JP4969691B1 - Storage tool and battery system including the same - Google Patents

Storage tool and battery system including the same Download PDF

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JP4969691B1
JP4969691B1 JP2011022764A JP2011022764A JP4969691B1 JP 4969691 B1 JP4969691 B1 JP 4969691B1 JP 2011022764 A JP2011022764 A JP 2011022764A JP 2011022764 A JP2011022764 A JP 2011022764A JP 4969691 B1 JP4969691 B1 JP 4969691B1
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drawer
ventilation resistance
drawers
stored
small
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JP2012164747A (en
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秀保 高▲辻▼
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Mitsubishi Heavy Industries Ltd
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Priority to PCT/JP2012/052369 priority patent/WO2012105643A1/en
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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
    • H01M10/00Secondary cells; Manufacture thereof
    • H01M10/60Heating or cooling; Temperature control
    • H01M10/65Means for temperature control structurally associated with the cells
    • H01M10/656Means for temperature control structurally associated with the cells characterised by the type of heat-exchange fluid
    • H01M10/6561Gases
    • H01M10/6563Gases with forced flow, e.g. by blowers
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
    • H01M50/00Constructional details or processes of manufacture of the non-active parts of electrochemical cells other than fuel cells, e.g. hybrid cells
    • H01M50/20Mountings; Secondary casings or frames; Racks, modules or packs; Suspension devices; Shock absorbers; Transport or carrying devices; Holders
    • H01M50/204Racks, modules or packs for multiple batteries or multiple cells
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
    • H01M10/00Secondary cells; Manufacture thereof
    • H01M10/60Heating or cooling; Temperature control
    • H01M10/61Types of temperature control
    • H01M10/613Cooling or keeping cold
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
    • H01M10/00Secondary cells; Manufacture thereof
    • H01M10/60Heating or cooling; Temperature control
    • H01M10/62Heating or cooling; Temperature control specially adapted for specific applications
    • H01M10/627Stationary installations, e.g. power plant buffering or backup power supplies
    • 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

【課題】発熱体を収納した収納具の内部の温度を均一化させることを可能にする収納具及びこれを備えた電池システムを提供する。
【解決手段】複数の引出し3を、収納物を収納した状態で冷却風の通気抵抗が大となる引出しと、通気抵抗が小となる引出しとに分ける。そして、複数の通気抵抗が小となる引出しを、縦方向の上端側と下端側の少なくとも一方の側に集合した形で配設し、且つ各列における通気抵抗が小となる引出しの数が横方向中央側から外側に向かうに従い少なくなるように段状に配設する。
【選択図】図5
A storage device and a battery system including the storage device that can make the temperature inside a storage device that stores a heating element uniform.
A plurality of drawers are divided into a drawer in which a ventilation resistance of cooling air is large and a drawer in which a ventilation resistance is small in a state where a stored item is stored. A plurality of drawers with low ventilation resistance are arranged in a form gathered on at least one of the upper end side and the lower end side in the vertical direction, and the number of drawers with low ventilation resistance in each row is horizontal. It arrange | positions in step shape so that it may decrease as it goes outside from the direction center side.
[Selection] Figure 5

Description

本発明は、収納具及びこれを備えた電池システムに関する。   The present invention relates to a storage device and a battery system including the storage device.

使用により発熱する電子機器等の発熱体を多数収納するための収納具(例えば、キャビネットやラック)においては、収納した発熱体(収納物)を収納具の内部で冷却するための工夫がこれまでなされてきた。   In storage devices (for example, cabinets and racks) for storing a large number of heating elements such as electronic devices that generate heat when used, there has been a device for cooling the stored heating elements (storage items) inside the storage device. Has been made.

例えば、多段の棚のそれぞれの棚に電子機器を並べ、収納具の一端に取り付けた冷却装置によりこれら全ての電子機器を冷却する構成(特許文献1又は2参照)や、多段の棚のそれぞれに対応して配置される複数の引出し状の電子機器のユニット自体に放熱ファンを取り付けて各電子機器を対応する放熱ファンでそれぞれ冷却する構成(特許文献3参照)の収納具が開発されている。   For example, a configuration (see Patent Document 1 or 2) in which electronic devices are arranged on each shelf of a multi-stage shelf and all these electronic devices are cooled by a cooling device attached to one end of the storage tool, or each of the multi-stage shelves. A storage device has been developed that has a configuration in which a heat radiating fan is attached to a unit of a plurality of drawer-shaped electronic devices arranged correspondingly and each electronic device is cooled by a corresponding heat radiating fan (see Patent Document 3).

また、リチウムイオン電池等の二次電池をケース内に収容した電池モジュール(収納物)を収納具に収納してなる電池システムAでは、例えば図7に示すように、収納具100が、縦横に整列配置して多数の小部屋101を形成する筐体102と、この筐体102の各小部屋101に挿入して設けられる引出し103とを備えている。さらに、この種の電池システムAでは、ブレーカー、リレー等の電力回路開閉器や、制御装置(ECU)、表示装置、必要に応じて消火設備等の部品(電気部品)が電池モジュールと一緒に収納具100に収納される。そして、このとき、電池モジュールを各小部屋101に収納する領域(電池収納部M1)と、電力回路開閉器や制御装置、表示装置等を各小部屋101に収納する領域(部品収納部M2)とに区分して、電池モジュールと電気部品とがそれぞれ収納具100に収納される。   Further, in a battery system A in which a battery module (contained item) in which a secondary battery such as a lithium ion battery is accommodated in a case is accommodated in an accommodation tool, for example, as shown in FIG. A housing 102 that forms a large number of small chambers 101 by arranging and arranging, and a drawer 103 that is inserted into each of the small chambers 101 of the housing 102 are provided. Furthermore, in this type of battery system A, power circuit switches such as breakers and relays, control units (ECUs), display devices, and parts (electric parts) such as fire extinguishing equipment, if necessary, are stored together with the battery modules. It is stored in the tool 100. At this time, an area for storing the battery module in each small room 101 (battery storage part M1) and an area for storing a power circuit switch, a control device, a display device, etc. in each small room 101 (component storage part M2). The battery module and the electrical component are respectively stored in the storage tool 100.

さらに、この種の電池システムAには、例えば縦方向の列毎に冷却装置(ファン)104が設けられ、各冷却装置104の駆動によって、冷却風を例えば下方から上方に向けて送風して縦方向に配置された列毎の複数の引出し103の内部に流通させることで、複数の電池モジュールを冷却するように構成したものがある(特許文献4参照)。   Further, in this type of battery system A, for example, a cooling device (fan) 104 is provided for each column in the vertical direction, and by driving each cooling device 104, the cooling air is blown upward, for example, from below to vertically. There is a configuration in which a plurality of battery modules are cooled by being distributed in a plurality of drawers 103 for each row arranged in a direction (see Patent Document 4).

特開2004−23036号公報Japanese Patent Laid-Open No. 2004-23036 特開2010−114128号公報JP 2010-114128 A 特開2006−40918号公報JP 2006-40918 A 特許第4427355号公報Japanese Patent No. 4427355

しかしながら、図7に示すように、収納具100に二次電池をモジュール化して搭載する場合、収納具100内での熱の拡散と外表面からの放熱の影響によって収納具100内で温度分布が発生しやすく、特に熱がこもって収納具100の中央部が高温になり、この高温部分の二次電池が劣化しやすくなるという問題があった。   However, as shown in FIG. 7, when the secondary battery is modularized and mounted on the storage device 100, the temperature distribution in the storage device 100 is affected by the diffusion of heat in the storage device 100 and the heat radiation from the outer surface. There is a problem that it is likely to be generated, and in particular, the heat accumulates so that the central portion of the storage device 100 becomes high temperature, and the secondary battery in this high temperature portion is likely to deteriorate.

また、上記従来の電池システムAにおいては、電池モジュールを収納した電池収納部M1に対し、電気部品を収納した部品収納部M2は空間(各引出し103内の残空間)が多くなる。このため、電池収納部M1よりも部品収納部M2の冷却風の通気抵抗が小さくなり、部品収納部M2が多く存在する列であるほどに冷却風による冷却効果が高くなる(電池収納部M1が多く存在する列であるほどに冷却風による冷却効果が低くなる)。これにより、電池収納部M1と部品収納部M2の配置に起因して電池モジュールに対する冷却バランスが乱れ、電池温度の均一性を保つことが難しくなるという問題があった。   Further, in the conventional battery system A described above, the space (the remaining space in each drawer 103) is larger in the component storage portion M2 storing electrical components than in the battery storage portion M1 storing battery modules. For this reason, the ventilation resistance of the cooling air of the component storage part M2 becomes smaller than that of the battery storage part M1, and the cooling effect by the cooling air increases as the number of the component storage parts M2 is increased (the battery storage part M1 The more rows there are, the lower the cooling effect of the cooling air). As a result, the cooling balance for the battery module is disturbed due to the arrangement of the battery housing part M1 and the parts housing part M2, and there is a problem that it is difficult to maintain the uniformity of the battery temperature.

本発明の収納具は、縦横に整列配置して複数の小部屋を形成する筐体と、前記筐体の各小部屋に挿入して設けられ、内部に収納物が収納される引出しとを備えるとともに、前記筐体は冷却装置の駆動によって、縦方向に配置された列毎の複数の前記引出しの内部に冷却風を流通させ、前記引出しに収納した前記収納物を冷却可能に構成されており、前記複数の引出しは、前記収納物を収納した状態で前記冷却風の通気抵抗が大となる引出しと、通気抵抗が小となる引出しとに分けられ、複数の通気抵抗が小となる引出しが、前記縦方向の上端側と下端側の少なくとも一方の側に集合した形で配設され、且つ各列における前記通気抵抗が小となる引出しの数が横方向中央側から外側に向かうに従い少なくなるように段状に配設されていることを特徴とする。   The storage device of the present invention includes a casing that is arranged vertically and horizontally to form a plurality of small rooms, and a drawer that is provided by being inserted into each of the small chambers of the casing and in which stored items are stored. In addition, the casing is configured to allow cooling air to flow through the plurality of drawers arranged in the vertical direction by driving a cooling device, and to cool the stored items stored in the drawers. The plurality of drawers are divided into a drawer in which the ventilation resistance of the cooling air is large and a drawer in which the ventilation resistance is small in a state where the stored items are stored, and a drawer in which the plurality of ventilation resistances are small. The number of drawers which are arranged in a form gathered on at least one of the upper end side and the lower end side in the vertical direction and in which the ventilation resistance in each row becomes small decreases from the horizontal center side toward the outside. It is arranged in steps like And butterflies.

また、本発明の収納具においては、複数の前記通気抵抗が小となる引出しが、前記縦方向の上端側と下端側の一方の側に配設されており、前記通気抵抗が小となる引出しと反対の側の前記縦方向の他方の側に配設され、且つ前記横方向中央側から外側に配設された前記通気抵抗が大となる引出しの内部に、前記冷却風を直接的に供給するための冷却風バイパス路を備えていてもよい。   Further, in the storage device of the present invention, the plurality of drawers having a small ventilation resistance are disposed on one of the upper end side and the lower end side in the vertical direction, and the drawer has a small ventilation resistance. The cooling air is directly supplied to the inside of the drawer which is arranged on the other side in the vertical direction opposite to the side and which is arranged on the outside from the lateral center side to increase the ventilation resistance. A cooling air bypass path may be provided.

本発明の電池システムは、上記のいずれかの収納具を備え、前記通気抵抗が大となる引出しに収納する前記収納物が電池モジュールであることを特徴とする。   The battery system of the present invention includes any one of the above-described storage devices, and the storage item stored in the drawer having a large ventilation resistance is a battery module.

本実施形態の収納具(及び電池システム)においては、例えば、電池モジュールを収納物として収納することで通気抵抗が大となる引出しよりも、ブレーカー、リレー等の電力回路開閉器や、制御装置、表示装置等の電気部品を収納物として収納することで通気抵抗が小となる引出しが、縦方向の上端側と下端側の少なくとも一方の側に集合した形で配設され、且つ中央側の列に対し横方向外側の列の数が少なくなるように段状に配設されている。すなわち、収納具の縦方向の上端側と下端側に、中央側を頂点として通気抵抗が小となる複数の引出しを段状に配設した通気抵抗が小の領域(部品収納部)が形成され、残りの部分に、複数の通気抵抗が大となる複数の引出しを集合した通気抵抗が大の領域(電池収納部)が形成される。   In the storage device (and battery system) of the present embodiment, for example, a power circuit switch such as a breaker and a relay, a control device, and a control device, rather than a drawer in which a ventilation resistance is increased by storing a battery module as a storage item, Drawers whose ventilation resistance is reduced by storing electrical components such as display devices as storage items are arranged in a form gathered on at least one of the upper end side and the lower end side in the vertical direction, and are arranged in the middle row On the other hand, they are arranged in a step shape so that the number of rows outside in the lateral direction is reduced. That is, a region (component storage part) with a small ventilation resistance is formed on the upper and lower ends in the vertical direction of the storage device, in which a plurality of drawers having a small ventilation resistance with the central side as the apex are arranged stepwise. In the remaining portion, a region (battery storage portion) having a large ventilation resistance is formed by collecting a plurality of drawers having a plurality of ventilation resistances.

そして、このように通気抵抗が小の領域(部品収納部)と通気抵抗が大の領域(電池収納部)の配置を設定することにより、冷却装置の駆動によって各列に冷却風を流通させた際に、発熱体である電池(電池モジュール)を引出しに収納することによって熱がこもりやすい中央側の列に冷却風を好適に流通させることができる。   And by setting the arrangement | positioning of the area | region (component storage part) with small ventilation resistance and the area | region (battery storage part) with large ventilation resistance in this way, the cooling air was distribute | circulated to each row | line | column by the drive of the cooling device At this time, by storing the battery (battery module), which is a heating element, in the drawer, the cooling air can be suitably circulated through the central row where heat is easily trapped.

これにより、電池モジュールや電気部品をこの収納具に収納して電池システムを構成した場合に、従来のように電池収納部と部品収納部の配置に起因して電池モジュールに対する冷却バランスが乱れることを解消でき、電池温度の均一性を保つことが可能になる。よって、収納具に収納した複数の電池の劣化を均一化することができ、好適な電池システムを提供することが可能になる。   As a result, when a battery system is configured by storing battery modules and electrical components in the storage device, the cooling balance for the battery modules is disturbed due to the arrangement of the battery storage unit and the component storage unit as in the past. This can be eliminated and the uniformity of the battery temperature can be maintained. Therefore, the deterioration of the plurality of batteries stored in the storage tool can be made uniform, and a suitable battery system can be provided.

本発明の一実施形態に係る収納具及び電池システムを示す斜視図である。It is a perspective view which shows the storage tool and battery system which concern on one Embodiment of this invention. 図1の収納具の筐体(引出しを取り除いた状態の収納具)を示す斜視図である。It is a perspective view which shows the housing | casing (storage tool of the state which removed the drawer) of the storage tool of FIG. 図1の収納具の引出し(通気抵抗が大となる引出し)を示す斜視図である。It is a perspective view which shows drawer | drawing-out (drawer from which ventilation resistance becomes large) of the storage tool of FIG. 図1の収納具に取り付けられたファン(冷却装置;図4(a))及びコネクタ(図4(b)を示す斜視図である。It is a perspective view which shows the fan (cooling device; FIG. 4 (a)) and connector (FIG.4 (b)) which were attached to the storage tool of FIG. 本発明の一実施形態に係る収納具及び電池システムの電池収納部及び部品収納部を示す正面図である。It is a front view which shows the battery storage part and components storage part of the storage tool and battery system which concern on one Embodiment of this invention. 本発明の一実施形態に係る収納具及び電池システムの変形例を示す正面図である。It is a front view which shows the modification of the storage tool and battery system which concern on one Embodiment of this invention. 従来の収納具及び電池システムを示す正面図である。It is a front view which shows the conventional storage tool and battery system.

以下、図1から図5を参照し、本発明の一実施形態に係る収納具及びこれを備えた電池システムについて説明する。   Hereinafter, with reference to FIGS. 1 to 5, a storage device and a battery system including the storage device according to an embodiment of the present invention will be described.

本実施形態の収納具1は、図1及び図2に示すように、−X方向に開口した直方体状の小部屋を高さ方向(Z方向、縦方向、列方向)に7つ且つ幅方向(Y方向、横方向、行方向)に7つ配置した筐体2、すなわち7行×7列の行列として整列配置された実質的に同一寸法の複数の小部屋を備えた筐体2と、当該小部屋のそれぞれに配置され且つ当該小部屋の開口から+X方向に挿入された当該開口を閉じる直方体状の引出し3とを備えている。 As shown in FIGS. 1 and 2, the storage device 1 of the present embodiment includes seven rectangular parallelepiped small chambers opened in the −X direction in the height direction (Z direction, vertical direction, row direction) and the width direction. 7 housings 2 arranged in the (Y direction, lateral direction, row direction), that is, a housing 2 having a plurality of small rooms of substantially the same dimensions arranged in a matrix of 7 rows × 7 columns , It has a rectangular parallelepiped drawer 3 disposed in each of the small rooms and closing the opening inserted in the + X direction from the opening of the small room.

筐体2は、上記複数の小部屋を形成すべく、所定の厚みを備え且つYZ平面から見て略長方形の形状の背板4と、所定の厚みを備え且つXY平面から見て略長方形の形状であって且つ背板4のY方向に延びる2つの辺のうち+Z方向側の位置に存在する一辺に接続された天板5(なお、天板5には、天板5が接する上記小部屋に対応する位置に、それぞれ後述の通気孔9と同様の形状・構造の通気孔10が形成されている)と、所定の厚みを備え且つXZ平面から見て略長方形の形状であって且つ背板4のZ方向に延びる2つの辺のうち−Y方向側の位置に存在する一辺と天板5のX方向に延びる2つの辺のうち−Y方向側の位置に存在する一辺とに接続された側板6bとを備える。また、これら背板4、天板5、及び2つの側板6(側板6a又は6b)が互いに接続された構成(筐体2の外枠という)の内側の空間を7×7の行列状に仕切って49の上記小部屋を形成するため、次に述べる第1仕切板7と第2仕切板8とを備える。 The housing 2 has a predetermined thickness and a substantially rectangular back plate 4 when viewed from the YZ plane, and a substantially rectangular shape when viewed from the XY plane, so as to form the plurality of small chambers. top plate 5 which is connected to a side at the position of the out + Z direction side of the two sides have a shape and extending in the Y direction of the back plate 4 (Incidentally, the top plate 5, that Sessu top plate 5 a position corresponding to the upper Symbol small rooms, respectively vent hole 10 is formed in the same shape and structure as the ventilation hole 9 to be described later), a substantially rectangular shape when viewed from and XZ plane having a predetermined thickness One side existing at the position on the −Y direction side of the two sides extending in the Z direction of the back plate 4 and one side existing at the position on the −Y direction side among the two sides extending in the X direction of the top plate 5 And a side plate 6b connected to each other. Further, the space inside the back plate 4, the top plate 5, and the two side plates 6 (side plates 6 a or 6 b) connected to each other (referred to as the outer frame of the housing 2) is partitioned into a 7 × 7 matrix. The first partition plate 7 and the second partition plate 8 described below are provided to form the 49 small chambers.

第1仕切板7は、上記小部屋の底板又は天板となるものであり、所定の厚みを備え且つXY平面から見て略長方形の形状である。図2に示すように、第1仕切板7には、上記小部屋のそれぞれの通気を促進するため、第1仕切板7を貫通する通気孔9が形成されている。ここでは、通気孔9は、XY平面から見て略長方形の形状の孔として例示している。また、第2仕切板8は、上記小部屋の側板となるものであり、所定の厚みを備え且つXZ平面から見て略長方形の形状である。   The first partition plate 7 is a bottom plate or a top plate of the small room, has a predetermined thickness, and has a substantially rectangular shape when viewed from the XY plane. As shown in FIG. 2, the first partition plate 7 is formed with a vent hole 9 penetrating the first partition plate 7 in order to promote the ventilation of each of the small rooms. Here, the vent hole 9 is illustrated as a hole having a substantially rectangular shape when viewed from the XY plane. The second partition plate 8 serves as a side plate of the small room, has a predetermined thickness, and has a substantially rectangular shape when viewed from the XZ plane.

これら第1仕切板7又は第2仕切板8が互いに、又は、第1仕切板7又は第2仕切板8が背板4、天板5又は側板6に固定されて、筐体2が形成される。当該固定は、後述の引出し3を筐体2に挿入・配置した際に、筐体2がしっかりと引出し3を支えることができればよいので、これら板同士を例えば組み木のように物理的に嵌め合わせて固定してもよいし、これら板同士をネジ止め等で固定してもよい。   The first partition plate 7 or the second partition plate 8 is fixed to each other, or the first partition plate 7 or the second partition plate 8 is fixed to the back plate 4, the top plate 5, or the side plate 6 to form the housing 2. The For the fixing, it is only necessary that the housing 2 can firmly support the drawer 3 when the drawer 3 described later is inserted and arranged in the housing 2, so that these plates are physically fitted to each other like a braided tree, for example. These plates may be fixed together, or these plates may be fixed with screws or the like.

なお、上記各小部屋においては、通気孔9による上下方向(Z方向、縦方向)及び上記開口以外には、空気等の流体の流れる隙間が実質的には存在しない構造となるよう、上記固定がなされる。また、Z方向で最下段の小部屋の通気孔9には筐体2の外部から空気等の流体が自由に入り込むことができるよう筐体2は適宜設計されている。   In addition, in each of the small rooms, the fixing is performed so that there is substantially no gap through which a fluid such as air flows except for the vertical direction (Z direction, vertical direction) by the vent hole 9 and the opening. Is made. Further, the housing 2 is appropriately designed so that a fluid such as air can freely enter the vent hole 9 in the lowermost small chamber in the Z direction from the outside of the housing 2.

図2では、第1仕切板7は、1つの行を形成する7つの上記小部屋で共通の1枚の板として示されている(従って、各小部屋に対応して通気孔9がそれぞれ形成されている)。
しかしながら、設計に応じて、上記小部屋1つに1枚配置して上記固定する構成としてもよい。同様に、第2仕切板8は、側板6と同様、1つの列を形成する7つの上記小部屋で共通の1枚の板として構成してもよいし、図2に示すように各小部屋の高さ方向(Z方向)の寸法に分断された構成であってもよい。
In FIG. 2, the first partition plate 7 is shown as a single plate common to the seven small rooms forming one row (therefore, the air holes 9 are respectively corresponding to the small rooms. Formed).
However, according to the design, a configuration may be adopted in which one piece is arranged in the small room and fixed. Similarly, like the side plate 6, the second partition plate 8 may be configured as a single plate common to the seven small rooms forming one row, or each small plate as shown in FIG. The structure divided | segmented into the dimension of the height direction (Z direction) of the room may be sufficient.

なお、第1仕切板7と第2仕切板8の大きさは、必ずしも1つの上記小部屋の寸法に合わせる必要はなく、設計に応じて適宜変更可能である。ただし、第1仕切板7が、複数の上記小部屋にまたがる1つの板として形成される場合には、これら複数の小部屋のそれぞれの床板となる箇所に、通気孔9が形成される(すなわち、1つの第1仕切板7にそのまたがる小部屋の数に応じた数の通気孔9が形成される)。   In addition, the magnitude | size of the 1st partition plate 7 and the 2nd partition plate 8 does not necessarily need to match the dimension of one said small room, and can be suitably changed according to design. However, when the first partition plate 7 is formed as a single plate that spans the plurality of small rooms, the vent holes 9 are formed at locations that serve as the floor plates of the plurality of small rooms (that is, A number of vent holes 9 corresponding to the number of small rooms that span one first partition plate 7 are formed).

ここで、上記小部屋は、上記開口を除き、背板4、側板6又は第2仕切板8、及び第1仕切板7で囲まれた現実的な小部屋であるが、第1仕切板7で引出し3を支える構成としない場合もありうる。すなわち、筐体2において第1仕切板7が配置される位置の側板6又は第2仕切板8に、第1仕切板7の変わりに引出し3を支えるための突起やレールなどが適宜配置されればよい。この場合には、列方向(Z方向、縦方向)を見た際には現実的には小部屋は形成されていない。しかし、依然として引出し3が挿入・配置される区画が明確に存在するので、当該区画を仮想的な小部屋として説明を続けることとする。すなわち、本発明はこの形状の収納具1も包含するものであるので、現実的な小部屋も仮想的な小部屋もいずれも小部屋とし、筐体は複数の小部屋を形成しているとして以下、説明を続行することとする。   Here, the small room is a realistic small room surrounded by the back plate 4, the side plate 6 or the second partition plate 8, and the first partition plate 7 except for the opening. In some cases, the drawer 3 may not be supported. That is, a protrusion, a rail, or the like for supporting the drawer 3 in place of the first partition plate 7 is appropriately disposed on the side plate 6 or the second partition plate 8 at the position where the first partition plate 7 is disposed in the housing 2. That's fine. In this case, a small room is not actually formed when the column direction (Z direction, vertical direction) is viewed. However, since there is clearly a section where the drawer 3 is inserted and arranged, the description will be continued with the section as a virtual small room. That is, since the present invention includes the storage device 1 having this shape, both the realistic small room and the virtual small room are small rooms, and the housing forms a plurality of small rooms. The description will be continued below.

引出し3は、図3に示すように、所定の厚みを備え且つXY平面から見て上記小部屋のXY平面上の寸法と実質的に同一の略長方形の形状であって且つ引出し3を上記小部屋に挿入・配置した際に通気孔9に対応する位置に設けられた通気孔9と実質的に同一寸法の貫通した孔である通気孔12を備えた底板11と、所定の厚みを備え且つYZ平面から見て上記開口の寸法と実質的に同一の略長方形の形状であって且つ底板11のY方向に延びる2つの辺のうち−X方向側の位置に存在する一辺に接続された前板13とを備えている。前板13には取っ手14が取り付けられており、筐体2の上記小部屋の1つに挿入・配置された後、ユーザーが取っ手14を持って引出し3をX方向へスライドさせることができる。また、引出し3を上記小部屋へ挿入・配置すると、前板13が上記開口をふさいで上記小部屋の内部と上記開口との間に空気等の流体の流れる隙間が実質的に存在しない構造となるように設計される。   As shown in FIG. 3, the drawer 3 has a substantially rectangular shape having a predetermined thickness and substantially the same as the dimension of the small room on the XY plane when viewed from the XY plane. A bottom plate 11 provided with a vent hole 12, which is a through-hole having substantially the same dimensions as the vent hole 9 provided at a position corresponding to the vent hole 9 when inserted into the room, and has a predetermined thickness; Before connecting to one side existing at a position on the −X direction side of two sides extending in the Y direction of the bottom plate 11 and having a substantially rectangular shape substantially the same as the size of the opening as viewed from the YZ plane And a plate 13. A handle 14 is attached to the front plate 13, and the user can slide the drawer 3 in the X direction by holding the handle 14 after being inserted and arranged in one of the small rooms of the housing 2. Further, when the drawer 3 is inserted and arranged in the small room, the front plate 13 blocks the opening, and there is substantially no gap through which fluid such as air flows between the inside of the small room and the opening. Designed to be

また、図3に示す引出し3では、その強度を増すために、所定の厚みを備え且つYZ平面から見て上記開口の寸法と実質的に同一の略長方形の形状であって且つ底板11のY方向に延びる2つの辺のうち+X方向側の位置に存在する一辺に接続された後板15と、所定の厚みを備え且つXZ平面から見て略長方形の形状であって且つ前板13のZ方向に延びる2つの辺のうち+Y方向側の位置に存在する一辺と後板15のZ方向に延びる2つの辺のうち+Y方向側の位置に存在する一辺とに接続された側板16aとがさらに備えられている。これら引出し用の側板16(16a又は16b)は、引出し3を配置された上記小部屋から引き出した際に、収納物(図3では電池モジュール17)の落下を防止する機能も有するものであり、それぞれ板である必要はなく、前板13と後板15をつなぐ棒状の連結部材であってもよい。   Further, in the drawer 3 shown in FIG. 3, in order to increase its strength, the drawer 3 has a predetermined thickness and is substantially rectangular in shape when viewed from the YZ plane and substantially the same as the size of the opening, and the Y of the bottom plate 11 A rear plate 15 connected to one side located at a position on the + X direction side of two sides extending in the direction, a predetermined thickness and a substantially rectangular shape when viewed from the XZ plane, and the Z of the front plate 13 A side plate 16a connected to one side existing at a position on the + Y direction side of two sides extending in the direction and one side existing at a position on the + Y direction side among two sides extending in the Z direction of the rear plate 15; Is provided. These drawer side plates 16 (16a or 16b) also have a function of preventing the stored items (battery module 17 in FIG. 3) from dropping when the drawer 3 is pulled out from the small room where the drawer 3 is arranged. Each of the plates need not be a plate, and may be a rod-like connecting member that connects the front plate 13 and the rear plate 15.

以上の収納具1において、筐体2の材質は、引出し3を支える強度を有するものであればいかようなものでもよく、金属のみならず木や樹脂などであってもよい。また、引出し3の材質も、引出し3の内部に配置する収納物17をしっかり支える強度を有するものであればいかようなものでもよく、金属のみならず木や樹脂などであってもよい。また、引出し3のスライドを容易とするために、筐体2又は引出し3にガイドレールやローラー等を適宜設けてもよい。   In the above storage device 1, the material of the housing 2 may be any material as long as it has strength to support the drawer 3, and may be wood or resin as well as metal. Further, the material of the drawer 3 may be any material as long as it has a strength to firmly support the stored items 17 arranged inside the drawer 3, and may be not only metal but also wood or resin. Further, in order to facilitate the sliding of the drawer 3, a guide rail, a roller, or the like may be appropriately provided on the housing 2 or the drawer 3.

なお、収納物17を引出し3の内部へ収納・配置した際、底板11を貫通して形成された通気孔12を収納物17でふさがないよう配慮する必要がある。収納物17の構造上、そのまま収納物17を引出し3へ収納したのでは通気孔12をふさいでしまい、引出し3内部に引出し3外部からの空気等の流体の流れが実質的になくなってしまう場合には、通気孔12から引出し3内へ入る当該流体の流れる隙間を確保すべく、収納物17を底板11から一定距離だけ浮かせて支える台18を適宜配置又は当該台18を底板11に一体に形成する。図3では、底板11の通気孔12の四隅近傍にそれぞれ4つの台18を設け、収納物17をこの4つの台18の上に載せて収納しているので、通気孔12から入る上記流体は少なくともこれら4つの台18の間を通って収納物17の周囲から上方へ、又は、当該周囲から通気孔12の外へ流れることができる。   It should be noted that when the stored item 17 is stored and arranged inside the drawer 3, it is necessary to consider that the stored item 17 does not block the ventilation hole 12 formed through the bottom plate 11. When the stored item 17 is stored in the drawer 3 as it is due to the structure of the stored item 17, the vent hole 12 is blocked, and the flow of fluid such as air from the outside of the drawer 3 is substantially eliminated inside the drawer 3. In order to secure a clearance through which the fluid enters the drawer 3 from the vent hole 12, the base 18 is appropriately arranged to support the stored item 17 by floating a certain distance from the bottom plate 11, or the base 18 is integrated with the bottom plate 11. Form. In FIG. 3, four bases 18 are provided in the vicinity of the four corners of the vent hole 12 of the bottom plate 11, and the stored items 17 are placed and stored on the four bases 18, so that the fluid entering from the vent hole 12 is It can flow at least between the four bases 18 from the periphery of the storage 17 to the upper side or from the periphery to the outside of the vent hole 12.

一方、本実施形態では、上記のように縦横に整列配置して複数の小部屋を形成する筐体2と、この筐体2の各小部屋に挿入して設けられ、内部に収納物が収納される引出し3とを備えてなる収納具1が電池システムBの構成要素として使用される。   On the other hand, in the present embodiment, as described above, the casing 2 that is arranged vertically and horizontally to form a plurality of small rooms, and is provided by being inserted into each small room of the casing 2, and the stored items are stored therein. The storage device 1 including the drawer 3 is used as a component of the battery system B.

ここで、本実施形態の電池システムBは、上記の収納具1と、収納具1の引出し3に収納して配設される電池モジュール17と、同じく引出し3に収納して配設されるブレーカー、リレー等の電力回路開閉器や、制御装置、表示装置、必要に応じて消火設備等の電気部品と、収納具1の各引出し3の内部に冷却風を流通させる冷却装置19とを備えて構成されている。   Here, the battery system B of the present embodiment includes the storage device 1, the battery module 17 that is stored and disposed in the drawer 3 of the storage device 1, and the breaker that is also stored and disposed in the drawer 3. A power circuit switch such as a relay, a control device, a display device, electrical parts such as a fire extinguishing facility as necessary, and a cooling device 19 for circulating cooling air inside each drawer 3 of the storage tool 1. It is configured.

また、本実施形態において、冷却装置19は送風機(ファン)であり、図4(a)に示すように、各列の最下段の小部屋の通気孔9の下にそれぞれ配置されている。そして、この送風機19を駆動することにより、強制的に流体(空気)の流れが作られてZ方向に配置された各列に冷却風が送風され、列毎の複数の引出し3の内部に冷却風が流通する。これにより、各列の複数の引出し3に収納した電池モジュール(電池セル)17や電気部品が冷却風との間の熱交換によって冷却される。   Moreover, in this embodiment, the cooling device 19 is a blower (fan), and as shown to Fig.4 (a), it is each arrange | positioned under the vent hole 9 of the lowest room of each row | line | column. Then, by driving this blower 19, a flow of fluid (air) is forcibly generated and cooling air is blown to each row arranged in the Z direction, and is cooled inside the plurality of drawers 3 for each row. Wind circulates. As a result, the battery modules (battery cells) 17 and electrical components housed in the plurality of drawers 3 in each row are cooled by heat exchange with the cooling air.

なお、送風機19を吸気ダクトに、また天板5の通気孔10を排気ダクトに接続し、空気以外の冷却効果ガスなどを上記流体(冷却風)として流す構成としてもよい。また、送風機19を各列の最上段に配置してもよいし、最下段と最上段の両方に配置してもよい。設計によっては、当該送風機19を排気ダクトに、また天板5の通気孔10を吸気ダクトに接続してもよい。   The blower 19 may be connected to the intake duct and the vent hole 10 of the top plate 5 may be connected to the exhaust duct so that a cooling effect gas other than air flows as the fluid (cooling air). Moreover, the air blower 19 may be arrange | positioned in the uppermost stage of each row | line | column, and may be arrange | positioned in both the lowermost stage and the uppermost stage. Depending on the design, the blower 19 may be connected to the exhaust duct, and the vent hole 10 of the top plate 5 may be connected to the intake duct.

また、本実施形態の収納具1は、複数の引出し3が、収納物17を収納した状態で冷却風の通気抵抗が大となる引出しと、通気抵抗が小となる引出しとに分けられている。そして、本実施形態の電池システムBでは、図5に示すように、電池モジュール17を収納物として収納した引出しは、電池モジュール17によって引出し3の内部空間の多くが占有され、引出し3と電池モジュール17の間の隙間の残空間が少ないことで通気抵抗が大の引出しとなる。また、ブレーカー、リレー等の電力回路開閉器や、制御装置、表示装置等の電気部品を収納物として収納した引出しが、電気部品を収納した状態で残空間が多いことにより、通気抵抗が大の引出しよりも通気抵抗が小の引出しとなる。   Further, in the storage tool 1 of the present embodiment, the plurality of drawers 3 are divided into a drawer in which the ventilation resistance of the cooling air is large and the drawer in which the ventilation resistance is small in a state where the storage items 17 are stored. . In the battery system B of the present embodiment, as shown in FIG. 5, the drawer in which the battery module 17 is stored as a storage object occupies most of the internal space of the drawer 3 by the battery module 17. Since the remaining space of the gap between 17 is small, the ventilation resistance becomes a large drawer. In addition, because drawers that house electrical circuit switches such as circuit breakers and relays, and electrical devices such as control devices and display devices as stored items have a large amount of remaining space in the state in which electrical components are stored, the ventilation resistance is large. Drawer with lower ventilation resistance than drawer.

このとき、図3及び図4(b)に示すように、電池モジュール17を収納物として収納する引出し、すなわち通気抵抗が大となる引出しは、電池モジュール17の電源線又は信号線を引出しから収納具1の筐体2の外部に存在する図示しない外部電源線又は外部信号線と容易に接続するためのコネクタ20、21を備えて形成されている。より具体的に、通気抵抗が大となる引出しは、後板15に第1コネクタ20を設置し(第1コネクタ20と収納物の電池モジュール17とは引出し3の内部で配線により適宜接続されている)、また、筐体2の背板4の上記各小部屋に対応する位置に第2コネクタ21をそれぞれ設置し(図示しないが、第2コネクタ21と上記外部電源線又は外部信号線とは適宜接続されている)、引出し3を対応する小部屋に挿入して押圧すると自動的に第1コネクタ20と第2コネクタ21が互いに嵌めあって接続される構成である。   At this time, as shown in FIG. 3 and FIG. 4B, the drawer that stores the battery module 17 as a stored item, that is, the drawer that increases the airflow resistance, stores the power supply line or signal line of the battery module 17 from the drawer. It is formed with connectors 20 and 21 for easily connecting to an external power supply line or external signal line (not shown) existing outside the casing 2 of the tool 1. More specifically, in the drawer where the ventilation resistance is increased, the first connector 20 is installed on the rear plate 15 (the first connector 20 and the battery module 17 of the stored item are appropriately connected by wiring inside the drawer 3. In addition, the second connector 21 is installed at a position corresponding to each of the small rooms on the back plate 4 of the housing 2 (not shown, but the second connector 21 and the external power supply line or external signal line are The first connector 20 and the second connector 21 are automatically fitted and connected to each other when the drawer 3 is inserted and pressed into the corresponding small room.

さらに、本実施形態の収納具1ひいては電池システムBでは、図5に示すように、電気部品を収納物として収納することで通気抵抗が小となる引出しが、縦方向の下端側に集合した形で配設され、且つ中央側の列に対し横方向外側の列の数が少なくなるように段状に配設されている。すなわち、収納具1の縦方向の下端側に、中央側を頂点として通気抵抗が小となる複数の引出しを段状に配設した通気抵抗が小の領域(部品収納部M2)が形成され、残りの部分に、複数の通気抵抗が大となる複数の引出しを集合した通気抵抗が大の領域(電池収納部M1)が形成される。   Furthermore, in the storage device 1 and the battery system B of the present embodiment, as shown in FIG. 5, the drawer in which the ventilation resistance is reduced by storing the electrical components as storage items is gathered on the lower end side in the vertical direction. And arranged stepwise so that the number of rows on the outer side in the lateral direction is smaller than the rows on the center side. That is, a region (component storage portion M2) having a small ventilation resistance is formed on the lower end side in the vertical direction of the storage device 1 by arranging a plurality of drawers having a small ventilation resistance with the center side as a vertex, In the remaining portion, a region (battery storage portion M1) having a large ventilation resistance is formed by collecting a plurality of drawers having a plurality of ventilation resistances.

そして、上記構成からなる本実施形態の収納具1及びこれを備えた電池システムBにおいては、上記のように通気抵抗が小の領域である部品収納部M2と通気抵抗が大の領域である電池収納部M1の配置を設定することにより、冷却装置19の駆動によって各列に冷却風を流通させた際、発熱体である電池(電池モジュール17)を引出し3に収納することによって熱がこもりやすい中央側の列に冷却風を好適に流通させることができる。   In the storage device 1 of the present embodiment having the above-described configuration and the battery system B including the same, the component storage portion M2 having a small ventilation resistance and the battery having a large ventilation resistance as described above. By setting the arrangement of the storage portion M1, when the cooling air is circulated through each row by driving the cooling device 19, the battery (battery module 17), which is a heating element, is stored in the drawer 3 so that heat is easily trapped. Cooling air can be suitably circulated through the central row.

これにより、従来のように電池収納部M1と部品収納部M2の配置に起因して電池モジュール17に対する冷却バランスが乱れることを解消でき、電池温度の均一性を保つことが可能になる。よって、収納具1に収納した複数の電池17の劣化を均一化することができ、好適な電池システムBを提供することが可能になる。   Thereby, it is possible to eliminate the disturbance of the cooling balance with respect to the battery module 17 due to the arrangement of the battery storage part M1 and the component storage part M2 as in the prior art, and it is possible to maintain the uniformity of the battery temperature. Therefore, the deterioration of the plurality of batteries 17 stored in the storage tool 1 can be made uniform, and a suitable battery system B can be provided.

以上、本発明に係る収納具及び電池システムの一実施形態について説明したが、本発明は上記の一実施形態に限定されるものではなく、その趣旨を逸脱しない範囲で適宜変更可能である。   As mentioned above, although one Embodiment of the storage tool and battery system which concern on this invention was described, this invention is not limited to said one Embodiment, In the range which does not deviate from the meaning, it can change suitably.

例えば、本実施形態では、電気部品を収納物として収納することで通気抵抗が小となる引出し(部品収納部M2)が、縦方向の下端側に集合した形で配設され、且つ中央側の列に対し横方向外側の列の数が少なくなるように段状に配設されているものとしたが、通気抵抗が小となる引出し(部品収納部M2)は、縦方向の上端側、あるいは上端側と下端側の両側に集合した形で配設されていてもよい。   For example, in the present embodiment, drawers (component storage portions M2) that reduce the airflow resistance by storing electrical components as storage items are arranged in the form of gathering at the lower end side in the vertical direction, and at the center side It is assumed that the number of rows outside in the horizontal direction with respect to the rows is arranged in a step-like manner, but the drawer (component storage portion M2) having a low ventilation resistance is provided on the upper end side in the vertical direction or You may arrange | position with the form gathered on both sides of the upper end side and the lower end side.

また、図6に示すように、複数の通気抵抗が小となる引出しが、縦方向の上端側と下端側の一方の側に配設されている場合において、通気抵抗が小となる引出しと反対の側の縦方向の他方の側に配設され、且つ横方向中央側から外側に配設された通気抵抗が大となる引出しの内部に、冷却風を直接的に供給するための冷却風バイパス路22を備えて収納具1及び電池システムBが構成されていてもよい。この場合には、通気抵抗が大となる引出しの数が少なく、高温になりやすい部分(電池収納部M1の高温になりやすい部分S;図5参照)に、冷却風バイパス路22を通じて直接冷却風を供給して流通させることができる。これにより、より確実に、電池収納部M1と部品収納部M2の配置に起因して電池モジュール17に対する冷却バランスが乱れることを解消でき、電池温度の均一性を保つことが可能になる。   In addition, as shown in FIG. 6, when a plurality of drawers having a small ventilation resistance are disposed on one of the upper end side and the lower end side in the vertical direction, the drawer is opposite to the drawer having a low ventilation resistance. Cooling air bypass for directly supplying cooling air to the inside of the drawer having a large airflow resistance disposed on the other side in the vertical direction on the side of the side and disposed on the outer side from the lateral center. The container 1 and the battery system B may be configured with the path 22. In this case, the number of the drawers that increase the airflow resistance is small, and the cooling air is directly passed through the cooling air bypass path 22 to the portion that is likely to be high temperature (the portion S that is likely to be high temperature of the battery housing portion M1; Can be distributed. As a result, it is possible to more reliably eliminate the disorder of the cooling balance with respect to the battery module 17 due to the arrangement of the battery storage portion M1 and the component storage portion M2, and to maintain the uniformity of the battery temperature.

1 収納具
2 筐体
3 引出し
4 背板
5 天板
6 側板
7 第1仕切板
8 第2仕切板
9 通気孔
10 通気孔
11 底板
12 通気孔
13 前板
14 取っ手
15 後板
16 側板
17 収納物(電池モジュール)
18 台
19 送風機(冷却装置)
20 第1コネクタ
21 第2コネクタ
22 冷却風バイパス路
B 電池システム
M1 電池収納部
M2 部品収納部
DESCRIPTION OF SYMBOLS 1 Storage tool 2 Housing | casing 3 Drawer 4 Back plate 5 Top plate 6 Side plate 7 First partition plate 8 Second partition plate 9 Vent hole 10 Vent hole 11 Bottom plate 12 Vent hole 13 Front plate 14 Handle 15 Rear plate 16 Side plate 17 (Battery module)
18 units 19 Blower (cooling device)
20 First Connector 21 Second Connector 22 Cooling Air Bypass Path B Battery System M1 Battery Storage M2 Component Storage

Claims (3)

縦横に整列配置して複数の小部屋を形成する筐体と、前記筐体の各小部屋に挿入して設けられ、内部に収納物が収納される引出しとを備えるとともに、前記筐体は冷却装置の駆動によって、縦方向に配置された列毎の複数の前記引出しの内部に冷却風を流通させ、前記引出しに収納した前記収納物を冷却可能に構成されており、
前記複数の引出しは、前記収納物を収納した状態で前記冷却風の通気抵抗が大となる引出しと、通気抵抗が小となる引出しとに分けられ、
複数の通気抵抗が小となる引出しが、前記縦方向の上端側と下端側の少なくとも一方の側に集合した形で配設され、且つ各列における前記通気抵抗が小となる引出しの数が横方向中央側から外側に向かうに従い少なくなるように段状に配設されていることを特徴とする収納具。
The housing includes a casing that is arranged vertically and horizontally to form a plurality of small chambers, and a drawer that is inserted into each of the small chambers of the casing and stores stored items therein. By driving the apparatus, cooling air is circulated inside the plurality of drawers for each of the columns arranged in the vertical direction, and the stored items stored in the drawers can be cooled,
The plurality of drawers are divided into a drawer in which the ventilation resistance of the cooling air is large and a drawer in which the ventilation resistance is small in a state in which the stored items are stored,
A plurality of drawers with low ventilation resistance are arranged in a form gathered on at least one of the upper end side and the lower end side in the vertical direction, and the number of drawers with low ventilation resistance in each row is horizontal. A storage tool that is arranged in a step shape so as to decrease from the center in the direction toward the outside.
請求項1記載の収納具において、
複数の前記通気抵抗が小となる引出しが、前記縦方向の上端側と下端側の一方の側に配設されており、
前記通気抵抗が小となる引出しと反対の側の前記縦方向の他方の側に配設され、且つ前記横方向中央側から外側に配設された前記通気抵抗が大となる引出しの内部に、前記冷却風を直接的に供給するための冷却風バイパス路を備えていることを特徴とする収納具。
The storage device according to claim 1,
A plurality of drawers where the ventilation resistance is reduced are disposed on one side of the upper end side and the lower end side in the vertical direction,
Inside the drawer where the ventilation resistance is increased, which is disposed on the other side in the longitudinal direction opposite to the drawer where the ventilation resistance becomes small, and disposed on the outer side from the lateral center. A storage device comprising a cooling air bypass for directly supplying the cooling air.
請求項1または請求項2に記載の収納具を備え、
前記通気抵抗が大となる引出しに収納する前記収納物が電池モジュールであることを特徴とする電池システム。
The storage device according to claim 1 or 2,
The battery system, wherein the stored item stored in the drawer having a large ventilation resistance is a battery module.
JP2011022764A 2011-02-04 2011-02-04 Storage tool and battery system including the same Expired - Fee Related JP4969691B1 (en)

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PCT/JP2012/052369 WO2012105643A1 (en) 2011-02-04 2012-02-02 Container, and battery system provided with same

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