Assembled battery and battery pack
US-2024322287-A1 · Sep 26, 2024 · US
US9748618B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9748618-B2 |
| Application number | US-201615066384-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 10, 2016 |
| Priority date | Nov 17, 2010 |
| Publication date | Aug 29, 2017 |
| Grant date | Aug 29, 2017 |
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Official abstract text for this publication.
According to one embodiment of the present invention, a battery assembly comprises: a battery module comprising a plurality of unit batteries; an exterior case for housing the battery module in an internal space; and a heat-dissipating film which is inserted between the plurality of unit batteries and fitted tightly against each of the plurality of unit batteries, and is attached to the inside surface of the exterior case; and the heat-dissipating film comprises: first and second heat-dissipating layers which are formed of a thermally conductive material and discharge the heat of the unit batteries; and an adhesive layer which is formed between the first and second heat-dissipating layers and adheres the first and second heat-dissipating layers.
Opening claim text (preview).
The invention claimed is: 1. A battery assembly having heat-dissipating and heat-emitting functions, comprising: a battery module including a plurality of unit batteries; an exterior case for housing the battery module in an internal space; and a heat-dissipating film inserted between the plurality of unit batteries to tightly contact each of the unit batteries and to be attached to an inner surface of the exterior case, wherein the heat-dissipating film comprises first and second heat-dissipating layers formed of a thermally conductive material and discharging heat of the unit batteries; an adhesive layer formed between the first and second heat-dissipating layers to attach the first and second heat-dissipating layers to each other; a heat-emitting film formed between the first heat-dissipating layer and the adhesive layer, wherein the heat-emitting film comprises: a base layer on which an electrode layer and a carbon nanotube heating body are printed; and an insulating layer formed between the electrode layer of the base layer and the first heat-dissipating layer to attach the base layer to the first heat-dissipating layer while insulating the electrode layer and the first heat-dissipating layer from each other. 2. The battery assembly according to claim 1 , further comprising: a temperature sensor provided to at least one of the unit batteries; and a controller controlling power supply to the electrode layer of the base layer based on temperature detection results from the temperature sensor. 3. A battery module having heat-dissipating and heat-emitting functions, comprising: a plurality of unit batteries; and a heat-dissipating film inserted between the plurality of unit batteries to tightly contact each of the unit batteries, the heat-dissipating film comprising: first and second heat-dissipating layers formed of a thermally conductive material to discharge heat of the unit batteries; and an adhesive layer formed between the first and second heat-dissipating layers to attach the first and second heat-dissipating layers to each other; and a heat-emitting film formed between the first heat-dissipating layer and the adhesive layer, wherein the heat-emitting film comprises: a base layer on which an electrode layer and a carbon nanotube (CNT) heating body are printed; and an insulating layer formed between the electrode layer of the base layer and the first heat-dissipating layer to attach the base layer to the first heat-dissipating layer while insulating the electrode layer and the first heat-dissipating layer from each other. 4. An exterior case having heat-dissipating and heat-emitting functions and receiving a battery module having a plurality of unit batteries in an internal space thereof, wherein a heat-dissipating film is attached to an inner surface thereof and discharges heat generated from the unit batteries, the heat-dissipating film comprising: first and second heat-dissipating layers formed of a thermally conductive material and discharging heat from the unit batteries; and an adhesive layer formed between the first and second heat-dissipating layers to attach the first and second heat-dissipating layers to each other; and a heat-emitting film formed between the first heat-dissipating layer and the adhesive layer, wherein the heat-emitting film comprises: a base layer on which an electrode layer and a carbon nanotube (CNT) heating body are printed; and an insulating layer formed between the electrode layer of the base layer and the first heat-dissipating layer to attach the base layer to the first heat-dissipating layer while insulating the electrode layer and the first heat-dissipating layer from each other. 5. The exterior case according to claim 4 , further comprising: a temperature sensor provided to at least one inner surface of the exterior case; and a controller controlling power supply to the electrode layer of the base layer based on temperature detection results from the temperature sensor.
Surfaces specially adapted for heat dissipation or radiation, e.g. fins or coatings · CPC title
Metals · CPC title
Organic material · CPC title
characterised by electrically insulating or thermally conductive materials · CPC title
adapted for prismatic or rectangular cells (H01M50/216 takes precedence) · CPC title
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