JP6879897B2 - Secondary battery - Google Patents

Secondary battery Download PDF

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JP6879897B2
JP6879897B2 JP2017244839A JP2017244839A JP6879897B2 JP 6879897 B2 JP6879897 B2 JP 6879897B2 JP 2017244839 A JP2017244839 A JP 2017244839A JP 2017244839 A JP2017244839 A JP 2017244839A JP 6879897 B2 JP6879897 B2 JP 6879897B2
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case
generator
secondary battery
lid
opening
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JP2019114343A (en
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薫 梶田
薫 梶田
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Primearth EV Energy Co Ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/10Energy storage using batteries
    • 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
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P70/00Climate change mitigation technologies in the production process for final industrial or consumer products
    • Y02P70/50Manufacturing or production processes characterised by the final manufactured product

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  • Secondary Cells (AREA)
  • Connection Of Batteries Or Terminals (AREA)
  • Sealing Battery Cases Or Jackets (AREA)
  • Cell Separators (AREA)

Description

本発明は二次電池に関し、例えば、発電体が収納されるケースに蓋が溶接により接合される二次電池に関する。 The present invention relates to a secondary battery, for example, a secondary battery in which a lid is welded to a case in which a power generator is housed.

近年、二次電池への需要が高まっており、二次電池の生産性向上への要求が高まっている。そこで、二次電池の構造が特許文献1に開示されている。特許文献1に示されるように、二次電池では、袋状の絶縁フィルムに発電体が納められた状態で、発電体がケースに収納される。そして、発電体がケースに収められた状態でケースの開口部に蓋が被せられる、ケースと蓋とがレーザー溶接により接合される。しかしながら、このレーザー溶接工程において、エネルギービーが本体部材内へ侵入すると発電体がダメージを受けることがある。そこで、特許文献2では、エネルギービームのケース内への侵入を防止する技術が開示されている。 In recent years, the demand for secondary batteries has been increasing, and the demand for improving the productivity of secondary batteries is increasing. Therefore, the structure of the secondary battery is disclosed in Patent Document 1. As shown in Patent Document 1, in a secondary battery, the power generator is housed in a case in a state where the power generator is housed in a bag-shaped insulating film. Then, the case and the lid are joined by laser welding so that the opening of the case is covered with the lid while the power generator is housed in the case. However, in this laser welding process, if the energy bee invades the main body member, the generator may be damaged. Therefore, Patent Document 2 discloses a technique for preventing the energy beam from entering the case.

特許文献2に記載の電池では、電池ケースは、一対の開口長辺部及び一対の開口短辺部を含む矩形状の開口部を有する有底角筒状の本体部材と、上記開口部内に挿入されて上記開口部を封口してなり、上記一対の開口長辺部にそれぞれ対向する一対の蓋長辺部、及び、上記一対の開口短辺部にそれぞれ対向する一対の蓋短辺部を有する矩形板状の蓋部材と、を有する。そして、上記開口長辺部と上記蓋長辺部、及び、上記開口短辺部と上記蓋短辺部とがエネルギービームによりそれぞれ溶接される。また、上記本体部材の上記開口部のうち、上記一対の開口短辺部は、上記開口短辺部全体にわたり、内側に向けて突出し、上記蓋部材の上記蓋短辺部をそれぞれ支持する短辺内側突出部を有し、上記一対の開口長辺部は、上記開口長辺部全体にわたり、内側に向けて突出すると共に、上記短辺内側突出部よりも上記本体部材の深さ方向に低位とされ、上記蓋部材の上記蓋長辺部と離間してなる長辺内側突出部を有する。 In the battery described in Patent Document 2, the battery case is inserted into the opening and a bottomed square tubular body member having a rectangular opening including a pair of long sides of the opening and a pair of short sides of the opening. The opening is closed, and has a pair of lid long sides facing the pair of opening long sides and a pair of lid short sides facing each other of the pair of opening short sides. It has a rectangular plate-shaped lid member. Then, the long side of the opening and the long side of the lid, and the short side of the opening and the short side of the lid are welded by the energy beam. Further, among the openings of the main body member, the pair of opening short sides project inward over the entire opening short sides, and the short sides supporting the lid short sides of the lid member, respectively. It has an inner protruding portion, and the pair of long side portions of the opening project inward over the entire long side portion of the opening, and are lower than the inner protruding portion of the short side in the depth direction of the main body member. It has a long side inner protruding portion that is separated from the lid long side portion of the lid member.

特開2016−91787号公報Japanese Unexamined Patent Publication No. 2016-91787 特開2014−78331号公報Japanese Unexamined Patent Publication No. 2014-78331

しかしながら、ケースと蓋とをレーザー溶接により接合する場合、エネルギービームにより熱せられた蓋或いはケースの部材の一部がスパッタとして飛散することがある。このスパッタが発電体を収納する絶縁フィルム内に入り込むことがある。つまり、特許文献1、2に記載の技術では、スパッタが絶縁フィルム内に入り込むことを十分に防止でき内問題がある。 However, when the case and the lid are joined by laser welding, a part of the lid or the member of the case heated by the energy beam may be scattered as spatter. This spatter may enter the insulating film that houses the generator. That is, the techniques described in Patent Documents 1 and 2 can sufficiently prevent spatter from entering the insulating film, and have an internal problem.

本発明は、上記事情に鑑みてなされたものであり、スパッタ等の異物が絶縁フィルム内に侵入を防止することを目的とするものである。 The present invention has been made in view of the above circumstances, and an object of the present invention is to prevent foreign matter such as spatter from entering the insulating film.

本発明の二次電池の一態様は、発電体が収納されるケースと、前記ケースの上部に溶接により接合される蓋とを有する二次電池であって、前記ケースは、前記発電体が納められる発電体収納部と、前記ケースを短辺側側面から断面視した場合に、前記発電体収納部よりも幅が広く、前記蓋が接合される開口部と、前記発電体収納部の壁と連続するように形成される壁面であって、一端が前記発電体収納部に接続され、他端が前記開口部と同じ幅に開くように形成されるスロープ部と、を有し、前記発電体は、前記発電体と前記ケースとを絶縁する袋状の絶縁フィルムに納められた状態で前記発電体収納部に納められ、前記スロープ部の一端は、前記発電体収納部の壁面、前記絶縁フィルム及び前記発電体が密着状態から離れた状態になる乖離点よりも前記開口部に近い位置に設けられ、前記絶縁フィルムの開口端は、前記スロープ部の一端よりも前記開口部に近く、かつ、前記蓋に接しない位置に設けられる。 One aspect of the secondary battery of the present invention is a secondary battery having a case in which a power generator is housed and a lid bonded to the upper part of the case by welding, and the case is housed in the power generator. When the case is viewed in cross-sectional view from the side surface on the short side, the width of the generator storage portion is wider than that of the generator storage portion, the opening to which the lid is joined, and the wall of the generator storage portion. The wall surface is formed to be continuous, and has a slope portion formed so that one end is connected to the power generation body storage portion and the other end is opened to the same width as the opening portion, and the power generation body is formed. Is housed in the power generation body storage portion in a state of being housed in a bag-shaped insulating film that insulates the power generation body and the case, and one end of the slope portion is a wall surface of the power generation body storage portion and the insulation film. And the power generator is provided at a position closer to the opening than the deviation point where the generator is separated from the close contact state, and the opening end of the insulating film is closer to the opening than one end of the slope portion and It is provided at a position not in contact with the lid.

本発明にかかる二次電池は、上記構成を有することで、ケースの開口部の外周の直下にケースの壁面と絶縁フィルムとで構成されるトラップ空間が形成されるため、開口部と蓋との間に出来る隙間からケース内に侵入するスパッタ等の異物をトラップ空間でトラップすることができる。 Since the secondary battery according to the present invention has the above configuration, a trap space composed of the wall surface of the case and the insulating film is formed immediately below the outer periphery of the opening of the case. Foreign matter such as spatter that invades the case through the gap created between them can be trapped in the trap space.

本発明の二次電池は、組み立て工程において発生する異物が絶縁フィルム内部に侵入することを防止することができる。 The secondary battery of the present invention can prevent foreign matter generated in the assembling process from entering the inside of the insulating film.

実施の形態1にかかる二次電池の外観を説明する図である。It is a figure explaining the appearance of the secondary battery which concerns on Embodiment 1. FIG. 実施の形態1にかかる二次電池の短辺側側面から見た断面図である。FIG. 5 is a cross-sectional view seen from the short side side surface of the secondary battery according to the first embodiment. 比較例にかかる二次電池の短辺側側面から見た断面図である。It is sectional drawing seen from the short side side side of the secondary battery which concerns on a comparative example.

実施の形態1
以下、図面を参照して本発明の実施の形態について説明する。説明の明確化のため、以下の記載及び図面は、適宜、省略、及び簡略化がなされている。各図面において、同一の要素には同一の符号が付されており、必要に応じて重複説明は省略されている。
Embodiment 1
Hereinafter, embodiments of the present invention will be described with reference to the drawings. In order to clarify the explanation, the following description and drawings have been omitted or simplified as appropriate. In each drawing, the same elements are designated by the same reference numerals, and duplicate explanations are omitted as necessary.

図1に実施の形態1にかかる二次電池1の外観図を示す。図1に示すように、実施の形態1にかかる二次電池1は、ケース10、蓋20を有する。蓋20は、ケース10の上部に設けられる。また、蓋20には、ケース10内に納められる発電体からの電力の取り出し端子となる正極極柱21P及び負極極柱21Nが設けられる。 FIG. 1 shows an external view of the secondary battery 1 according to the first embodiment. As shown in FIG. 1, the secondary battery 1 according to the first embodiment has a case 10 and a lid 20. The lid 20 is provided on the upper part of the case 10. Further, the lid 20 is provided with a positive electrode pole column 21P and a negative electrode pole pillar 21N which serve as terminals for taking out electric power from the generator housed in the case 10.

ケース10は、上面視において短辺部分と長辺部分とを組み合わせた矩形形状を有する。また、ケース10は、短辺側側面から見て蓋20が嵌め込まれる開口部の幅が、底部の幅よりも広くなるように形成される。ケース10の張り出し部(開口部の幅となる部分)と、それ以外の部分(底部の幅)とはスロープ部11により接続される。詳しくは後述する、このスロープ部は、ケース10の半分よりも上側(蓋に近い側)に設けられる。 The case 10 has a rectangular shape in which a short side portion and a long side portion are combined in a top view. Further, the case 10 is formed so that the width of the opening into which the lid 20 is fitted is wider than the width of the bottom when viewed from the side surface on the short side. The overhanging portion (the portion having the width of the opening) of the case 10 and the other portion (the width of the bottom portion) are connected by the slope portion 11. This slope portion, which will be described in detail later, is provided on the upper side (the side closer to the lid) than the half of the case 10.

ここで、実施の形態1にかかる二次電池1では、ケース10に蓋20をレーザー溶接により接合する。この蓋20の接合工程の前にはケース10と蓋20との間に隙間ができる。この隙間は、ケース10を上面視(蓋側から見た状態)した場合、ケース10の長辺側の辺と蓋との間にできる。このような隙間がある場合、繰り返し行われるレーザー溶接工程で工程の設備に堆積したスパッタ等の異物がこの隙間からケース10内に入り込むことがある。実施の形態1にかかる二次電池1では、ケース10内に設けられるトラップ空間によりこの異物をトラップすることで、異物による不具合を防止する。以下の説明では、異物の一例としてスパッタが入り込むことについて説明するが、異物はスパッタに限られるものではない。 Here, in the secondary battery 1 according to the first embodiment, the lid 20 is joined to the case 10 by laser welding. Before the joining step of the lid 20, a gap is formed between the case 10 and the lid 20. This gap is formed between the long side side of the case 10 and the lid when the case 10 is viewed from above (when viewed from the lid side). When there is such a gap, foreign matter such as spatter accumulated in the equipment of the process in the repeated laser welding process may enter the case 10 through this gap. In the secondary battery 1 according to the first embodiment, the foreign matter is trapped by the trap space provided in the case 10 to prevent problems caused by the foreign matter. In the following description, spatter enters as an example of foreign matter, but the foreign matter is not limited to spatter.

そこで、実施の形態1にかかる二次電池1を短辺側側面から見た断面図を参照して、実施の形態1にかかる二次電池1のスロープ部11の位置及びケース10の構造についてより詳細に説明する。そこで、図2に実施の形態1にかかる二次電池の短辺側側面から見た断面図を示す。 Therefore, referring to the cross-sectional view of the secondary battery 1 according to the first embodiment as viewed from the side surface on the short side, the position of the slope portion 11 of the secondary battery 1 according to the first embodiment and the structure of the case 10 are described. This will be described in detail. Therefore, FIG. 2 shows a cross-sectional view of the secondary battery according to the first embodiment as viewed from the short side side surface.

図2に示すように、実施の形態1にかかる二次電池1は、ケース10内に発電体30が納められる。また、発電体30は、袋状の絶縁フィルム31に納められた状態でケース10内に収納される。図2では、ケース10において発電体30が納められる部分を発電体収納部13とした。発電体30は、正極泊、セパレータ、負極泊のシートを重ねて巻いた捲回体の一部である。この捲回体の最外周はセパレータとなる。また、絶縁フィルム31は、発電体30を構成するセパレータよりも厚い。絶縁フィルム31は、例えば、ポリプロピレン等の樹脂のフィルムである。絶縁フィルムの厚さは、50〜200μm程度である。 As shown in FIG. 2, in the secondary battery 1 according to the first embodiment, the power generator 30 is housed in the case 10. Further, the power generator 30 is housed in the case 10 in a state of being housed in the bag-shaped insulating film 31. In FIG. 2, the portion of the case 10 in which the generator 30 is housed is designated as the generator storage portion 13. The power generator 30 is a part of a wound body in which sheets of a positive electrode night, a separator, and a negative electrode night are stacked and wound. The outermost circumference of this wound body serves as a separator. Further, the insulating film 31 is thicker than the separator constituting the power generator 30. The insulating film 31 is, for example, a resin film such as polypropylene. The thickness of the insulating film is about 50 to 200 μm.

ここで、捲回体と発電体との関係について説明する。二次電池1では、正極泊、セパレータ、負極泊のシートを重ねて巻いて捲回体を構成する。そして、この正極箔のうち活物質が塗布された領域と、負極箔のうち活物質が塗布された領域と、セパレータとが重ね合わせられる部分が発電体30となる。また、捲回体は、正極箔のうち活物質が塗布されていない領域が発電体30から突出するように形成され、この突出部分に集電板が取り付けられ、集電板二次電池の電極端子となる極柱に接続される。また、捲回体は、負極箔のうち活物質が塗布されていない領域が発電体30から突出するように形成され、この突出部分に集電板が取り付けられ、集電板二次電池の電極端子となる極柱に接続される。 Here, the relationship between the wound body and the power generator will be described. In the secondary battery 1, sheets of a positive electrode overnight, a separator, and a negative electrode overnight are stacked and wound to form a wound body. The portion of the positive electrode foil to which the active material is applied, the region of the negative electrode foil to which the active material is applied, and the separator are overlapped with each other to form the power generator 30. Further, the wound body is formed so that the region of the positive electrode foil to which the active material is not applied protrudes from the power generator 30, and a current collector plate is attached to this protruding portion, and the electrode of the current collector plate secondary battery is attached. It is connected to the pole pillar that becomes the terminal. Further, the wound body is formed so that the region of the negative electrode foil to which the active material is not applied protrudes from the power generator 30, and a current collector plate is attached to this protruding portion, and the electrode of the current collector plate secondary battery is attached. It is connected to the pole pillar that becomes the terminal.

ケース10は、蓋20が被せられる開口部の幅をW1、底部の幅をW2とした場合W1>W2の関係を有する。そして、ケース10では、幅の異なる部分の壁面をスロープ部11によって繋ぎ合わせる。また、実施の形態1にかかる二次電池1では、絶縁フィルム31の開口端の位置をスロープ部11の発電体収納部13側の端部Aよりも蓋20側、かつ、蓋20に接しない位置に設定する。図2では、絶縁フィルム31がスロープ部11の発電体収納部13側の端部Aよりも突出する長さをH1とした。この長さH1は、例えば2〜7mm程度であり、出来るだけ垂直方向(蓋20と直交する方向)に立っていることができる長さであることが好ましい。これは絶縁フィルム31が立っていられない長さであると、スロープ部11側のケース10にくっついてしまい、或いは、発電体30にフィルムがくっついてしまい、後述するトラップ空間12が形成されないためである。 The case 10 has a relationship of W1> W2 when the width of the opening covered with the lid 20 is W1 and the width of the bottom is W2. Then, in the case 10, the wall surfaces of the portions having different widths are connected by the slope portion 11. Further, in the secondary battery 1 according to the first embodiment, the position of the open end of the insulating film 31 is closer to the lid 20 than the end A of the slope portion 11 on the generator storage portion 13 side and does not come into contact with the lid 20. Set to position. In FIG. 2, the length of the insulating film 31 protruding from the end A on the side of the generator housing portion 13 of the slope portion 11 is defined as H1. This length H1 is, for example, about 2 to 7 mm, and is preferably a length that allows the user to stand in the vertical direction (direction orthogonal to the lid 20) as much as possible. This is because if the length of the insulating film 31 is such that it cannot stand, it will stick to the case 10 on the slope portion 11 side, or the film will stick to the generator 30, and the trap space 12, which will be described later, will not be formed. is there.

ここで、スロープ部11の発電体収納部13側の端部Aの位置について詳細に説明する。実施の形態1にかかる二次電池1は、ケース10に絶縁フィルム31及び発電体30が納められた状態で、発電体収納部13がケース10の長辺方向に存在する面に対して所定の圧力をかけて、ケース10の壁面、絶縁フィルム31、及び発電体30が密着した状態とする。この押圧工程では、発電体30が蓋20側にせり上がる。図2ではこの押圧工程の後において、発電体収納部13の壁面、記絶縁フィルム31及び発電体30が密着した状態から離れた状態になる乖離点をBとした。スロープ部11の発電体収納部13側の端部Aは、この乖離点Bよりも蓋20側に位置するように設定される。 Here, the position of the end portion A on the side of the generator housing portion 13 of the slope portion 11 will be described in detail. In the secondary battery 1 according to the first embodiment, the insulating film 31 and the power generator 30 are housed in the case 10, and the power generator storage unit 13 is predetermined with respect to the surface of the case 10 in the long side direction. Pressure is applied to bring the wall surface of the case 10, the insulating film 31, and the power generator 30 into close contact with each other. In this pressing step, the power generator 30 rises toward the lid 20 side. In FIG. 2, after this pressing step, the divergence point at which the wall surface of the power generation body storage portion 13, the insulating film 31 and the power generation body 30 are separated from the close contact state is defined as B. The end portion A of the slope portion 11 on the generator storage portion 13 side is set so as to be located on the lid 20 side of the dissociation point B.

ここで、スロープ部11の端部Aと乖離点Bとの関係について更に詳細に説明する。発電体30の平坦部(例えば乖離点Bより下側の発電体収納部13)は、電池性能を出す等の関係上押圧する必要がある。しかし、乖離点Bが端部Aより上だった場合、発電体30の平坦部の横にトラップ空間が存在し、ひいては異物が存在することになり、異物ごと押圧されてしまう可能性が高くなる。このように異物が挟み込まれた状態で、平坦部に押圧力をかけると、発電体での短絡の可能性も高くなる。また、端部Aが乖離点Bよりも下である場合、平坦部に押圧力をかけにくいという工程上の困難もある。また、端部Aが乖離点Aよりも上である場合、トラップ空間12より下の領域は、ケース10と絶縁フィルム31とが密着しているため、押圧力が加わる部分に異物が混入しにくくなる。 Here, the relationship between the end portion A of the slope portion 11 and the deviation point B will be described in more detail. The flat portion of the generator 30 (for example, the generator storage portion 13 below the deviation point B) needs to be pressed in order to improve battery performance and the like. However, when the dissociation point B is above the end portion A, a trap space exists next to the flat portion of the generator 30, and thus a foreign matter exists, and there is a high possibility that the foreign matter is pressed together. .. If a pressing force is applied to the flat portion while the foreign matter is sandwiched in this way, the possibility of a short circuit in the generator increases. Further, when the end portion A is below the deviation point B, there is also a process difficulty that it is difficult to apply a pressing force to the flat portion. Further, when the end portion A is above the deviation point A, the case 10 and the insulating film 31 are in close contact with each other in the region below the trap space 12, so that foreign matter is unlikely to be mixed in the portion where the pressing force is applied. Become.

スロープ部11の発電体収納部13側の端部A、絶縁フィルム31の突出量H1、及び、ケースの開口部側の幅W1を、上記のように設定することで、ケース10にはトラップ空間12が形成される。 By setting the end portion A of the slope portion 11 on the generator housing portion 13 side, the protrusion amount H1 of the insulating film 31, and the width W1 on the opening side of the case as described above, the case 10 has a trap space. 12 is formed.

図2に示す例では、スロープ部11は、発電体収納部13の壁と連続するように形成される壁面であって、一端が発電体収納部13に接続され、他端が開口部と同じ幅に開くように形成される。そして、ケース10の開口部とスロープ部11の他端との間には、ケースを短辺側側面から断面視した場合に蓋20と略直交する壁面14が形成される。ケース10の開口部とスロープ部11の他端との間の壁面14を設けることでトラップ空間12を広くしてスパッタDSTのトラップ能力を向上させることができる。しかしながら、ケース10の開口部とスロープ部11の他端との間の壁面はなくすことも可能である。 In the example shown in FIG. 2, the slope portion 11 is a wall surface formed so as to be continuous with the wall of the generator housing portion 13, one end of which is connected to the generator storage portion 13 and the other end of which is the same as the opening. It is formed to open to the width. Then, between the opening of the case 10 and the other end of the slope portion 11, a wall surface 14 substantially orthogonal to the lid 20 is formed when the case is viewed in cross section from the side surface on the short side. By providing the wall surface 14 between the opening of the case 10 and the other end of the slope portion 11, the trap space 12 can be widened and the trapping ability of the spatter DST can be improved. However, it is also possible to eliminate the wall surface between the opening of the case 10 and the other end of the slope portion 11.

上記説明より、実施の形態1にかかる二次電池1では、ケース10に蓋20をレーザー溶接する前の状態では、ケース10と蓋20との間に隙間が出来ている状態となり、この隙間から異物がケース10内に侵入する可能性がある。しかしながら、実施の形態1にかかる二次電池1は、ケース10と蓋20との間に出来る隙間の直下にトラップ空間12が設けられ、仮にケース10と蓋20との間の隙間から異物がケース10内に入り込んでもこの異物をトラップ空間12にトラップして、ケース10の壁面の押圧力が加えられる部分に異物が入り込むことを防止することができる。また、実施の形態1にかかる二次電池1では、絶縁フィルム31がトラップ空間12を形成する壁面の1つを構成するため、スパタDST等の異物が絶縁フィルム31と発電体30との間に入り込むことを防止することができる。なお、仮に絶縁フィルム31とケース10とのうち押圧力がかかる発電体収納部13の領域に異物が入り込んだとしても、絶縁フィルム31は、セパレータよりも厚いため、絶縁フィルム31とセパレータとの間に異物が混入した場合よりも短絡は発生しにくいという効果も実施の形態1にかかる二次電池1は有する。 From the above description, in the secondary battery 1 according to the first embodiment, in the state before the lid 20 is laser-welded to the case 10, a gap is formed between the case 10 and the lid 20. Foreign matter may enter the case 10. However, in the secondary battery 1 according to the first embodiment, the trap space 12 is provided directly under the gap formed between the case 10 and the lid 20, and a foreign matter is tentatively introduced from the gap between the case 10 and the lid 20. Even if it enters the inside of 10, the foreign matter can be trapped in the trap space 12 to prevent the foreign matter from entering the portion of the wall surface of the case 10 to which the pressing force is applied. Further, in the secondary battery 1 according to the first embodiment, since the insulating film 31 constitutes one of the wall surfaces forming the trap space 12, foreign matter such as a spatter DST is between the insulating film 31 and the generator 30. It is possible to prevent it from entering. Even if foreign matter enters the region of the generator housing 13 where the pressing force is applied between the insulating film 31 and the case 10, since the insulating film 31 is thicker than the separator, it is between the insulating film 31 and the separator. The secondary battery 1 according to the first embodiment also has an effect that a short circuit is less likely to occur than when a foreign substance is mixed in the secondary battery 1.

ここで、比較例として、実施の形態1にかかる二次電池1のトラップ空間12を有していない二次電池におけるスパッタDSTの混入について説明する。図3に比較例にかかる二次電池の短辺側側面から見た断面図を示す。図3に示すように、トラップ空間12がない場合、ケース10に蓋20を溶接する工程でスパッタDSTが発生すると、ケース10と絶縁フィルム31との間に隙間がなくなるため、スパッタDSTは絶縁フィルム31と発電体30との間に入り込む。そして、その状態で、押圧工程でケース10の壁面に圧力をかけると発電体30がせり上がり、発電体30と絶縁フィルム31或いは発電体収納部13の壁面との間にスパッタDSTが入り込んだ状態でケース10に圧力がかけられることがある。 Here, as a comparative example, mixing of spatter DST in a secondary battery that does not have the trap space 12 of the secondary battery 1 according to the first embodiment will be described. FIG. 3 shows a cross-sectional view of the secondary battery according to the comparative example as viewed from the side surface on the short side. As shown in FIG. 3, when there is no trap space 12, if spatter DST occurs in the process of welding the lid 20 to the case 10, there is no gap between the case 10 and the insulating film 31, so that the spatter DST is an insulating film. It gets in between 31 and the generator 30. Then, in that state, when pressure is applied to the wall surface of the case 10 in the pressing process, the power generation body 30 rises, and the spatter DST enters between the power generation body 30 and the wall surface of the insulating film 31 or the power generation body storage portion 13. Pressure may be applied to the case 10.

しかしながら、実施の形態1にかかる二次電池1では、トラップ空間12にスパッタDSTをトラップすることで、押圧工程において、発電体30のセパレータにスパッタDSTが接することを防止することができる。また、実施の形態1にかかる二次電池1では、スパッタDSTがトラップ空間12よりも下に入り込んだ場合であっても、スパッタDSTは絶縁フィルム31と発電体収納部13の壁面の間に入り込む。絶縁フィルム31は、発電体30のセパレータよりも厚い部材であるため、スパッタDSTが発電体30のセパレータに触れることを防止することができる。 However, in the secondary battery 1 according to the first embodiment, by trapping the sputtered DST in the trap space 12, it is possible to prevent the sputtered DST from coming into contact with the separator of the generator 30 in the pressing step. Further, in the secondary battery 1 according to the first embodiment, even when the spatter DST enters below the trap space 12, the spatter DST enters between the insulating film 31 and the wall surface of the generator housing portion 13. .. Since the insulating film 31 is a member thicker than the separator of the power generation body 30, it is possible to prevent the sputter DST from touching the separator of the power generation body 30.

なお、本発明は上記実施の形態に限られたものではなく、趣旨を逸脱しない範囲で適宜変更することが可能である。 The present invention is not limited to the above embodiment, and can be appropriately modified without departing from the spirit.

1 二次電池
10 ケース
11 スロープ部
12 トラップ空間
13 発電体収納部
14 壁面
20 蓋
21P 正極極柱
21N 負極極柱
30 発電体
31 絶縁フィルム
1 Rechargeable battery 10 Case 11 Slope part 12 Trap space 13 Power generator storage part 14 Wall surface 20 Lid 21P Positive electrode pole 21N Negative pole pole 30 Power generator 31 Insulation film

Claims (4)

発電体が収納されるケースと、前記ケースの上部に溶接により接合される蓋とを有する二次電池であって、
前記ケースは、
前記発電体が納められる発電体収納部と、
前記ケースを短辺側側面から断面視した場合に、前記発電体収納部よりも幅が広く、前記蓋が接合される開口部と、
前記発電体収納部の壁と連続するように形成される壁面であって、一端が前記発電体収納部に接続され、他端が前記開口部と同じ幅に開くように形成されるスロープ部と、を有し、
前記発電体は、前記発電体と前記ケースとを絶縁する袋状の絶縁フィルムに納められた状態で前記発電体収納部に納められ、
前記スロープ部の一端は、前記発電体収納部の壁面、前記絶縁フィルム及び前記発電体が密着状態から離れた状態になる乖離点よりも前記開口部に近い位置に設けられ、
前記絶縁フィルムの開口端は、前記スロープ部の一端よりも前記開口部に近く、かつ、前記蓋に接しない位置に設けられる二次電池。
A secondary battery having a case in which a power generator is housed and a lid joined by welding to the upper part of the case.
The case is
The generator storage unit in which the generator is stored and
When the case is viewed in cross section from the side surface on the short side, the opening is wider than the generator housing portion and the lid is joined to the case.
A wall surface formed so as to be continuous with the wall of the power generation body storage part, one end of which is connected to the power generation body storage part, and the other end of which is formed so as to open to the same width as the opening. Have,
The power generator is housed in the power generator storage unit in a state of being housed in a bag-shaped insulating film that insulates the power generator and the case.
One end of the slope portion is provided at a position closer to the opening than the wall surface of the generator housing portion, the insulating film, and the dissociation point at which the generator is separated from the close contact state.
A secondary battery provided at a position where the opening end of the insulating film is closer to the opening than one end of the slope portion and is not in contact with the lid.
前記乖離点は、前記発電体収納部が前記ケースの長辺方向に存在する面が両側から押圧された後の状態で、前記発電体収納部の壁面、前記絶縁フィルム及び前記発電体が密着状態から離れた状態になる請求項1に記載の二次電池。 The divergence point is a state in which the surface of the power generation storage portion in the long side direction of the case is pressed from both sides, and the wall surface of the power generation storage portion, the insulating film, and the power generation body are in close contact with each other. The secondary battery according to claim 1, which is in a state of being separated from the battery. 前記開口部と前記スロープ部の他端との間には、前記ケースを短辺側側面から断面視した場合に前記蓋と略直交する壁面が形成される請求項1に記載の二次電池。 The secondary battery according to claim 1, wherein a wall surface substantially orthogonal to the lid is formed between the opening and the other end of the slope when the case is viewed in cross section from the side surface on the short side. 前記絶縁フィルムは、前記発電体を構成するセパレータよりも厚い請求項1に記載の二次電池。 The secondary battery according to claim 1, wherein the insulating film is thicker than the separator constituting the power generator.
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