion where the module frame extension part is located, and the refrigerant transfer bolt fastens the module frame extension part, the heat sink extension part, and the pack frame. 8 . The battery pack according to claim 7 , wherein: the refrigerant opening is formed in the pack frame, a first mounting hole is formed in the module frame extension part, a second mounting hole is formed in the heat sink extension part, and the refrigerant transfer bolt passes through the first mounting hole, the second mounting hole, and the refrigerant opening. 9 . The battery pack according to claim 1 , wherein: the refrigerant transfer bolt comprises a body part in which the connection pipe is formed and a head part located at an upper end of the body part. 10 . The battery pack according to claim 9 , wherein: the battery pack further comprises a gasket surrounding the body part, and the gasket is located in at least one of between the head part and the a module frame extension part formed by extending a part of the bottom part of the module frame and between the heat sink and the pack frame. 11 . The battery pack according to claim 1 , wherein: protrusion parts are formed on a front surface and a rear surface of the battery module, respectively, and the battery pack further comprises a fixing bracket that is located on the front surface and the rear surface of the battery module, respectively, and is coupled to the pack frame while wrapping the protrusion part. 12 . The battery pack according to claim 1 , wherein: the pack frame comprises a support frame for supporting the battery module and a lower frame located below the support frame, and the pack refrigerant pipe is located between the support frame and the lower frame. 13 . A device comprising the battery pack as set forth in claim 1 . 14 . The device according to claim 13 , wherein the device is one of an electronic device including a mobile phone, a notebook computer, and a camcorder, a digital camera, and a vehicle including an electric bike, an electric vehicle, and a hybrid electric vehicle. 15 . The battery pack according to claim 1 , wherein: the battery cell stack includes a plurality of battery cells that are stacked together. 16 . A battery pack comprising: a plurality of battery modules that comprises a battery cell stack, a module frame for housing the battery cell stack, and a heat sink located under a bottom part of the module frame; a pack frame that houses the plurality of battery modules; and a refrigerant transfer bolt that fastens the bottom part of the module frame, the heat sink, and the pack frame, wherein the pack frame comprises a pack refrigerant pipe for supplying and discharging a refrigerant, wherein a connection pipe for connecting the pack refrigerant pipe and the heat sink is formed through the refrigerant transfer bolt, wherein the refrigerant transfer bolt includes an opening/closing member that opens or cuts off the connection pipe in response to a temperature of the refrigerant, and wherein: the refrigerant transfer bolt comprises a first opening and a second opening connected to the connection pipe, the first opening is disposed inside the pack refrigerant pipe, the second opening is disposed between the bottom part of the module frame and the heat sink, an opening direction of the first opening is parallel to a penetrating direction of the connection pipe, and an opening direction of the second opening is perpendicular to a penetrating direction of the connection pipe. 17 . A battery pack comprising: a plurality of battery modules that comprises a battery cell stack, a module frame for housing the battery cell stack, and a heat sink located under a bottom part of the module frame; a pack frame that houses the plurality of battery modules; and a refrigerant transfer bolt that fastens the bottom part of the module frame, the heat sink, and the pack frame, wherein the pack frame comprises a pack refrigerant pipe for supplying and discharging a refrigerant, wherein a connection pipe for connecting the pack refrigerant pipe and the heat sink is formed through the refrigerant transfer bolt, and wherein the refrigerant transfer bolt includes an opening/closing member that opens or cuts off the connection pipe in response to a temperature of the refrigerant, and wherein: the pack frame comprises a support frame for supporting the battery module and a lower frame located below the support frame, and the pack refrigerant pipe is located between the support frame and the lower frame.
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