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Patent · US2017222197A1 · A1 · US

Battery pack and power storage unit including plurality of same

(11) Publication number
US2017222197A1
(21) Application number
15/325,983
(22) Filing date
2015-07-13
(30) Priority date
2014-07-14
(43) Publication date
2017-08-03
(51) IPC
H01M 10/0525; H01M 10/0585; H01M 10/46; H01M 50/105; H01M 50/141; H01M 50/178; H01M 50/211; H01M 50/224; H01M 50/289; H01M 50/55; H01M 50/553
(52) CPC
  • H01M Processes or means, e.g. batteries, for the direct conversion of chemical energy into electrical energy: 10/0585, 10/0525, 10/44, 10/46, 2/02, 2/1016, 2/30, 50/105, 50/141, 50/178, 50/211, 50/224, 50/289, 50/531, 50/55, 50/553
  • Y02E Reduction of greenhouse gas [ghg] emissions, related to energy generation, transmission or distribution: 60/10
  • Y02P Climate change mitigation technologies in the production or processing of goods: 70/50
(73) Assignee
Kaneka Corp
(72) Inventors
Yuuki SAWADA; Yukimasa Niwa; Mitsuyasu IMAZAKI; Takashi Kikuchi; Masato KURATSU
(54) Title
Battery pack and power storage unit including plurality of same
(57) Abstract

A battery pack containing a plurality of plate-shaped laminate batteries arranged in a direction vertical to a plate-shaped surface of one of the laminate batteries. The laminate battery contains: a layered body which includes a negative electrode, a separator, and a positive electrode, and is disposed parallel to the plate-shaped surface of the laminate battery; an outer packaging including a laminate film enclosing the layered body; and an electrode terminal which is electrically connected to the layered body and extends from a one side part of the outer packaging. The outer packaging has, in an inside thereof, a battery part having a space in which the layered body exists and a bag part which has a space a volume of which is changeable, communicates to the battery part through a communication part, and is disposed on an other side part opposite to the one side part. The battery pack includes: the laminate batteries arranged in a manner to have the other side part on an upper side of the battery pack in the vertical direction, and to have the one side part on a lower side of the battery pack in the vertical direction; and a power cable for charging and discharging on the battery pack is disposed in the lower side of the battery pack in the vertical direction. The battery pack is a highly reliable battery pack which exhibits the excellent operational stability, i.e., can maintain the high efficiency.

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Claims (1)

  1. A battery pack comprising: a plurality of plate-shaped laminate batteries arranged in a direction vertical to a plate-shaped surface of one of the laminate batteries, wherein the laminate battery contains: a layered body including a negative electrode, a separator, and a positive electrode, the layered body being disposed parallel to the plate-shaped surface of the laminate battery; an outer packaging including a laminate film enclosing the layered body; and an electrode terminal which is electrically connected to the layered body and extends from a one side part of the outer packaging, the outer packaging has, in an inside thereof: a battery part having a space in which the layered body exists; and a bag part having a space a volume of which is changeable, and communicating to the battery part through a communication part, the bag part being disposed on an other side part opposite to the one side part, the battery pack includes: the laminate batteries arranged in a manner to have the other side part on an upper side of the battery pack in the vertical direction, and to have the one side part on a lower side of the battery pack in the vertical direction; and a power cable for charging and discharging on the battery pack is disposed in the lower side of the battery pack in the vertical direction. 2. The battery pack according to claim 1, wherein the laminate battery has a plurality of bag parts including the bag part. 3. The battery pack according to claim 1, further comprising a control unit configured to control the charging and discharging, and the control unit being disposed in the lower side in the vertical direction. 4. The battery pack according to claim 3, wherein the control unit is configured to perform self-discharge controlling for allowing at least one of the laminate batteries contained in the battery pack to perform self-discharging, and the control unit contains a self-discharge load resistor which generates heat during the self-discharge. 5. The battery pack according to any of claim 1, wherein the power cable is contained in a bottom member supporting the battery pack. 6. The battery pack according to any of claim 1, wherein an inside of the outer packaging, which includes the battery part, the communication part, and the bag part, is divided into a fusion bonded part and a non-fusion bonded part of the laminate film, the communication part is formed of the non-fusion bonded part, and a ratio of a length of the non-fusion bonded part to a length of the fusion bonded part is from 50/50 to 5/95 in a direction vertical to a direction from the one side part to the other side part. 7. The battery pack according to any of claim 1, wherein a length including a length of the bag part, which is a distance from an end of the other side part of the laminate battery to a center of the communication part, is 25% or more of a full length of the laminate battery, which is a distance from the end of the other side part to an end of the one side part. 8. The battery pack according to any of claim 1, wherein two laminate films including the laminate film, between which the layered body is held, are fused to be sealed to each other at least at four sides of the laminate films, thereby enclosing the layered body. 9. The battery pack according to any of claim 1, wherein the negative electrode contains as a negative electrode active material thereof, a titanium-containing oxide. 10. The battery pack according to any of claim 1, comprising a pressing mechanism configured to apply a pressure to the layered body through the outer packaging in the direction vertical to the plate-shaped surface of the laminate battery, wherein the pressing mechanism includes a minimum saddle part containing a lowest point at which a surface pressure is lowest in terms of an in-plane distribution of the surface pressure when the pressure is applied, and the communication part is located on the minimum saddle part. 11. The battery pack according to claim 10, wherein the in-plane distribution contains two maximum points including a highest point at which the surface pressure is the highest as one of the maximum points, and the minimum saddle part is located between the two maximum points. 12. The battery pack according to claim 10, wherein the pressing mechanism contains a flexible pressure sheet which is disposed between the adjacent laminate batteries, has an area covering the laminate battery through the laminate film, and contains a recess part corresponding to the minimum saddle part on a surface of the flexible pressure sheet. 13. The battery pack according to claim 12, wherein the pressing mechanism further contains a pair of pressure plates which hold a battery assembly in which the laminate batteries are arranged in the direction vertical to the plate-shaped surface of the laminate battery, each of the pair of the pressure plates having an area larger than an area of the flexible pressure sheet. 14. The battery pack according to claim 13, wherein the pressing mechanism further contains a highly pulling rigid girder configured to pull the pair of the pressure plates inward. 15. A power storage unit comprising a plurality of the battery packs according to claim 1, wherein on the upper side of one of the battery packs in the vertical direction is disposed the lower side of another battery pack in the vertical direction.

Description

The present invention relates to a battery pack, more preferably a battery pack in which a plurality of plate-shaped laminate batteries are laminated. The present invention also relates to a power storage unit containing a plurality of the battery packs.

It is known that, in laminate batteries, battery characteristics are reduced by gas generated during an operation cycle of charging and discharging. In order to avoid the defect, a technique in which gas is collected at an electrode by disposing a bag part at one side part of a laminate battery has been developed, as in Patent Document 1. The laminate battery of Patent Document 1, however, has a structure in which the bag part is close to tabs which are electrode terminals, and thus when a plurality of the laminate batteries are connected as a battery pack, the gas easily flows back to the tabs even if the bag part is disposed in any direction. As a result, the gas leaks from the tabs and operation failure of the batteries may possibly frequently occur, and thus there is a room for improvement.

Patent Document 1: Japanese Unexamined Patent Publication (Translation of PCT Application) No. JP-T 2009-545849

An object to be attained by the present invention is to solve the problems of the conventional technique as described above, and to provide a battery pack capable of exhibiting an excellent operational stability, i.e., a battery pack capable of maintaining a high efficiency and having a high reliability, and a power storage unit having the battery pack.

Citations (9)

  • US6048638A
  • US6676714B2
  • US20090173559A1
  • US20070285051A1
  • JP2008077945A
  • US20090305131A1
  • JP2013120780A
  • US20140308556A1
  • US20140203781A1
Record as JSON
{
  "publication_number": "US2017222197A1",
  "country": "US",
  "kind": "A1",
  "title": "Battery pack and power storage unit including plurality of same",
  "abstract": "A battery pack containing a plurality of plate-shaped laminate batteries arranged in a direction vertical to a plate-shaped surface of one of the laminate batteries. The laminate battery contains: a layered body which includes a negative electrode, a separator, and a positive electrode, and is disposed parallel to the plate-shaped surface of the laminate battery; an outer packaging including a laminate film enclosing the layered body; and an electrode terminal which is electrically connected to the layered body and extends from a one side part of the outer packaging. The outer packaging has, in an inside thereof, a battery part having a space in which the layered body exists and a bag part which has a space a volume of which is changeable, communicates to the battery part through a communication part, and is disposed on an other side part opposite to the one side part. The battery pack includes: the laminate batteries arranged in a manner to have the other side part on an upper side of the battery pack in the vertical direction, and to have the one side part on a lower side of the battery pack in the vertical direction; and a power cable for charging and discharging on the battery pack is disposed in the lower side of the battery pack in the vertical direction. The battery pack is a highly reliable battery pack which exhibits the excellent operational stability, i.e., can maintain the high efficiency.",
  "claims": [
    "1. A battery pack comprising: a plurality of plate-shaped laminate batteries arranged in a direction vertical to a plate-shaped surface of one of the laminate batteries, wherein the laminate battery contains: a layered body including a negative electrode, a separator, and a positive electrode, the layered body being disposed parallel to the plate-shaped surface of the laminate battery; an outer packaging including a laminate film enclosing the layered body; and an electrode terminal which is electrically connected to the layered body and extends from a one side part of the outer packaging, the outer packaging has, in an inside thereof: a battery part having a space in which the layered body exists; and a bag part having a space a volume of which is changeable, and communicating to the battery part through a communication part, the bag part being disposed on an other side part opposite to the one side part, the battery pack includes: the laminate batteries arranged in a manner to have the other side part on an upper side of the battery pack in the vertical direction, and to have the one side part on a lower side of the battery pack in the vertical direction; and a power cable for charging and discharging on the battery pack is disposed in the lower side of the battery pack in the vertical direction. 2. The battery pack according to claim 1, wherein the laminate battery has a plurality of bag parts including the bag part. 3. The battery pack according to claim 1, further comprising a control unit configured to control the charging and discharging, and the control unit being disposed in the lower side in the vertical direction. 4. The battery pack according to claim 3, wherein the control unit is configured to perform self-discharge controlling for allowing at least one of the laminate batteries contained in the battery pack to perform self-discharging, and the control unit contains a self-discharge load resistor which generates heat during the self-discharge. 5. The battery pack according to any of claim 1, wherein the power cable is contained in a bottom member supporting the battery pack. 6. The battery pack according to any of claim 1, wherein an inside of the outer packaging, which includes the battery part, the communication part, and the bag part, is divided into a fusion bonded part and a non-fusion bonded part of the laminate film, the communication part is formed of the non-fusion bonded part, and a ratio of a length of the non-fusion bonded part to a length of the fusion bonded part is from 50/50 to 5/95 in a direction vertical to a direction from the one side part to the other side part. 7. The battery pack according to any of claim 1, wherein a length including a length of the bag part, which is a distance from an end of the other side part of the laminate battery to a center of the communication part, is 25% or more of a full length of the laminate battery, which is a distance from the end of the other side part to an end of the one side part. 8. The battery pack according to any of claim 1, wherein two laminate films including the laminate film, between which the layered body is held, are fused to be sealed to each other at least at four sides of the laminate films, thereby enclosing the layered body. 9. The battery pack according to any of claim 1, wherein the negative electrode contains as a negative electrode active material thereof, a titanium-containing oxide. 10. The battery pack according to any of claim 1, comprising a pressing mechanism configured to apply a pressure to the layered body through the outer packaging in the direction vertical to the plate-shaped surface of the laminate battery, wherein the pressing mechanism includes a minimum saddle part containing a lowest point at which a surface pressure is lowest in terms of an in-plane distribution of the surface pressure when the pressure is applied, and the communication part is located on the minimum saddle part. 11. The battery pack according to claim 10, wherein the in-plane distribution contains two maximum points including a highest point at which the surface pressure is the highest as one of the maximum points, and the minimum saddle part is located between the two maximum points. 12. The battery pack according to claim 10, wherein the pressing mechanism contains a flexible pressure sheet which is disposed between the adjacent laminate batteries, has an area covering the laminate battery through the laminate film, and contains a recess part corresponding to the minimum saddle part on a surface of the flexible pressure sheet. 13. The battery pack according to claim 12, wherein the pressing mechanism further contains a pair of pressure plates which hold a battery assembly in which the laminate batteries are arranged in the direction vertical to the plate-shaped surface of the laminate battery, each of the pair of the pressure plates having an area larger than an area of the flexible pressure sheet. 14. The battery pack according to claim 13, wherein the pressing mechanism further contains a highly pulling rigid girder configured to pull the pair of the pressure plates inward. 15. A power storage unit comprising a plurality of the battery packs according to claim 1, wherein on the upper side of one of the battery packs in the vertical direction is disposed the lower side of another battery pack in the vertical direction."
  ],
  "description_excerpt": "The present invention relates to a battery pack, more preferably a battery pack in which a plurality of plate-shaped laminate batteries are laminated. The present invention also relates to a power storage unit containing a plurality of the battery packs.\n\nIt is known that, in laminate batteries, battery characteristics are reduced by gas generated during an operation cycle of charging and discharging. In order to avoid the defect, a technique in which gas is collected at an electrode by disposing a bag part at one side part of a laminate battery has been developed, as in Patent Document 1. The laminate battery of Patent Document 1, however, has a structure in which the bag part is close to tabs which are electrode terminals, and thus when a plurality of the laminate batteries are connected as a battery pack, the gas easily flows back to the tabs even if the bag part is disposed in any direction. As a result, the gas leaks from the tabs and operation failure of the batteries may possibly frequently occur, and thus there is a room for improvement.\n\nPatent Document 1: Japanese Unexamined Patent Publication (Translation of PCT Application) No. JP-T 2009-545849\n\nAn object to be attained by the present invention is to solve the problems of the conventional technique as described above, and to provide a battery pack capable of exhibiting an excellent operational stability, i.e., a battery pack capable of maintaining a high efficiency and having a high reliability, and a power storage unit having the battery pack.",
  "cpc": [
    "H01M 10/0585",
    "H01M 10/0525",
    "H01M 10/44",
    "H01M 10/46",
    "H01M 2/02",
    "H01M 2/1016",
    "H01M 2/30",
    "H01M 50/105",
    "H01M 50/141",
    "H01M 50/178",
    "H01M 50/211",
    "H01M 50/224",
    "H01M 50/289",
    "H01M 50/531",
    "H01M 50/55",
    "H01M 50/553",
    "Y02E 60/10",
    "Y02P 70/50"
  ],
  "ipc": [
    "H01M 10/0525",
    "H01M 10/0585",
    "H01M 10/46",
    "H01M 50/105",
    "H01M 50/141",
    "H01M 50/178",
    "H01M 50/211",
    "H01M 50/224",
    "H01M 50/289",
    "H01M 50/55",
    "H01M 50/553"
  ],
  "assignees": [
    "Kaneka Corp"
  ],
  "inventors": [
    "Yuuki SAWADA",
    "Yukimasa Niwa",
    "Mitsuyasu IMAZAKI",
    "Takashi Kikuchi",
    "Masato KURATSU"
  ],
  "filing_date": "2015-07-13",
  "publication_date": "2017-08-03",
  "priority_date": "2014-07-14",
  "application_number": "US-201515325983-A",
  "family_id": "55078482",
  "cited_by_count": 8,
  "citations": [
    "US6048638A",
    "US6676714B2",
    "US20090173559A1",
    "US20070285051A1",
    "JP2008077945A",
    "US20090305131A1",
    "JP2013120780A",
    "US20140308556A1",
    "US20140203781A1"
  ]
}

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