JP2008235149A - Spacer member for battery pack and battery pack - Google Patents

Spacer member for battery pack and battery pack Download PDF

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Publication number
JP2008235149A
JP2008235149A JP2007076210A JP2007076210A JP2008235149A JP 2008235149 A JP2008235149 A JP 2008235149A JP 2007076210 A JP2007076210 A JP 2007076210A JP 2007076210 A JP2007076210 A JP 2007076210A JP 2008235149 A JP2008235149 A JP 2008235149A
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flat
battery
assembled battery
spacer member
assembled
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Masayuki Fujiwara
雅之 藤原
Masataka Shinyashiki
昌孝 新屋敷
Hitoshi Maeda
仁史 前田
Atsuhiro Funabashi
淳浩 船橋
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Sanyo Electric Co Ltd
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Sanyo Electric Co Ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/10Energy storage using batteries

Abstract

<P>PROBLEM TO BE SOLVED: To prevent a temperature of the whole battery pack from rising, and to suppress the deterioration of a cyclic life caused by the deformation of respective flat cells in the case that the battery pack in which a plurality of the flat cells are laminated is charged and discharged wherein spacer members for the battery pack are arranged between the flat cells of which both surfaces are flat. <P>SOLUTION: In the battery pack wherein the plurality of flat cells 20 of which both surfaces are flat are laminated, the spacer members 10 for the battery pack having flat surfaces on both sides for contacting with respective flat cells and having a space part 14 for ventilation in it are sandwiched between the respective flat cells. <P>COPYRIGHT: (C)2009,JPO&INPIT

Description

本発明は、両面が平坦になった平板状電池相互間に配置させる組電池用スペーサ部材及び両面が平坦になった平板状電池を複数積層させた組電池に係り、特に、上記の組電池を充放電させた場合に、各平板状電池において発生した熱を外部に適切に放熱できるようにすると共に、この組電池を加圧ホルダーによって加圧させた場合に、各平板状電池が変形することなく適切に加圧されるようにした点に特徴を有するものである。   The present invention relates to an assembled battery spacer member disposed between flat battery cells with both surfaces flat and an assembled battery in which a plurality of flat battery cells with both surfaces flattened, and in particular, the above assembled battery. When charging / discharging, the heat generated in each flat battery can be appropriately dissipated to the outside, and each flat battery is deformed when this assembled battery is pressurized with a pressure holder. It is characterized in that the pressure is appropriately applied.

従来より、正極と負極とをセパレータを介して複数積層させた電極体が外装体内に収容されて両面が平坦になった平板状電池が様々な分野で利用されており、近年においては、このような平板状電池を、ロボットや電気自動車やバックアップ電源などに使用するために、この平板状電池を複数積層させた組電池として使用することが行われている。   Conventionally, a flat battery in which a plurality of electrode bodies in which a plurality of positive electrodes and negative electrodes are laminated via a separator is housed in an outer package and both surfaces are flattened has been used in various fields. In order to use a flat plate battery for a robot, an electric vehicle, a backup power source, or the like, it is used as an assembled battery in which a plurality of flat plate batteries are stacked.

ここで、上記のような組電池を充放電させた場合、各平板状電池が充放電により膨張、収縮して変形し、サイクル寿命が大幅に劣化するため、一般に、平板状電池の積層方向両側から、この組電池を加圧ホルダーによって挟み込むように加圧させることが行われている。   Here, when charging and discharging an assembled battery as described above, each flat battery expands and contracts due to charging and discharging and deforms, and the cycle life is greatly deteriorated. Therefore, the assembled battery is pressurized so as to be sandwiched between the pressure holders.

しかし、このように組電池を加圧ホルダーによって挟み込むように加圧させて充放電させるにあたり、上記の平板状電池相互を直接積層させた状態で組電池を充放電させると、充放電により各平板状電池において発生した熱が外部に適切に放熱されず、組電池全体の温度が上昇し、上記のような電源として使用するにあたって、大電流で充放電させた場合には、組電池全体の温度が大きく上昇するという問題があり、特に、上記の平板状電池に高容量のリチウム二次電池を用いた場合には、充放電による電池の膨張、収縮が大きく、また発熱も大きいため、上記のような問題が大きな課題となっていた。   However, when charging and discharging the battery pack in such a manner that the battery pack is sandwiched between the pressure holders, when the battery pack is charged and discharged in a state in which the above flat batteries are directly stacked, If the heat generated in the battery is not properly dissipated to the outside, the temperature of the entire assembled battery rises, and if it is charged and discharged with a large current when used as a power source as described above, the temperature of the entire assembled battery In particular, when a high-capacity lithium secondary battery is used for the flat plate battery, the expansion and contraction of the battery due to charge / discharge is large, and the heat generation is large. Such a problem was a big problem.

このため、近年においては、特許文献1に示されるように、上記のように積層させる平板状電池の間に組電池用スペーサ部材を配置させると共に、この組電池用スペーサ部材が平板状電池と接触する面に波状や矩型状等の凹凸を設けて、組電池用スペーサ部材と平板状電池との間に通気用の空間部を形成し、この空間部を通して各平板状電池において発生した熱を外部に放熱させることが提案されている。   For this reason, in recent years, as shown in Patent Document 1, an assembled battery spacer member is disposed between the flat battery layers stacked as described above, and the assembled battery spacer member is in contact with the flat battery element. The surface to be corrugated is provided with irregularities such as a wave shape or a rectangular shape, and a space for ventilation is formed between the spacer member for the assembled battery and the flat plate battery, and the heat generated in each flat plate battery through this space portion is generated. It has been proposed to dissipate heat to the outside.

しかし、このように平板状電池と接触する面に波状や矩型状などの凹凸を設けた組電池用スペーサ部材を平板状電池の間に配置させて、上記のように組電池を加圧ホルダーにより挟み込むように加圧させた場合、この組電池用スペーサ部材によって平板状電池に作用する圧力が不均一になり、この状態で組電池を充放電させた場合、前記のように充放電により各平板状電池が大きく変形し、サイクル寿命が大幅に劣化するという問題があった。
特開平10−112301号公報
However, an assembled battery spacer member having a corrugated shape such as a wave shape or a rectangular shape on the surface in contact with the flat battery is arranged between the flat batteries, and the assembled battery is held in the pressure holder as described above. When the pressure is applied so as to sandwich the battery, the pressure acting on the flat battery becomes non-uniform by the assembled battery spacer member. There is a problem that the flat battery is greatly deformed and the cycle life is greatly deteriorated.
Japanese Patent Laid-Open No. 10-112301

本発明は、両面が平坦になった平板状電池を複数積層させて組電池として使用する場合における上記のような様々な問題を解決することを課題とするものである。   An object of the present invention is to solve the above-described various problems in the case where a plurality of flat batteries whose surfaces are flat are stacked and used as an assembled battery.

すなわち、本発明においては、上記のような組電池において、平板状電池の間に配置させる組電池用スペーサ部材を改善し、上記の組電池を充放電させた場合に、各平板状電池において発生した熱を外部に適切に放熱させて、組電池全体の温度が上昇するのを防止すると共に、この組電池を加圧ホルダーによって加圧させた場合に、各平板状電池が変形することなく適切に加圧されるようにして、サイクル寿命が劣化するのを防止することを課題とするものである。   That is, in the present invention, in the above assembled battery, when the assembled battery spacer member arranged between the flat batteries is improved and the above assembled battery is charged / discharged, it occurs in each flat battery. The heat generated is appropriately dissipated to the outside to prevent the temperature of the entire assembled battery from rising, and when this assembled battery is pressurized by the pressure holder, each flat battery is properly deformed. It is an object of the present invention to prevent the cycle life from being deteriorated by being pressurized to a constant pressure.

本発明においては、上記のような課題を解決するため、両面が平坦になった平板状電池相互間に配置させる組電池用スペーサ部材において、各平板状電池に接触する両側の面を平面にすると共に、内部に通気用の空間部を形成するようにした。   In the present invention, in order to solve the above-described problems, in the assembled battery spacer member disposed between the flat batteries whose both surfaces are flat, both surfaces contacting each flat battery are made flat. At the same time, a space for ventilation is formed inside.

ここで、上記の組電池用スペーサ部材において、各平板状電池に接触する両側の面を平面にすると共に、内部に通気用の空間部を形成するにあたっては、2つの平板部材間にスペーサを設けるようにすることが好ましく、この場合、少なくとも一方の平板部材にスペーサを設け、このスペーサを介して平板部材相互を接合させるようにすることができる。   Here, in the above-described assembled battery spacer member, both sides contacting each flat battery are made flat, and a spacer is provided between the two flat members in order to form a space for ventilation inside. In this case, at least one flat plate member may be provided with a spacer, and the flat plate members may be joined to each other via the spacer.

また、上記の組電池用スペーサ部材においては、平板状電池と接触する面に、平板状電池を位置決めする係止突起を設けて、平板状電池の位置決めを行うことかできる。   In the assembled battery spacer member, the flat battery can be positioned by providing a locking projection for positioning the flat battery on the surface in contact with the flat battery.

そして、本発明の組電池においては、両面が平坦になった平板状電池を複数積層させるにあたり、上記の平板状電池相互間に、上記のような組電池用スペーサ部材を配置させた。   And in the assembled battery of this invention, when laminating | stacking two or more flat batteries in which both surfaces became flat, the above assembled battery spacer members were arrange | positioned between said flat batteries.

また、この組電池においては、上記のように組電池を充放電させた場合に、各平板状電池が変形するのを防止するため、平板状電池の積層方向両側から加圧ホルダーによって組電池を挟み込むように加圧させることが好ましい。   Moreover, in this assembled battery, in order to prevent each flat battery from being deformed when the assembled battery is charged / discharged as described above, the assembled battery is inserted by pressure holders from both sides in the stacking direction of the flat battery. It is preferable to apply pressure so as to be sandwiched.

本発明における組電池用スペーサ部材においては、平板状電池に接触する両側の面を平面にすると共に、内部に通気用の空間部を形成するようにしたため、平板状電池を複数積層させた組電池において、この組電池用スペーサ部材を平板状電池相互間に配置させると、この組電池を充放電させた場合に、各平板状電池が発熱しても、各平板状電池の熱が平板状電池相互間に配置された組電池用スペーサ部材の通気用の空間部を通して外部に適切に放熱されるようになり、組電池全体の温度が上昇するのが防止されるようになる。   In the assembled battery spacer member according to the present invention, since both sides contacting the flat battery are made flat and a ventilation space is formed inside, the assembled battery in which a plurality of flat batteries are stacked. When the assembled battery spacer member is disposed between the flat batteries, even if each of the flat batteries generates heat when the assembled battery is charged and discharged, the heat of each flat battery is reduced. Heat is appropriately radiated to the outside through the ventilation space of the assembled battery spacer member disposed between them, and the temperature of the entire assembled battery is prevented from rising.

また、この組電池を加圧ホルダーによって上記の平板状電池の積層方向両側から挟み込むように加圧させた場合、各平板状電池が平面になった組電池用スペーサ部材の面と接触しているため、各平板状電池が組電池用スペーサ部材によって均一に加圧されるようになり、この組電池を充放電させた場合においても、各平板状電池が変形するのが適切に抑制されて、サイクル寿命が劣化するのが防止されるようになる。   Further, when the assembled battery is pressed by the pressure holder so as to be sandwiched from both sides of the flat battery in the stacking direction, each flat battery is in contact with the flat surface of the assembled battery spacer member. Therefore, each flat battery comes to be uniformly pressed by the assembled battery spacer member, and even when this assembled battery is charged and discharged, the deformation of each flat battery is appropriately suppressed, The cycle life is prevented from deteriorating.

この結果、上記のような組電池用スペーサ部材を平板状電池相互間に配置させて組電池を作製すると、上記の平板状電池に高容量のリチウム二次電池を用い、大電流で組電池を充放電させた場合においても、組電池全体の温度が上昇するのが適切に防止されると共に、各平板状電池が変形するのも適切に防止されて、サイクル寿命も向上する。   As a result, when the assembled battery is manufactured by arranging the above-mentioned assembled battery spacer members between the flat batteries, a high-capacity lithium secondary battery is used for the flat battery, and the assembled battery is assembled with a large current. Even when the battery is charged / discharged, the temperature of the assembled battery as a whole is appropriately prevented from rising, and each flat battery is also appropriately prevented from being deformed, thereby improving the cycle life.

また、上記の組電池用スペーサ部材において、各平板状電池に接触する両側の面を平面にすると共に、内部に通気用の空間部を形成するにあたり、2つの平板部材間にスペーサを設けるようにすると、組電池用スペーサ部材の製造が簡単になると共に、スペーサの数,大きさ,配置を適切に設定することにより、組電池用スペーサ部材の内部に通気用の空間部を適切に形成することができ、充放電時における各平板状電池の熱が、この通気用の空間部を通してより適切に外部に放熱されるようになり、組電池全体の温度が上昇するのを一層防止できるようになる。   Further, in the above-mentioned assembled battery spacer member, both surfaces contacting each flat battery are made flat, and a spacer is provided between the two flat plate members when forming a space for ventilation inside. Then, manufacture of the assembled battery spacer member is simplified, and by appropriately setting the number, size, and arrangement of the spacers, a space for ventilation is appropriately formed inside the assembled battery spacer member. The heat of each flat battery during charge / discharge can be more appropriately dissipated to the outside through the ventilation space, and the temperature of the entire assembled battery can be further prevented from rising. .

次に、この発明の実施形態に係る組電池用スペーサ部材及び組電池を添付図面に基づいて具体的に説明する。なお、この発明に係る組電池用スペーサ部材及び組電池は、特に、下記の実施形態に示したものに限定されず、その要旨を変更しない範囲において適宜変更して実施できるものである。   Next, an assembled battery spacer member and an assembled battery according to an embodiment of the present invention will be specifically described with reference to the accompanying drawings. Note that the assembled battery spacer member and assembled battery according to the present invention are not particularly limited to those shown in the following embodiments, and can be implemented with appropriate modifications within the scope not changing the gist thereof.

この実施形態においては、組電池用スペーサ部材10を作製するにあたり、図1(A),(B)に示すように、長方形状になった平板部材11の片面に、両面が平坦になった平板状電池20を位置決め保持する係止突起12として、平板部材11の短辺側の2つの角部にL字状になった一対の第1係止突起12aを対向するように設けると共に、第1係止突起12aと所要間隔を介するようにして、それぞれ両側の長辺に沿って第2係止突起12bを設けている。一方、上記の係止突起12が設けられた面と反対側における平板部材11の面に、平面形状が略正方形になった複数(図に示す例では9つ)のスペーサ13を長辺及び短辺方向に所要間隔を介して配置させるようにしている。なお、平板部材11に設ける上記のスペーサ13の平面形状や数や大きさは特に限定されず、例えば、円形状や長方形状等になったスペーサを適当数設けることも可能である。   In this embodiment, as shown in FIGS. 1 (A) and 1 (B), a flat plate having both surfaces flattened on one surface of a rectangular flat plate member 11 as shown in FIGS. As the locking projections 12 for positioning and holding the battery 20, a pair of L-shaped first locking projections 12 a are provided at two corners on the short side of the flat plate member 11 so as to face each other. The second locking projections 12b are provided along the long sides on both sides so as to be spaced from the locking projections 12a. On the other hand, on the surface of the flat plate member 11 on the side opposite to the surface on which the locking projections 12 are provided, a plurality (9 in the example shown in the figure) spacers 13 are provided with a long side and a short side. It arrange | positions through a required space | interval in a side direction. The planar shape, number, and size of the spacers 13 provided on the flat plate member 11 are not particularly limited. For example, it is possible to provide an appropriate number of spacers having a circular shape, a rectangular shape, or the like.

そして、この組電池用スペーサ部材10においては、図2に示すように、上記のように係止突起12とスペーサ13とが設けられた2枚の平板部材11を用い、各平板部材11におけるスペーサ13相互を接合させて、この組電池用スペーサ部材10の内部に通気用の空間部14を形成すると共に、各平板部材11に設けられた上記の係止突起12が組電池用スペーサ部材10の両面に位置するようにしている。なお、この組電池用スペーサ部材10に使用する材料は特に限定されないが、十分な強度を有すると共に熱伝導性に優れた材料を用いることが好ましく、例えば、アルミニウム等の金属や、熱伝導性を向上させた難燃性樹脂を用いることが好ましい。   In this assembled battery spacer member 10, as shown in FIG. 2, the two flat plate members 11 provided with the locking projections 12 and the spacers 13 as described above are used, and the spacers in each flat plate member 11 are used. 13 are joined together to form a space portion 14 for ventilation inside the assembled battery spacer member 10, and the locking projections 12 provided on each flat plate member 11 include the above-described engaging projections 12 of the assembled battery spacer member 10. It is located on both sides. The material used for the assembled battery spacer member 10 is not particularly limited, but it is preferable to use a material having sufficient strength and excellent thermal conductivity. For example, a metal such as aluminum or a thermal conductivity is preferable. It is preferable to use an improved flame retardant resin.

次に、このような組電池用スペーサ部材10を用い、両面が平坦になった平板状電池20を複数積層させた組電池について説明する。   Next, an assembled battery in which a plurality of planar batteries 20 having both surfaces flattened using such an assembled battery spacer member 10 will be described.

ここで、上記の両面が平坦になった平板状電池20としては、図3〜5に示すように、正極集電タブ21aが設けられた正極21と、負極集電タブ22aが設けられた負極22との間にセパレータ23を介在させるようにして、正極21と負極22とを所要枚数積層させた電極体24を用い、上記の正極集電タブ21aと負極集電タブ22aとがラミネートフィルムで構成された外装体25から外部に突出されるようにして、この電極体24をこの外装体25内に収容させると共に、この外装体25内に電解液を注液させた後、この外装体11の開口部分を封口させたものを用いるようにした。   Here, as shown in FIGS. 3 to 5, the flat battery 20 having both surfaces flat as described above includes a positive electrode 21 provided with a positive electrode current collecting tab 21 a and a negative electrode provided with a negative electrode current collecting tab 22 a. The electrode body 24 in which a required number of positive electrodes 21 and negative electrodes 22 are laminated so that the separator 23 is interposed between the positive electrode current collecting tab 21a and the negative electrode current collecting tab 22a is a laminate film. The electrode body 24 is accommodated in the exterior body 25 so as to protrude outside from the configured exterior body 25, and the exterior body 11 is injected with an electrolyte solution. The one with the opening portion sealed was used.

そして、図6に示すように、組電池用スペーサ部材10に設けられた上記の係止突起12により上記の平板状電池20を位置決めさせて、この平板状電池20を組電池用スペーサ部材10の平坦な面に保持させるようにする。   Then, as shown in FIG. 6, the flat battery 20 is positioned by the locking protrusions 12 provided on the assembled battery spacer member 10, and the flat battery 20 is placed on the assembled battery spacer member 10. Try to keep it on a flat surface.

そして、このように係止突起12により平板状電池20を位置決めさせて、この組電池用スペーサ部材10の両側の平坦な面にそれぞれ平板状電池20を保持させるようにし、図7に示すように、各平板状電池20の間にそれぞれ上記の組電池用スペーサ部材10を挟み込むようにして、複数(図に示す例では5つ)の平板状電池20を積層させて組電池を作製し、平板状電池20の積層方向両側から挟み込むようにして、加圧ホルダー30により組電池を加圧させるようにしている。   Then, the flat battery 20 is positioned by the locking projection 12 in this way, and the flat battery 20 is held on the flat surfaces on both sides of the assembled battery spacer member 10, respectively, as shown in FIG. The assembled battery spacer member 10 is sandwiched between the flat battery cells 20 so that a plurality of (five in the example shown in the figure) flat battery cells 20 are laminated to produce an assembled battery. The assembled battery is pressurized by the pressure holder 30 so as to be sandwiched from both sides in the stacking direction of the battery 20.

ここで、上記のように加圧ホルダー30により、平板状電池20の積層方向両側から挟み込むようにして組電池を加圧させるにあたり、この実施形態においては、組電池の積層方向両側に加圧板31を配置させ、一方の加圧板31の外面側から複数の締結用ボルト32を挿入させて、各締結用ボルト32の先端部を他方の加圧板31を貫通させて突出させ、このように突出された各締結用ボルト32の先端部にナット33を締め付けて、一対の加圧板31間において平板状電池20の積層方向両側から組電池を挟み込むように加圧させている。   Here, when the assembled battery is pressurized by the pressure holder 30 as described above so as to be sandwiched from both sides of the flat battery 20 in the stacking direction, in this embodiment, the pressure plates 31 are provided on both sides of the assembled battery in the stacking direction. And a plurality of fastening bolts 32 are inserted from the outer surface side of one pressure plate 31, and the tip of each fastening bolt 32 is caused to protrude through the other pressure plate 31. Further, a nut 33 is fastened to the tip of each fastening bolt 32, and the assembled battery is pressed between the pair of pressure plates 31 from both sides of the flat battery 20 in the stacking direction.

このようにして加圧ホルダー30により組電池をその積層方向両側から加圧させると、組電池における各平板状電池20の平坦な面が、上記の加圧板31及び組電池用スペーサ部材10により均一に加圧されるようになる。   When the assembled battery is pressed from both sides in the stacking direction by the pressure holder 30 in this way, the flat surface of each flat battery 20 in the assembled battery is made uniform by the pressure plate 31 and the assembled battery spacer member 10. Will be pressurized.

そして、この状態で組電池を充放電させた場合、充放電により各平板状電池20が発熱しても、各平板状電池20の熱が、平板状電池20相互間に配置された各組電池用スペーサ部材10における通気用の空間部14を通して外部に適切に放熱されて、各平板状電池20の温度が上昇するのが防止され、組電池全体の温度が大きく上昇するのが抑制されるようになる。   And when an assembled battery is charged / discharged in this state, even if each flat battery 20 generates heat by charge / discharge, the heat of each flat battery 20 is arranged between the flat batteries 20. As a result, heat is appropriately radiated to the outside through the ventilation space 14 in the spacer member 10, so that the temperature of each flat battery 20 is prevented from rising, and the temperature of the entire assembled battery is prevented from greatly increasing. become.

また、この実施形態においては、上記のように組電池における各平板状電池20の平坦な面が、上記の加圧板31及び組電池用スペーサ部材10により均一に加圧された状態にあるため、上記のように組電池を充放電させた場合に、各平板状電池20が変形するのが防止され、サイクル寿命が劣化するのも抑制されるようになる。   In this embodiment, since the flat surface of each flat battery 20 in the assembled battery is uniformly pressed by the pressure plate 31 and the assembled battery spacer member 10 as described above, When the assembled battery is charged and discharged as described above, the flat battery 20 is prevented from being deformed, and the cycle life is also prevented from being deteriorated.

なお、上記の実施形態においては、組電池用スペーサ部材10を作製するにあたり、片面に係止突起12が設けられると共に反対側の面にスペーサ13が設けられた2枚の平板部材11を用い、各平板部材11におけるスペーサ13相互を接合させて、組電池用スペーサ部材10の内部に通気用の空間部14を形成すると共に、組電池用スペーサ部材10の両面に係止突起12を位置させるようにしたが、組電池用スペーサ部材10はこのようなものに限定されず、平板状電池20に接触する両側の面が平面であると共に、内部に通気用の空間部14が形成されたものであれはどのようなものであってもよい。   In the above-described embodiment, when the assembled battery spacer member 10 is manufactured, the two flat plate members 11 provided with the locking projections 12 on one side and the spacers 13 on the opposite side are used. Spacers 14 for ventilation are formed inside the assembled battery spacer member 10 by joining the spacers 13 in the flat plate members 11, and the locking projections 12 are positioned on both surfaces of the assembled battery spacer member 10. However, the assembled battery spacer member 10 is not limited to such a structure, and both surfaces contacting the flat battery 20 are flat, and a space portion 14 for ventilation is formed inside. That can be anything.

例えば、図8に示すように、片面に係止突起12が設けられると共に反対側の面にスペーサ13が設けられた平板部材11Aと、片面に係止突起12が設けられただけで反対側の面にスペーサが設けられていない平板部材11Bとを用い、図9に示すように、上記の平板部材11Aに設けられたスペーサ13を、スペーサが設けられていない平板部材11Bの面に接合させて、内部に通気用の空間部14を形成させるようにすることも可能であり、さらに図示していないが、2つの平板部材にスペーサを設けないようにし、この2つの平板部材の間にスペーサを配置させるようにすることも可能である。   For example, as shown in FIG. 8, a flat plate member 11A provided with a locking projection 12 on one side and a spacer 13 on the opposite side, and a locking member 12 provided on one side is provided on the opposite side. Using a flat plate member 11B having no spacer on the surface, as shown in FIG. 9, the spacer 13 provided on the flat plate member 11A is joined to the surface of the flat plate member 11B having no spacer. It is also possible to form a space portion 14 for ventilation inside, and although not shown in the drawing, a spacer is not provided on the two flat plate members, and a spacer is provided between the two flat plate members. It is also possible to arrange them.

また、2枚の平板部材を使用せずに、組電池用スペーサ部材10として、例えば、図10(A),(B)に示すように、1枚の肉厚の平板部材11Cの内部に横方向(又は縦方向)に貫通した通気用の空間部14を形成することも可能である。   In addition, as an assembled battery spacer member 10 without using two flat plate members, for example, as shown in FIGS. It is also possible to form a ventilation space 14 penetrating in the direction (or longitudinal direction).

また、上記の実施形態においては、平板状電池20として、正極21と負極22との間にセパレータ23を介在させて正極21と負極22とを所要枚数積層させた電極体24を、ラミネートフィルムで構成された外装体25内に収容させたものを用いるようにしたが、使用する平板状電池もこのようなものに限定されず、両面が平坦になったものであればよい。例えば、正極と負極との間にセパレータを介在させた状態でこれらを扁平に巻き取り、さらにこれをプレスして扁平にした電極体を外装体内に収容させた平板状電池等を用いることも可能である。   In the above embodiment, as the flat battery 20, the electrode body 24 in which the required number of the positive electrodes 21 and the negative electrodes 22 are laminated with the separator 23 interposed between the positive electrode 21 and the negative electrode 22 is a laminate film. Although what was accommodated in the comprised exterior body 25 was used, the flat battery to be used is not limited to such a thing, What is necessary is just to be flat on both surfaces. For example, it is also possible to use a flat battery or the like in which a separator is interposed between a positive electrode and a negative electrode, and these are flatly wound and further pressed into a flat electrode body accommodated in an exterior body. It is.

本発明の実施形態において使用する組電池用スペーサ部材を作製するのに使用した平板部材の概略平面図及び概略背面図である。It is the schematic plan view and schematic back view of the flat plate member used for producing the spacer member for assembled batteries used in embodiment of this invention. 上記の組電池用スペーサ部材の概略側面図である。It is a schematic side view of said assembled battery spacer member. 本発明の実施形態において使用する平板状電池において、正極と負極との間にセパレータを介在させてこれらを複数積層させた電極体を作製する状態を示した概略説明図である。It is the schematic explanatory drawing which showed the state which produces the electrode body which laminated | stacked two or more these by interposing the separator between the positive electrode and the negative electrode in the flat battery used in embodiment of this invention. 上記の平板状電池の概略側面図である。It is a schematic side view of said flat battery. 上記の平板状電池の概略平面図である。It is a schematic plan view of said flat battery. 上記の平板状電池を組電池用スペーサ部材に設けられた係止突起により位置決めさせて、組電池用スペーサ部材の平坦な面に保持させた状態を示した概略平面図である。It is the schematic plan view which showed the state which positioned the said flat battery by the latching protrusion provided in the spacer member for assembled batteries, and was hold | maintained on the flat surface of the spacer member for assembled batteries. 上記の平板状電池間に組電池用スペーサ部材を介在させて複数の平板状電池を積層させた組電池を、加圧ホルダーにより平板状電池の積層方向両側から挟み込むように加圧させた状態を示した概略側面図である。A state in which an assembled battery in which a plurality of flat batteries are stacked with a battery pack spacer member interposed between the above flat batteries is pressed by a pressure holder so as to be sandwiched from both sides of the flat battery in the stacking direction. It is the shown schematic side view. 本発明の実施形態において使用する組電池用スペーサ部材の第1の変更例に使用する2枚の平板部材を示した概略平面図である。It is the schematic plan view which showed the two flat plate members used for the 1st modification of the spacer member for assembled batteries used in embodiment of this invention. 上記の第1の変更例に係る組電池用スペーサ部材の概略側面図である。It is a schematic side view of the assembled battery spacer member according to the first modified example. 本発明の実施形態において使用する組電池用スペーサ部材の第2の変更例の概略側面図及び概略平面図である。It is the schematic side view and schematic plan view of the 2nd modification of the spacer member for assembled batteries used in embodiment of this invention.

符号の説明Explanation of symbols

10 組電池用スペーサ部材
11,11A〜11C 平板部材
12 係止突起
12a 第1係止突起
12b 第2係止突起
13 スペーサ
14 通気用の空間部
20 平板状電池
21 正極
21a 正極集電タブ
22 負極
22a 負極集電タブ
23 セパレータ
24 電極体
25 外装体
30 加圧ホルダー
31 加圧板
32 締結用ボルト
33 ナット
DESCRIPTION OF SYMBOLS 10 Assembly battery spacer member 11,11A-11C Flat plate member 12 Locking protrusion 12a 1st locking protrusion 12b 2nd locking protrusion 13 Spacer 14 Space for ventilation 20 Flat battery 21 Positive electrode 21a Positive electrode current collection tab 22 Negative electrode 22a Negative electrode current collecting tab 23 Separator 24 Electrode body 25 Exterior body 30 Pressure holder 31 Pressure plate 32 Fastening bolt 33 Nut

Claims (7)

両面が平坦になった平板状電池相互間に配置させる組電池用スペーサ部材において、各平板状電池に接触する両側の面が平面であると共に、内部に通気用の空間部が形成されていることを特徴とする組電池用スペーサ部材。   In the assembled battery spacer member disposed between the flat batteries whose both surfaces are flat, both surfaces contacting the flat batteries are flat and a space for ventilation is formed inside. An assembled battery spacer member. 請求項1に記載の組電池用スペーサ部材において、2つの平板部材間にスペーサが設けられて上記の通気用の空間部が形成されていることを特徴とする組電池用スペーサ部材。   The assembled battery spacer member according to claim 1, wherein a spacer is provided between two flat plate members to form the ventilation space. 請求項2に記載の組電池用スペーサ部材において、上記の少なくとも一方の平板部材にスペーサが設けられ、このスペーサを介して平板部材相互が接合されていることを特徴とする組電池用スペーサ部材。   The assembled battery spacer member according to claim 2, wherein a spacer is provided on the at least one flat plate member, and the flat plate members are joined to each other through the spacer. 請求項1〜請求項3の何れか1項に記載の組電池用スペーサ部材において、平板状電池と接触する面に、平板状電池を位置決めするための係止突起が設けられていることを特徴とする組電池用スペーサ部材。   The spacer member for an assembled battery according to any one of claims 1 to 3, wherein a locking protrusion for positioning the flat battery is provided on a surface in contact with the flat battery. An assembled battery spacer member. 両面が平坦になった平板状電池を複数積層させた組電池において、上記の平板状電池相互間に、請求項1〜請求項4の何れか1項に記載の組電池用スペーサ部材を配置させたことを特徴とする組電池。   In the assembled battery which laminated | stacked the flat battery in which both surfaces became flat, the spacer member for assembled batteries of any one of Claims 1-4 is arrange | positioned between said flat battery. A battery pack characterized by that. 請求項5に記載の組電池において、平板状電池の積層方向両側から加圧ホルダーによって組電池を挟み込むように加圧させることを特徴とする組電池。   6. The assembled battery according to claim 5, wherein the assembled battery is pressurized so as to be sandwiched by pressure holders from both sides of the planar battery in the stacking direction. 請求項5又は請求項6に記載の組電池において、上記の平板状電池がリチウム二次電池であることを特徴とする組電池。   The assembled battery according to claim 5 or 6, wherein the flat battery is a lithium secondary battery.
JP2007076210A 2007-03-23 2007-03-23 Spacer member for battery pack and battery pack Pending JP2008235149A (en)

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US20150155607A1 (en) * 2005-11-30 2015-06-04 Samsung Sdi Co., Ltd. Barrier and battery module having the same
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CN107516746A (en) * 2017-09-05 2017-12-26 江苏金坛绿能新能源科技有限公司 A kind of battery module

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