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JP2013165013A - Fire prevention device for battery - Google Patents

Fire prevention device for battery Download PDF

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Publication number
JP2013165013A
JP2013165013A JP2012028071A JP2012028071A JP2013165013A JP 2013165013 A JP2013165013 A JP 2013165013A JP 2012028071 A JP2012028071 A JP 2012028071A JP 2012028071 A JP2012028071 A JP 2012028071A JP 2013165013 A JP2013165013 A JP 2013165013A
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Prior art keywords
battery
space
fire prevention
plate
fire
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JP2012028071A
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JP5357987B2 (en
Inventor
Kenji SEKIBA
研治 関場
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Mitsubishi Heavy Industries Ltd
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Mitsubishi Heavy Industries Ltd
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Priority to JP2012028071A priority Critical patent/JP5357987B2/en
Priority to TW102104963A priority patent/TW201338246A/en
Priority to PCT/JP2013/053071 priority patent/WO2013122005A1/en
Publication of JP2013165013A publication Critical patent/JP2013165013A/en
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    • 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
    • H01M50/30Arrangements for facilitating escape of gases
    • H01M50/35Gas exhaust passages comprising elongated, tortuous or labyrinth-shaped exhaust passages
    • H01M50/367Internal gas exhaust passages forming part of the battery cover or case; Double cover vent systems
    • 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
    • H01M50/233Mountings; Secondary casings or frames; Racks, modules or packs; Suspension devices; Shock absorbers; Transport or carrying devices; Holders characterised by physical properties of casings or racks, e.g. dimensions
    • H01M50/24Mountings; Secondary casings or frames; Racks, modules or packs; Suspension devices; Shock absorbers; Transport or carrying devices; Holders characterised by physical properties of casings or racks, e.g. dimensions adapted for protecting batteries from their environment, e.g. from corrosion
    • 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
    • H01M50/271Lids or covers for the racks or secondary casings
    • 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
    • H01M50/30Arrangements for facilitating escape of gases
    • H01M50/383Flame arresting or ignition-preventing means
    • 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
    • H01M50/30Arrangements for facilitating escape of gases
    • H01M50/394Gas-pervious parts or elements
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
    • H01M10/00Secondary cells; Manufacture thereof
    • H01M10/05Accumulators with non-aqueous electrolyte
    • H01M10/052Li-accumulators
    • 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
    • H01M50/207Racks, modules or packs for multiple batteries or multiple cells characterised by their shape
    • H01M50/209Racks, modules or packs for multiple batteries or multiple cells characterised by their shape adapted for prismatic or rectangular cells
    • 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

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  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Electrochemistry (AREA)
  • General Chemical & Material Sciences (AREA)
  • Gas Exhaust Devices For Batteries (AREA)
  • Battery Mounting, Suspending (AREA)

Abstract

PROBLEM TO BE SOLVED: To provide a new fire prevention device for a battery which eliminates a gas occurring from a safety valve of a battery from a space where the battery is disposed, blocks a fire in the space where the battery is disposed even when the gas occurs with the fire, and prevents a fire disaster, etc. of objects placed around the battery.SOLUTION: A fire prevention device for a battery includes: a battery 3 including a safety valve 33; a fireproof plate 10 disposed at least in an emission direction of a gas; and a communication part 20 which is provided in the fireproof plate 10 and communicates a first space where the battery 3 is disposed with a second space located at the opposite side of the first space with the fireproof plate 10 set as a boundary therebetween. The communication part 20 is composed of a column part, protruding from the fireproof plate 10 to at least one of the first space and the second space and including a through hole connecting the first space with the second space, and a cover part that covers an area ranging from the through hole at the protruding side of the column part to an outer peripheral surface of the column part while forming a predetermined air gap between itself and the column part.

Description

本発明は、電池用防火装置に関する。   The present invention relates to a battery fire prevention device.

電池には、放電のみ行う一次電池や充放電を行う二次電池が存在する。近年、特に、二次電池として、高エネルギ密度、高出力、及び長寿命といった特長を有するリチウム二次電池が注目されている。リチウム二次電池は、一般的に、電極板、すなわち正極板及び負極板がセパレータを介して積層された積層電極体を電解液等とともに電池容器に密閉した構成をしている。   As the battery, there are a primary battery that performs only discharging and a secondary battery that performs charging and discharging. In recent years, lithium secondary batteries having features such as high energy density, high output, and long life have attracted attention as secondary batteries. In general, a lithium secondary battery has a structure in which an electrode plate, that is, a laminated electrode body in which a positive electrode plate and a negative electrode plate are laminated via a separator, is sealed in a battery container together with an electrolytic solution and the like.

リチウム二次電池などの電池において、例えば、短絡や過充電などの異常が生じた場合、電解液が急激に気化するなどの要因により電池容器内で多量の高温ガスが発生し、電池容器の内部圧力が急激に上昇して電池容器本体が破裂するおそれがある。そのため、一般的には、電池容器の内部圧力が所定値以上となったときに電池容器内のガスを外部に放出する安全弁を電池容器に設けることで、電池容器の破裂を防止している。   In a battery such as a lithium secondary battery, for example, when an abnormality such as a short circuit or overcharge occurs, a large amount of high-temperature gas is generated in the battery container due to factors such as rapid evaporation of the electrolyte. There is a risk that the battery container body may burst due to a sudden rise in pressure. Therefore, in general, the battery container is provided with a safety valve for releasing the gas in the battery container to the outside when the internal pressure of the battery container becomes a predetermined value or more, thereby preventing the battery container from bursting.

ここで、例えば、複数の電池を1つの筐体に収納して大容量の電源として使用する場合、筐体自体が密閉性を有していると、筐体内部においてガスが閉じ込められてガスが充満した状態になり、筐体自体が破裂等する危険性も高まってしまう。   Here, for example, when a plurality of batteries are housed in a single casing and used as a large-capacity power source, if the casing itself has a sealing property, the gas is trapped inside the casing and the gas is It will be in a full state and the risk of the housing itself bursting will increase.

そこで、特許文献1では、電池を収納した筐体に排気ダクト及び開口部といった外部へのガス流通路を設け、このガス流通路を通じて電池の安全弁から発生したガスを筐体外部に排出することによって筐体の安全性を高めるといった技術が開示されている。   Therefore, in Patent Document 1, by providing a gas flow passage to the outside such as an exhaust duct and an opening in a case housing the battery, and discharging the gas generated from the safety valve of the battery through the gas flow passage to the outside of the case. A technique for improving the safety of the housing is disclosed.

特開2011−70871号公報JP 2011-70871 A

しかしながら、電池の安全弁から放出したガスは発火を伴っていることもあり、この場合、特許文献1に記載の技術のように、排気ダクトから開口部までのガスの流通路が直線状に形成されていると、火も排気ダクトを通じて開口部から噴出しやすくなり、筐体の周囲に配置された物体等の火災を起こし得るという問題点があった。   However, the gas released from the safety valve of the battery may be accompanied by ignition. In this case, the gas flow path from the exhaust duct to the opening is formed linearly as in the technique described in Patent Document 1. In such a case, fire is easily ejected from the opening through the exhaust duct, and there is a problem that a fire such as an object disposed around the casing may occur.

したがって、本発明は上記問題点に鑑み、電池が異常となって電池の安全弁からガスが生じてもこのガスを電池が配された空間内から除去でき、且つ、万一、ガスが発火を伴って生じた場合であっても、電池が配された空間内に火を閉じ込め、電池の周囲の物体の火災等を防ぐことができる新しい電池用防火装置を提供することを目的とする。   Therefore, in view of the above problems, the present invention can remove this gas from the space where the battery is arranged even if the battery becomes abnormal and gas is generated from the safety valve of the battery. It is an object of the present invention to provide a new battery fire prevention device capable of confining fire in a space where a battery is disposed and preventing an object surrounding the battery from being fired.

本発明による電池用防火装置は、電池容器の内部圧力が所定値以上となったときに電池容器の内部のガスを電池容器の外部に放出する弁を備えた電池と、ガスの放出方向に少なくとも配される防火板と、防火板に設けられ、電池が配された第一の空間と防火板を境として第一の空間と反対側の第二の空間とを連通する連通部と、を有し、連通部は、防火板から第一の空間と第二の空間の少なくともいずれか一方に突出し、第一の空間と第二の空間とをつなぐ貫通孔を備えた柱状部と、柱状部と所定の空隙を有しつつ柱状部の突出した側の貫通孔から柱状部の外周面までを覆う覆部とからなる。   The battery fire prevention device according to the present invention includes a battery including a valve that discharges gas inside the battery container to the outside of the battery container when the internal pressure of the battery container reaches a predetermined value or more, and at least in a gas discharge direction. A fire prevention plate disposed on the fire prevention plate, and a communication portion that communicates the first space with the second space on the opposite side of the fire prevention plate. The communicating portion protrudes from the fire prevention plate into at least one of the first space and the second space, and includes a columnar portion having a through-hole that connects the first space and the second space, The cover portion covers a portion from the through hole on the protruding side of the columnar portion to the outer peripheral surface of the columnar portion while having a predetermined gap.

かかる電池用防火装置は、電池の安全弁から放出されたガスの第一の空間から第二の空間までの流通路が段差構造となるため、万一、ガスが発火を伴って生じた場合であっても、この火が外部に噴出されることを抑止することができ、結果として、電池が配された空間内に火を閉じ込め、電池の周囲の物体の火災を防ぐことができる。   Such a battery fire prevention device has a structure in which the flow path from the first space to the second space of the gas released from the safety valve of the battery has a step structure, so that the gas should be generated with ignition. However, it is possible to prevent the fire from being ejected to the outside, and as a result, it is possible to confine the fire in the space where the battery is arranged, and to prevent the fire of objects around the battery.

以上のように構成された本発明の電池用防火装置によれば、電池が異常となって電池の安全弁からガスが生じてもこのガスを電池が配された空間内から除去でき、且つ、万一、ガスが発火を伴って生じた場合であっても、電池が配された空間内に火を閉じ込め、電池の周囲の物体の火災を防ぐことができる。   According to the battery fire prevention device of the present invention configured as described above, even if the battery becomes abnormal and gas is generated from the safety valve of the battery, this gas can be removed from the space where the battery is disposed, and First, even when gas is generated with ignition, the fire can be confined in the space where the battery is arranged, and fires of objects around the battery can be prevented.

本発明の第1実施形態の電池用防火装置の概略的な斜視図を示す。1 is a schematic perspective view of a battery fire protection device according to a first embodiment of the present invention. FIG. 本発明の第1実施形態における電池の概略的な斜視図を示す。The schematic perspective view of the battery in 1st Embodiment of this invention is shown. 本発明の第1実施形態の電池用防火装置の一部である連通部の概略的な構成図を示し、図3(a)は、覆部の重力方向(Z軸方向)の断面図であり、図3(b)は、図3(a)のA−A’線断面図である。The schematic block diagram of the communication part which is a part of battery fire prevention apparatus of 1st Embodiment of this invention is shown, Fig.3 (a) is sectional drawing of the gravity direction (Z-axis direction) of a cover part. FIG. 3B is a cross-sectional view taken along the line AA ′ of FIG. 本発明の第1実施形態の電池用防火装置における防火の様子を示す図である。It is a figure which shows the mode of fire prevention in the fire prevention apparatus for batteries of 1st Embodiment of this invention. 本発明の第2実施形態の電池用防火装置の概略的な斜視図を示す。The schematic perspective view of the fire prevention apparatus for batteries of 2nd Embodiment of this invention is shown. 本発明の第2実施形態の電池用防火装置の一部である連通部の概略的な構成図を示し、図6(a)は、覆部の重力方向(Z軸方向)の断面図であり、図6(b)は、図6(a)のB−B’線断面図である。The schematic block diagram of the communication part which is a part of battery fire prevention apparatus of 2nd Embodiment of this invention is shown, Fig.6 (a) is sectional drawing of the gravity direction (Z-axis direction) of a cover part. FIG. 6B is a cross-sectional view taken along line BB ′ of FIG. 本発明の変形例であって、棚として電池用防火装置を構成した場合の概略的な斜視図を示す。It is a modification of this invention, Comprising: The schematic perspective view at the time of comprising the battery fire prevention apparatus as a shelf is shown.

以下、本発明を実施するための好適な各実施形態を、図面を参照しながら説明する。   Hereinafter, each preferred embodiment for carrying out the present invention will be described with reference to the drawings.

<第1実施形態>
図1は、筐体としての電池用防火装置の概略的な斜視図を示し、図2は、電池3の概略的な斜視図を示し、図3は、電池用防火装置の一部である連通部20の概略的な構成図を示す。
<First Embodiment>
FIG. 1 shows a schematic perspective view of a battery fire prevention device as a housing, FIG. 2 shows a schematic perspective view of a battery 3, and FIG. 3 shows a communication part of the battery fire prevention device. The schematic block diagram of the part 20 is shown.

本発明の第1実施形態の筐体1は、図1に示すとおり、複数の電池3を収容し、これら電池3を覆い囲む防火板10(10a〜10c)と、防火板10上に設けられ、筐体1内の空間と筐体1外の空間とを連通する連通部20とを有して構成される。防火板10と連通部20とを含んで本実施形態の電池用防火装置が形成される。   As shown in FIG. 1, the housing 1 according to the first embodiment of the present invention is provided on a fire prevention plate 10 that houses a plurality of batteries 3 and covers and surrounds the batteries 3. The communication unit 20 communicates the space in the housing 1 and the space outside the housing 1. The battery fire prevention device of the present embodiment is formed including the fire prevention plate 10 and the communication portion 20.

以下では、まず、電池3について簡単に説明し、その後、本実施形態の電池用防火装置について説明する。   Hereinafter, first, the battery 3 will be briefly described, and then the battery fire prevention device of the present embodiment will be described.

電池3は、例えば、リチウム二次電池であって、図2に示すように、容器本体31と、2つの電極端子32(正極端子32A及び負極端子32B)と、安全弁33とを含んで構成される。   The battery 3 is, for example, a lithium secondary battery, and includes a container body 31, two electrode terminals 32 (a positive terminal 32A and a negative terminal 32B), and a safety valve 33, as shown in FIG. The

容器本体31は、電極板、すなわち正極板及び負極板がセパレータを介して積層された積層電極体(図示せず)を非水電解液等とともに密閉して収容する容器であり、例えば、アルミニウム合金などの金属材料で形成される。正極板の一端には正極タブが形成されており、該正極タブと正極端子32Aとを正極リードで電気的に接続し、また、負極板の一端には負極タブが形成されており、該負極タブと負極端子32Bとを負極リードで電気的に接続する。上記構成により、正極端子32A及び負極端子32Bから電流を取り出すことが可能となる。   The container main body 31 is a container that encloses an electrode plate, that is, a laminated electrode body (not shown) in which a positive electrode plate and a negative electrode plate are laminated via a separator together with a nonaqueous electrolytic solution, for example, an aluminum alloy. Formed of a metal material. A positive electrode tab is formed at one end of the positive electrode plate, the positive electrode tab and the positive electrode terminal 32A are electrically connected by a positive electrode lead, and a negative electrode tab is formed at one end of the negative electrode plate. The tab and the negative terminal 32B are electrically connected by a negative lead. With the above configuration, current can be extracted from the positive terminal 32A and the negative terminal 32B.

正極端子32A及び負極端子32Bは、容器本体31の蓋部に形成された貫通孔を介して外部に露出され、正極端子32A及び負極端子32Bと容器本体31とを電気的に絶縁し且つ容器本体31を密閉するための絶縁性樹脂によって、容器本体31と一体化して接着される。   The positive electrode terminal 32A and the negative electrode terminal 32B are exposed to the outside through a through hole formed in the lid portion of the container main body 31, and electrically insulate the positive electrode terminal 32A and the negative electrode terminal 32B from the container main body 31, and The container body 31 is integrally bonded with an insulating resin for sealing 31.

安全弁33は、電池3において短絡や過充電などの異常が生じた場合、電解液が急激に気化するなどの要因により容器本体31の内部で多量の高温ガスが発生し、内部圧力が急激に上昇することによる容器本体31の破裂を防止するための弁であって、容器本体31の内部圧力が所定値以上となったときに開放され、電池容器内のガスを外部に放出する。なお、安全弁33の構造及び形状については、従来の電池に設けられた種々の安全弁と同様とすることができる。   When an abnormality such as a short circuit or overcharge occurs in the battery 3, the safety valve 33 generates a large amount of high-temperature gas inside the container body 31 due to factors such as rapid evaporation of the electrolyte, and the internal pressure rapidly increases. This is a valve for preventing the container main body 31 from bursting, and is opened when the internal pressure of the container main body 31 becomes a predetermined value or more, and releases the gas in the battery container to the outside. In addition, about the structure and shape of the safety valve 33, it can be made the same as that of the various safety valves provided in the conventional battery.

次に、筐体1について説明する。筐体1は、上述したように、防火板10と連通部20とを含んでなる。   Next, the housing 1 will be described. As described above, the housing 1 includes the fire prevention plate 10 and the communication portion 20.

防火板10は、図1に示すように、複数の電池3を収納する筐体(収納箱)1の天板10a、4つの側板10b、及び底板10cとして用いられる。防火板10は、万一、電池3の安全弁33が開放され発火を伴ったガスが生じた場合、この火を筐体1の内部に閉じ込め、筐体1の外部に火が噴出されることを防ぐための板である。防火板10は、例えば、1.6mm以上の厚みを有する鋼板とすることができるが、厚みや材質はこれに限られず、安全弁から発火を伴ったガスが生じた場合に、この火に対して耐火性能を有するような厚みや材質を適宜選択すればよい。   As shown in FIG. 1, the fire protection plate 10 is used as a top plate 10a, four side plates 10b, and a bottom plate 10c of a housing (storage box) 1 that stores a plurality of batteries 3. In the unlikely event that the safety valve 33 of the battery 3 is opened and a gas accompanied by ignition is generated, the fire protection plate 10 traps this fire inside the casing 1 and prevents the fire from being ejected outside the casing 1. It is a board to prevent. The fire prevention plate 10 can be a steel plate having a thickness of 1.6 mm or more, for example, but the thickness and material are not limited to this, and when a gas accompanied by ignition is generated from the safety valve, What is necessary is just to select the thickness and material which have fireproof performance suitably.

なお、以下では、XYZ直交座標系を適宜用いて説明する。筐体1において、例えば、図1に示すように、筐体1の底板10cから筐体1の天板10aに向かう垂線方向(重力方向)をZ軸方向のうちの+Z方向とし、このZ軸方向と直交し且つ複数の電池3が規則的に並んで配置される方向をY軸方向とし、Y軸方向及びZ軸方向に直交する方向をX軸方向とする。また、筐体1の内部空間(電池が配される空間)を第一の空間とし、筐体1の外部空間(第一の空間と防火板10を境として反対側の空間)を第二の空間とする。   In the following description, an XYZ orthogonal coordinate system is used as appropriate. In the housing 1, for example, as shown in FIG. 1, the perpendicular direction (gravity direction) from the bottom plate 10 c of the housing 1 to the top plate 10 a of the housing 1 is defined as the + Z direction of the Z-axis direction. A direction orthogonal to the direction and in which the plurality of batteries 3 are regularly arranged is defined as a Y-axis direction, and a direction orthogonal to the Y-axis direction and the Z-axis direction is defined as an X-axis direction. Moreover, the internal space (space where a battery is arranged) of the housing | casing 1 is made into 1st space, and the external space (space on the other side on the boundary of 1st space and the fire prevention board 10) of 2nd housing | casing 1 is made into 2nd. Space.

連通部20は、天板10aの所定位置に設けられ,図3に示すように、柱状部21と覆部22とから構成される。なお、天板10aの所定位置は、例えば、図4に示すように、電池3の安全弁33が開放されて放出されたガスの放出方向(ここでは、+Z方向)に位置する防火板10aの領域(安全弁33から+Z方向に位置する領域)と所定の距離d以上離れた位置とする。この場合、安全弁33から発火を伴うガスが生じた場合でも、このガスの放出方向に対して防火板10aの平面部位が位置することになり、外部への火の流出をより確実に防ぐことができる点で望ましい。   The communication part 20 is provided at a predetermined position of the top plate 10a, and is composed of a columnar part 21 and a cover part 22, as shown in FIG. For example, as shown in FIG. 4, the predetermined position of the top plate 10 a is an area of the fire protection plate 10 a located in the discharge direction (here, the + Z direction) of the gas released when the safety valve 33 of the battery 3 is opened. It is assumed that the position is a predetermined distance d or more away from (the region located in the + Z direction) from the safety valve 33. In this case, even when a gas accompanied by ignition is generated from the safety valve 33, the plane portion of the fire protection plate 10a is positioned with respect to the direction in which the gas is released, and the outflow of fire to the outside can be more reliably prevented. This is desirable because it can be done.

柱状部21は、図3に示すように、天板10aの上記所定位置において第二の空間側(+Z方向)に突出し、第一の空間側の端面21aと第二の空間側の端面21bとが貫通した中空の柱状の部位である。すなわち、柱状部21は、第一の空間と第二の空間とをつなぐ貫通孔を備えている。図3では、当該柱状部21の形状は円柱状としているが、これに限らず、三角柱状や四角柱状としてもよい。また、柱状部21の外周面には、後述する覆部22の接合部222と接合するための接合部211を備え、この接合部211は、例えば、当該外周面に形成された雄ネジである。なお、柱状部21は、例えば、天板10aに貫通孔を設けて、その貫通孔の周縁に中空の柱状部材を取り付けて形成することができる。また、柱状部21は、例えば、鋼板で形成し、内周面から外周面までの厚みを1.6mm以上とすることができるが、厚みや材質はこれに限られず、安全弁33から発火を伴ったガスが生じた場合に、この火に対して耐火性能を有するような厚みや材質を適宜選択すればよい。   As shown in FIG. 3, the columnar portion 21 protrudes toward the second space side (+ Z direction) at the predetermined position of the top plate 10a, and includes an end surface 21a on the first space side and an end surface 21b on the second space side. It is a hollow columnar part which penetrated. That is, the columnar part 21 includes a through hole that connects the first space and the second space. In FIG. 3, the columnar portion 21 has a columnar shape, but is not limited thereto, and may be a triangular column shape or a quadrangular column shape. Moreover, the outer peripheral surface of the columnar part 21 is provided with a joint part 211 for joining with a joint part 222 of the cover part 22 to be described later. The joint part 211 is, for example, a male screw formed on the outer peripheral surface. . The columnar portion 21 can be formed, for example, by providing a through hole in the top plate 10a and attaching a hollow columnar member to the periphery of the through hole. The columnar portion 21 is formed of, for example, a steel plate, and the thickness from the inner peripheral surface to the outer peripheral surface can be 1.6 mm or more. However, the thickness and material are not limited to this, and the safety valve 33 is ignited. In the case where a gas is generated, a thickness and a material having fire resistance against the fire may be appropriately selected.

覆部22は、柱状部21と所定の空隙を有しつつ柱状部21の第二の空間側の端面21b上から柱状部21の外周面上までを覆う部位である。なお、柱状部21の外周面上までを覆うとは、例えば、柱状部21が第二の空間側(+Z方向)に突出している場合、覆部22の下端部(後述する開口部223が設けられる部位)が、その柱状部21の第二の空間側の端面21bより−Z方向に位置すればよく、外周面全部を覆って覆部22の下端部が天板10aと当接してもよいし、端面21bから−Z方向に外周面の途中までを覆って覆部22の下端部が天板10aと非当接であってもよい。図3(a)は、連通部20の重力方向(Z軸方向)の断面図であって、覆部22が端面21bから−Z方向に柱状部21の外周面の途中までを覆い、覆部22の下端部が天板10aと非当接である場合の一例を示す。   The cover part 22 is a part that covers the columnar part 21 from the end surface 21b on the second space side to the outer peripheral surface of the columnar part 21 while having a predetermined gap with the columnar part 21. Note that covering up to the outer peripheral surface of the columnar portion 21 means that, for example, when the columnar portion 21 protrudes toward the second space (+ Z direction), a lower end portion of the cover portion 22 (an opening 223 described later is provided). The lower portion of the cover portion 22 may be in contact with the top plate 10a so as to cover the entire outer peripheral surface of the columnar portion 21 as long as it is positioned in the −Z direction from the end space 21b on the second space side of the columnar portion 21. And the lower end part of the cover part 22 may be non-contact | abutting with the top plate 10a covering the middle of an outer peripheral surface in the -Z direction from the end surface 21b. FIG. 3A is a cross-sectional view of the communicating portion 20 in the gravitational direction (Z-axis direction), and the covering portion 22 covers from the end surface 21b to the middle of the outer peripheral surface of the columnar portion 21 in the −Z direction. An example in which the lower end portion of 22 is not in contact with the top plate 10a is shown.

覆部22は、電池3の安全弁33から放出され第一の空間から柱状部21の内部を通過したガスを柱状部21の外周面に沿って案内するとともに、万一、安全弁33から発火した場合であっても、その火が外部に噴出されるのを防ぐための主部221と、柱状部21の接合部211と接合するための接合部222とで構成される。主部221の内壁(柱状部21の外周面と対面する面)の形状は、第一の空間から柱状部21の内部を通過したガスを柱状部21の外周面に沿って案内できるように、例えば、ドーム状に形成することができる。また、覆部22の主部221は、例えば、鋼板で形成し、内壁面から外壁面(第二の空間側の面)までの厚みを1.6mm以上とすることができるが、厚みや材質はこれに限られず、安全弁33から発火を伴ったガスが生じた場合に、この火に対して耐火性能を有するような厚みや材質を適宜選択すればよい。一方、接合部222は、例えば、上記接合部211が雄ネジであれば、この雄ネジと螺合する雌ネジである。なお、柱状部21の接合部211と覆部22の接合部222は、雄ネジ及び雌ネジとで接合する場合に限られず、他の接合方法を用いてもよく、例えば、溶接接合であってもよい。   The cover part 22 guides the gas discharged from the safety valve 33 of the battery 3 and passed through the inside of the columnar part 21 from the first space along the outer peripheral surface of the columnar part 21, and should be ignited from the safety valve 33 by any chance. Even so, the main portion 221 for preventing the fire from being ejected to the outside and the joint portion 222 for joining with the joint portion 211 of the columnar portion 21 are configured. The shape of the inner wall of the main portion 221 (the surface facing the outer peripheral surface of the columnar portion 21) is such that the gas that has passed through the inside of the columnar portion 21 from the first space can be guided along the outer peripheral surface of the columnar portion 21. For example, it can be formed in a dome shape. The main portion 221 of the cover portion 22 is formed of, for example, a steel plate, and the thickness from the inner wall surface to the outer wall surface (second space side surface) can be 1.6 mm or more. However, the present invention is not limited to this, and when a gas accompanied by ignition is generated from the safety valve 33, a thickness and a material that have fire resistance performance against this fire may be appropriately selected. On the other hand, the joint portion 222 is a female screw that is screwed into the male screw if the joint portion 211 is a male screw. In addition, the joining part 211 of the columnar part 21 and the joining part 222 of the cover part 22 are not limited to joining with a male screw and a female screw, and other joining methods may be used, for example, welding joining. Also good.

覆部22は、さらに、第一の空間から柱状部21の内部、及び覆部22の内壁と柱状部21の外周面との間の空隙を通過して案内されたガスを第二の空間に放出する開口部223を有する。開口部223は、具体的には、柱状部21の端面21bより−Z方向の位置(端面21bより重力方向に低い位置)に設けられる(以下、「段差構造」という)。例えば、図3(a)に示すように、覆部22の下端部が柱状部21を覆いつつ天板11表面とは当接しないよう配置された場合、開口部223は、図3(b)のXY平面の断面図に示すように、主部221と接合部222とを連結する部位を除いた柱状部21の外周面の形状に沿ってZ軸方向に開口されて形成される。なお、図示は省略するが、覆部22が、柱状部21の外周面を覆いつつ天板11表面と当接するよう配置された場合、開口部223は、覆部22の天板10a側近傍において、XY平面方向に開口されて形成される。   The cover 22 further passes gas guided from the first space through the gap between the inside of the columnar part 21 and the inner wall of the cover 22 and the outer peripheral surface of the columnar part 21 to the second space. An opening 223 for discharging is provided. Specifically, the opening 223 is provided at a position in the −Z direction (a position lower in the gravitational direction than the end face 21 b) from the end face 21 b of the columnar part 21 (hereinafter referred to as “step structure”). For example, as shown in FIG. 3A, when the lower end portion of the cover portion 22 covers the columnar portion 21 and is arranged so as not to contact the surface of the top plate 11, the opening 223 is formed as shown in FIG. As shown in the cross-sectional view of the XY plane, an opening is formed in the Z-axis direction along the shape of the outer peripheral surface of the columnar portion 21 excluding the portion connecting the main portion 221 and the joint portion 222. Although illustration is omitted, when the cover portion 22 is arranged so as to contact the surface of the top plate 11 while covering the outer peripheral surface of the columnar portion 21, the opening 223 is located in the vicinity of the top plate 10 a side of the cover portion 22. , And opened in the XY plane direction.

覆部22と柱状部21との空隙の幅、及び開口部223の開口面積は、筐体1の大きさ及び電池3の安全弁33からのガスの発生量を考慮して適宜自由に設定することができるが、例えば、開口面積を電池3の電極端子32と接続された導線を通す大きさを考慮し、当該導線よりおおきめに設定してもよい。この場合、筐体1において導線を筐体1外部に取り出すための孔を別途設ける必要がない点で、製造上のコスト等のメリットを有する。   The width of the gap between the cover portion 22 and the columnar portion 21 and the opening area of the opening portion 223 should be set as appropriate in consideration of the size of the housing 1 and the amount of gas generated from the safety valve 33 of the battery 3. However, for example, the opening area may be set larger than that of the conducting wire in consideration of the size of the conducting wire connected to the electrode terminal 32 of the battery 3. In this case, there is a merit such as a manufacturing cost in that it is not necessary to separately provide a hole in the housing 1 for taking out the conducting wire to the outside of the housing 1.

以上のように筐体1が有する本実施形態の電池用防火装置によれば、電池3の安全弁33から放出されたガスの流通路が第一の空間から柱状部21の内部を通過して柱状部21の外周面に沿うように案内されて第二の空間に放出されるような段差構造を有するため、電池3が異常となって電池3の安全弁33からガスが生じてもこのガスを電池3が配された第一の空間内から除去でき、且つ、万一、ガスが発火を伴って生じた場合であっても、図4に示すように、覆部22によって外部へ火が流出されることを防ぐことができ、電池3の周囲の物体の火災を防ぐことができる。   As described above, according to the battery fire prevention device of the present embodiment that the housing 1 has, the flow path of the gas released from the safety valve 33 of the battery 3 passes through the inside of the columnar portion 21 from the first space and forms a columnar shape. Since it has a step structure that is guided along the outer peripheral surface of the portion 21 and discharged into the second space, even if the battery 3 becomes abnormal and gas is generated from the safety valve 33 of the battery 3, this gas is discharged to the battery. 3 can be removed from the first space where the gas is disposed, and even if gas is generated with ignition, the cover 22 emits fire to the outside as shown in FIG. It is possible to prevent a fire around an object around the battery 3.

<第2実施形態>
次に、本発明の第2実施形態の電池用防火装置について詳細に説明する。上記第1実施形態の筐体1では、天板10a上に連通部20が設けられた構成であったが、第2実施形態の筐体1’では、図5に示すように、側板10b上に連通部20と基本的に同一構造の連通部20’が設けられることを特徴の1つとする。なお、以下では、第1実施形態と共通の構成についてはその説明を適宜省略する。
Second Embodiment
Next, the battery fire protection device according to the second embodiment of the present invention will be described in detail. In the case 1 of the first embodiment, the communication portion 20 is provided on the top plate 10a. However, in the case 1 ′ of the second embodiment, as shown in FIG. One feature is that a communication portion 20 ′ having basically the same structure as that of the communication portion 20 is provided. In the following, the description of the configuration common to the first embodiment will be omitted as appropriate.

連通部20’は、側板10bの天板10a近傍に設けられる。連通部20’を天板10a近傍に設けることで、電池3の安全弁33からのガスの放出に対しては天板10aで確実に防ぎつつ、筐体1内の上部に溜まりうるガスを外部へ放出しやすくなる。なお、連通部20’を設ける側板10bの位置は、発生し得るガスの比重等に応じて適宜変更してもよい。   The communication portion 20 'is provided in the vicinity of the top plate 10a of the side plate 10b. By providing the communication portion 20 ′ in the vicinity of the top plate 10a, the top plate 10a reliably prevents the release of gas from the safety valve 33 of the battery 3, and the gas that can accumulate in the upper part of the housing 1 to the outside. Easy to release. The position of the side plate 10b where the communication portion 20 'is provided may be changed as appropriate according to the specific gravity of the gas that can be generated.

連通部20’の柱状部21’は、図6(a)に示すように、側板10bの上記天板10a近傍において第二の空間側(+X方向)に突出し、第一の空間側の端面21aと第二の空間側の端面21bとがX軸方向に貫通した中空の円柱状の部位である。なお、柱状部21’の形状自体は、第一実施形態で説明した上記柱状部21と同様とすることができる。   As shown in FIG. 6A, the columnar portion 21 ′ of the communication portion 20 ′ protrudes toward the second space side (+ X direction) in the vicinity of the top plate 10a of the side plate 10b, and the end surface 21a on the first space side. And a second space-side end face 21b are hollow cylindrical portions penetrating in the X-axis direction. The shape of the columnar portion 21 ′ can be the same as that of the columnar portion 21 described in the first embodiment.

連通部20’の覆部22’は、柱状部21’と所定の空隙を有しつつ柱状部21’の第二の空間側の端面21b上から柱状部21’の外周面上を覆う部位である。覆部22’は、基本的には、第一実施形態で説明した覆部22の形状と同様とすることができるが、覆部22’の第一の空間から柱状部21’の内部を通過して柱状部21’の外周面に沿うように案内されたガスを第二の空間に放出する開口部223’を、図6(a)及び図6(b)に示すように、覆部22’のうち柱状部21’の位置より下方(重力方向下方)にのみ設けるようにすることもできる。開口部223’は、具体的には、柱状部21’の端面21bより−Z方向の位置(端面21bより重力方向に低い位置)に設けられる。覆部22’が、例えば、図6(a)に示すように、柱状部21’を覆いつつ側板10b表面とは当接しないよう配置された場合、開口部223’は、図6(b)のYZ平面の断面図に示すように、主部221と接合部222との連結部位のうち柱状部21’の位置より下方(重力方向下方(−Z方向))の位置で、柱状部21の外周面の形状に沿ってX軸方向に開口される。開口部223’が柱状部21’の位置より下方にのみ設けられることで、電池3の安全弁33から放出された火が柱状部21’の貫通孔を通過したとしても、該火は上方へ進行しようとしても覆部22で遮られて進行できないのに対して、ガスなどの気体は開口部223’を介して第二の空間に排出されることが可能となる点で有用である。   The cover portion 22 ′ of the communication portion 20 ′ is a portion that covers the outer peripheral surface of the columnar portion 21 ′ from the end surface 21b on the second space side of the columnar portion 21 ′ while having a predetermined gap with the columnar portion 21 ′. is there. The cover 22 ′ can be basically the same as the shape of the cover 22 described in the first embodiment, but passes through the inside of the columnar part 21 ′ from the first space of the cover 22 ′. Then, as shown in FIGS. 6 (a) and 6 (b), an opening 223 ′ that discharges the gas guided along the outer peripheral surface of the columnar portion 21 ′ to the second space is covered. It can also be provided only below (in the direction of gravity) below the position of the columnar portion 21 ′. Specifically, the opening 223 'is provided at a position in the -Z direction from the end surface 21b of the columnar portion 21' (a position lower in the gravitational direction than the end surface 21b). For example, as shown in FIG. 6A, when the cover 22 ′ is arranged so as to cover the columnar part 21 ′ and not to come into contact with the surface of the side plate 10 b, the opening 223 ′ is formed as shown in FIG. As shown in the cross-sectional view of the YZ plane, the columnar portion 21 is located below the position of the columnar portion 21 ′ (downward in the gravitational direction (−Z direction)) of the connecting portion between the main portion 221 and the joint portion 222. An opening is made in the X-axis direction along the shape of the outer peripheral surface. Since the opening 223 ′ is provided only below the position of the columnar portion 21 ′, even if the fire released from the safety valve 33 of the battery 3 passes through the through hole of the columnar portion 21 ′, the fire proceeds upward. Even if it is going to be blocked by the cover 22 and cannot proceed, gas such as gas is useful in that it can be discharged into the second space through the opening 223 ′.

このように本実施形態の電池用防火装置によれば、連通部20’が側板10b上の天板10a近傍に設けられていることで、上述の第一実施形態の電池用防火装置の効果に加えて、万一、ガスが発火を伴って生じた場合であっても、火を覆部22の天板10aで確実に外部への噴出を防ぐことができ、仮に天板10aの平面に沿って火が側板10b方向にも広がったとしても、側板10bに設けられた連通部20’によって火を覆部22で外部への噴出を防ぐことができるので、電池3の周囲の物体の火災をより確実に防ぐことができる。   As described above, according to the battery fire prevention device of the present embodiment, the communication portion 20 ′ is provided in the vicinity of the top plate 10 a on the side plate 10 b, which contributes to the effect of the battery fire prevention device of the first embodiment described above. In addition, even if gas is generated with ignition, the top plate 10a of the cover 22 can surely prevent fire from being ejected to the outside, and tentatively along the plane of the top plate 10a. Even if the fire spreads in the direction of the side plate 10b, the communication portion 20 ′ provided in the side plate 10b can prevent the fire from being blown out to the outside by the cover portion 22. This can be prevented more reliably.

また、連通部20’を、側板10b上の天板10a近傍に設けることで、ガスが発生しても外部に放出しやすい構造になり、開口部223’を覆部22’のうち重力方向下方に設けることで、側板10b方向にも広がった火の外部への噴出をより確実に防ぐことができる。   Further, by providing the communication portion 20 ′ in the vicinity of the top plate 10a on the side plate 10b, it becomes a structure that is easy to release to the outside even if gas is generated, and the opening 223 ′ is located below the covering portion 22 ′ in the direction of gravity. By providing in, it can prevent more reliably the jet of the fire which spread also in the direction of the side plate 10b.

<変形例>
以上のように本発明の電池用防火装置の好適な各実施形態について説明したが、本発明は、上記各実施形態に限定されるべきものではなく、特許請求の範囲に表現された思想および範囲を逸脱することなく、種々の変形、追加、及び省略が当業者によって可能である。
<Modification>
As described above, the preferred embodiments of the battery fire protection device of the present invention have been described. However, the present invention should not be limited to the above-described embodiments, and the idea and scope expressed in the claims. Various modifications, additions, and omissions can be made by those skilled in the art without departing from the invention.

例えば、上記各実施形態では、電池3を収納する筐体1,1’としての電池用防火装置を例にとって説明したが、本発明はこれに限られない。例えば、電池用防火装置を棚としてもよい。具体的には、電池3がある棚(下棚)に配され、その電池3の上に更に棚(上棚)を有し、上棚にも電池3や他の物体が配される場合、上棚を防火板とし、該防火板に連通部20を設けてもよい。この結果、電池3の安全弁33より、万一、ガスが発火を伴って生じた場合であっても、防火板及び連通部を境とした上部空間への火の噴出を防ぐことができるため、上棚に配された電池や他の物体の火災を抑えることができる。   For example, in each of the above-described embodiments, the battery fire prevention device as the casing 1 or 1 ′ for storing the battery 3 has been described as an example, but the present invention is not limited to this. For example, a battery fire protection device may be used as a shelf. Specifically, when the battery 3 is placed on a shelf (lower shelf), and there is a shelf (upper shelf) on the battery 3, and the battery 3 and other objects are also placed on the upper shelf, the upper shelf is A fire prevention plate may be provided, and the communication portion 20 may be provided on the fire prevention plate. As a result, even if gas is generated with ignition from the safety valve 33 of the battery 3, it is possible to prevent fire from being ejected into the upper space with the fire plate and the communication portion as a boundary. Fires from batteries and other objects placed on the top shelf can be suppressed.

また、図7に示すように、電池3が配される下棚40aとその上の電池や他の物体が配される上棚40bとの間に別途、中棚として防火板10dを設けて、防火板10dと上棚40bとの間をガスの流通路としてもよい。この場合、高温のガスは上棚40bの電池3や他の物体が配された空間に放出されることなく、且つ、電池3の安全弁33から発火を伴うガスが発生しても、電池3や他の物体が配された上棚40bに対しては直接火が当らないため、上棚40bの電池や他の物体が配された空間の温度上昇を防ぐことができる。その結果、上棚40bに配された電池3が熱せられて内部圧力が上昇して安全弁33が開放されるといった異常連鎖を誘発してしまうおそれを回避することができる。   In addition, as shown in FIG. 7, a fire prevention plate 10d is provided as a middle shelf separately between the lower shelf 40a on which the battery 3 is arranged and the upper shelf 40b on which the battery and other objects are arranged. A gas flow path may be provided between the plate 10d and the upper shelf 40b. In this case, the high temperature gas is not released into the space where the battery 3 and other objects of the upper shelf 40b are disposed, and even if a gas accompanied by ignition is generated from the safety valve 33 of the battery 3, the battery 3 or other Since the upper shelf 40b on which the object is placed is not directly fired, it is possible to prevent the temperature of the space on the upper shelf 40b in which the battery and other objects are placed. As a result, it is possible to avoid the possibility of inducing an abnormal chain in which the battery 3 arranged on the upper shelf 40b is heated, the internal pressure rises, and the safety valve 33 is opened.

また、上記各実施形態では、連通部20,20’の柱状部21,21’がそれぞれ第二の空間側に突出した場合を例にとって説明したが、本発明はこれに限られず、連通部20,20’の柱状部21,21’がそれぞれ第一の空間側に突出したものであってもよい。この場合、覆部22,22’は、柱状部21と所定の空隙を有しつつ柱状部21の第一の空間側の端面21aから柱状部21の外周面上までを覆い、電池3の安全弁33から放出され第一の空間から開口部223,223’を通過して覆部22の内壁に沿って案内されたガスが柱状部21の内部を通過して第二の空間に放出されることとなる。さらに、連通部20,20’の柱状部21,21’がそれぞれ第一の空間側及び第二の空間側の双方に突出したものであってもよく、この場合、いずれかの突出した側に覆部22,22’を設けてもよいし、両方の突出した側に覆部22,22’を設けてもよい。   In each of the above embodiments, the case where the columnar portions 21 and 21 ′ of the communication portions 20 and 20 ′ protrude toward the second space has been described as an example. However, the present invention is not limited to this, and the communication portion 20 is not limited thereto. , 20 ′ may protrude from the first space side. In this case, the cover portions 22, 22 ′ cover the column 21 from the first space-side end surface 21 a to the outer peripheral surface of the columnar portion 21 while having a predetermined gap with the columnar portion 21. The gas released from the first space 33 and passing through the openings 223 and 223 ′ and guided along the inner wall of the cover portion 22 passes through the columnar portion 21 and is discharged into the second space. It becomes. Further, the columnar portions 21 and 21 ′ of the communication portions 20 and 20 ′ may protrude to both the first space side and the second space side, respectively. The cover portions 22 and 22 ′ may be provided, or the cover portions 22 and 22 ′ may be provided on both protruding sides.

さらに、上記第一実施形態において、連通部20は、上記ガスの放出方向上に位置する防火板10aの領域と所定の距離離れた位置に設ける場合を例にとって説明したが、本発明はこれに限られず、例えば、柱状部21の突出する長さ(Z軸方向の長さ)が十分な長さを有しており、且つ、覆部22が柱状部21の外周面を十分に覆っていれば、その放出方向上に設けてもよい。   Further, in the first embodiment, the communication unit 20 has been described by taking as an example a case where the communication unit 20 is provided at a position separated from the area of the fire protection plate 10a located in the gas discharge direction by a predetermined distance. For example, the protruding length of the columnar portion 21 (the length in the Z-axis direction) has a sufficient length, and the cover portion 22 sufficiently covers the outer peripheral surface of the columnar portion 21. For example, it may be provided in the discharge direction.

さらに、上記各実施形態では、電池として、特にリチウム二次電池を例にとって説明したが、本発明はこれに限られず、安全弁が設けられた電池であれば他の電池に適用できることはもちろんである。   Furthermore, in each of the above-described embodiments, the lithium secondary battery has been described as an example of the battery. However, the present invention is not limited to this, and can be applied to other batteries as long as the battery is provided with a safety valve. .

1,1’…筐体、3…電池、10…防火板、10a…天板、10b…側板、10c…底板、20,20’…連通部、21,21’…柱状部、22,22’…覆部、31…容器本体、32…電極端子、32A…正極端子、32B…負極端子、33…安全弁。   DESCRIPTION OF SYMBOLS 1,1 '... Case, 3 ... Battery, 10 ... Fire plate, 10a ... Top plate, 10b ... Side plate, 10c ... Bottom plate, 20,20' ... Communication part, 21,21 '... Columnar part, 22,22' DESCRIPTION OF SYMBOLS ... Cover part, 31 ... Container body, 32 ... Electrode terminal, 32A ... Positive electrode terminal, 32B ... Negative electrode terminal, 33 ... Safety valve.

本発明による電池用防火装置は、電池容器の内部圧力が所定値以上となったときに電池容器の内部のガスを電池容器の外部に放出する弁を備えた電池と、ガスの放出方向に少なくとも配される防火板と、防火板に設けられ、電池が配された第一の空間と防火板を境として第一の空間と反対側の第二の空間とを連通する連通部と、を有し、連通部は、防火板から第一の空間と第二の空間の少なくともいずれか一方に突出し、第一の空間と第二の空間とをつなぐ貫通孔を備えた柱状部と、柱状部と所定の空隙を有しつつ柱状部の突出した側の貫通孔から柱状部の外周面までを覆う覆部とからなり、覆部は、第一の空間から第二の空間にガスを放出する開口部が形成されていことを特徴とするThe battery fire prevention device according to the present invention includes a battery including a valve that discharges gas inside the battery container to the outside of the battery container when the internal pressure of the battery container reaches a predetermined value or more, and at least in a gas discharge direction. A fire prevention plate disposed on the fire prevention plate, and a communication portion that communicates the first space with the second space on the opposite side of the fire prevention plate. The communicating portion protrudes from the fire prevention plate into at least one of the first space and the second space, and includes a columnar portion having a through-hole that connects the first space and the second space, while having a predetermined gap Ri Do from the through hole of the protruding side of the columnar portion and the covering portion covering up to the outer peripheral surface of the columnar portion, covering portion releases the gas from the first space to the second space wherein the openings that have been formed.

Claims (6)

電池容器の内部圧力が所定値以上となったときに前記電池容器の内部のガスを前記電池容器の外部に放出する弁を備えた電池と、
前記ガスの放出方向に少なくとも配される防火板と、
前記防火板に設けられ、前記電池が配された第一の空間と前記防火板を境として前記第一の空間と反対側の第二の空間とを連通する連通部と、を有し、
前記連通部は、前記防火板から前記第一の空間と前記第二の空間の少なくともいずれか一方に突出し、前記第一の空間と前記第二の空間とをつなぐ貫通孔を備えた柱状部と、前記柱状部と所定の空隙を有しつつ前記柱状部の前記突出した側の前記貫通孔から前記柱状部の外周面までを覆う覆部とからなることを特徴とする電池用防火装置。
A battery comprising a valve for releasing the gas inside the battery container to the outside of the battery container when the internal pressure of the battery container becomes a predetermined value or more;
A fire prevention plate disposed at least in the gas discharge direction;
A communication portion that is provided on the fire prevention plate and communicates with the first space where the battery is disposed and the second space on the opposite side from the first space with the fire prevention plate as a boundary;
The communication portion protrudes from the fire prevention plate into at least one of the first space and the second space, and has a columnar portion including a through hole that connects the first space and the second space; A battery fire prevention device comprising: a covering portion that covers the columnar portion and a predetermined gap from the through hole on the protruding side of the columnar portion to an outer peripheral surface of the columnar portion.
前記連通部は、前記ガスの放出方向に位置する前記防火板の領域と所定の距離離れて配されることを特徴とする請求項1に記載の電池用防火装置。   2. The fire protection device for a battery according to claim 1, wherein the communication portion is disposed at a predetermined distance from a region of the fire protection plate located in the gas discharge direction. 前記防火板は、前記電池を収納する筐体を構成する天板及び側板として用いられており、
前記連通部は、前記側板上の前記天板近傍に設けられていることを特徴とする請求項1又は請求項2に記載の電池用防火装置。
The fire prevention plate is used as a top plate and a side plate constituting a housing for storing the battery,
The battery fire prevention device according to claim 1, wherein the communication portion is provided in the vicinity of the top plate on the side plate.
前記開口部は、前記覆部のうち重力方向下方に設けられていることを特徴とする請求項3に記載の電池用防火装置。   The battery fire prevention device according to claim 3, wherein the opening is provided below the cover in the direction of gravity. 前記防火板、前記柱状部の側部、及び前記覆部は、それぞれ鋼板であり、且つ、所定の厚みを有してなることを特徴とする請求項1乃至請求項4のいずれか1項に記載の電池用防火装置。   The said fire prevention board, the side part of the said columnar part, and the said cover part are steel plates, respectively, and have predetermined thickness, The said any one of Claim 1 thru | or 4 characterized by the above-mentioned. The fire prevention apparatus for batteries as described. 前記連通部における前記柱状部と前記覆部との間の空隙は、前記電池の電極端子と電気的に接続される導線を通過できる大きさ以上であることを特徴とする請求項1乃至請求項5のいずれか1項に記載の電池用防火装置。   The space between the columnar part and the cover part in the communication part is not less than a size capable of passing through a conducting wire electrically connected to an electrode terminal of the battery. The battery fire prevention device according to any one of 5.
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