JP2009277604A - Nonaqueous electrolyte secondary battery - Google Patents

Nonaqueous electrolyte secondary battery Download PDF

Info

Publication number
JP2009277604A
JP2009277604A JP2008130071A JP2008130071A JP2009277604A JP 2009277604 A JP2009277604 A JP 2009277604A JP 2008130071 A JP2008130071 A JP 2008130071A JP 2008130071 A JP2008130071 A JP 2008130071A JP 2009277604 A JP2009277604 A JP 2009277604A
Authority
JP
Japan
Prior art keywords
terminal member
electrolyte secondary
terminal
secondary battery
packing
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
JP2008130071A
Other languages
Japanese (ja)
Other versions
JP5326126B2 (en
Inventor
Tetsuzo Kojima
哲三 小島
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Eliiy Power Co Ltd
Original Assignee
Eliiy Power Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Eliiy Power Co Ltd filed Critical Eliiy Power Co Ltd
Priority to JP2008130071A priority Critical patent/JP5326126B2/en
Publication of JP2009277604A publication Critical patent/JP2009277604A/en
Application granted granted Critical
Publication of JP5326126B2 publication Critical patent/JP5326126B2/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Classifications

    • 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

Landscapes

  • Sealing Battery Cases Or Jackets (AREA)
  • Connection Of Batteries Or Terminals (AREA)

Abstract

<P>PROBLEM TO BE SOLVED: To enhance electric performance and mechanical performance of electrode terminal sites, through reduction of the number of components of members for current extraction. <P>SOLUTION: A penetrating terminal member 15 of a collector 7 is integrally formed with an upper-face plate 11 by a drawing process (plastic deformation), and a long-size jointing plate 12 and the penetrating terminal member 15 connected to an electrode group are structured of one member to reduce the number of components for enhancement of electric performance and mechanical performance. <P>COPYRIGHT: (C)2010,JPO&INPIT

Description

本発明は非水電解質二次電池に関し、特に、高性能、高信頼性を企図した電極端子の取り付け部位の構造を達成した非水電解質二次電池に関する。   The present invention relates to a non-aqueous electrolyte secondary battery, and more particularly, to a non-aqueous electrolyte secondary battery that achieves a structure of an electrode terminal mounting portion intended for high performance and high reliability.

非水電解質二次電池は、高電圧で高エネルギー密度を備えるという特徴を有していることから、電力貯蔵、電気自動車、ハイブリッド電気自動車、電車など、比較的大型、大出力のものの実用化が有望視されている。   Non-aqueous electrolyte secondary batteries are characterized by having a high voltage and high energy density. Therefore, non-aqueous electrolyte secondary batteries can be put into practical use for power storage, electric vehicles, hybrid electric vehicles, trains, etc. Promising.

非水電解質二次電池は、正極板と負極板とをセパレータを介して積層した電極体や、正極板と負極板とをセパレータを介して巻回した電極体、及び非水電解質が電池ケースに収納された構造とされている。非水電解質二次電池では、電極体からの電流の取り出しは、正極板及び負極板にそれぞれ接続される集電体を介して行なわれている。即ち、電極体の端部に集電体を固定し、集電体と導通される正極端子及び負極端子を電池ケースの外に突出させている(例えば、特許文献1参照)。   A nonaqueous electrolyte secondary battery includes an electrode body in which a positive electrode plate and a negative electrode plate are laminated via a separator, an electrode body obtained by winding a positive electrode plate and a negative electrode plate via a separator, and a nonaqueous electrolyte in a battery case. It has a housed structure. In the non-aqueous electrolyte secondary battery, the extraction of current from the electrode body is performed through current collectors connected to the positive electrode plate and the negative electrode plate, respectively. That is, the current collector is fixed to the end of the electrode body, and the positive electrode terminal and the negative electrode terminal that are electrically connected to the current collector are protruded out of the battery case (see, for example, Patent Document 1).

従来から提案されている非水電解質二次電池では、集電体にリベット端子を固定して電池ケースの外側に突出させ、電池ケースの外側に位置するリベット端子に端子部材(正極端子、負極端子)を固定する構造とされている。集電体、リベット端子、端子部材は、それぞれ別部品とされ、集電体にリベット端子の一端をかしめ固定すると共に、リベット端子の他端側を電池ケースに貫通させ、電池ケースの外部に突出したリベット端子の他端を端子部材にかしめ固定している。そして、電池ケースと集電体との間、及び、電池ケースとリベット端子(集電体)にはシールパッキンが介装され、電池ケースの端子部材が設けられた部位が封止されている。   In a conventionally proposed nonaqueous electrolyte secondary battery, a rivet terminal is fixed to a current collector and protruded to the outside of the battery case, and a terminal member (positive electrode terminal, negative electrode terminal) is connected to the rivet terminal located outside the battery case. ) Is fixed. The current collector, rivet terminal, and terminal member are separate parts, and one end of the rivet terminal is caulked and fixed to the current collector, and the other end side of the rivet terminal is passed through the battery case and protrudes outside the battery case. The other end of the rivet terminal is caulked and fixed to the terminal member. A seal packing is interposed between the battery case and the current collector, and between the battery case and the rivet terminal (current collector), and a portion where the terminal member of the battery case is provided is sealed.

従来の非水電解質二次電池では、電流の取り出しを行なうために、集電体、リベット端子、端子部材の部品を用い、集電体及び端子部材にリベット端子が嵌合する嵌合穴を形成し、嵌合穴にリベット端子を嵌合させて端部をそれぞれかしめ固定している。このため、部品点数が多くなり、部品管理に手間がかかっているのが現状であり、また、リベット端子を嵌合穴に嵌合してかしめ固定しているため、かしめ部分で接触不良等が生じる虞があった。   In a conventional non-aqueous electrolyte secondary battery, a current collector, a rivet terminal, and a terminal member are used to extract current, and a fitting hole is formed in the current collector and the terminal member to fit the rivet terminal. Then, the rivet terminals are fitted into the fitting holes and the ends are caulked and fixed. For this reason, the number of parts is increased, and it takes time to manage the parts.In addition, since the rivet terminal is fitted into the fitting hole and fixed by caulking, there is no contact failure in the caulking part. There was a risk of it occurring.

特に、リチウムイオン電池では、正極側の集電体や電極等の材料として表面酸化しやすいアルミニウムを使用しているため、部品管理を的確に行なうと共に強度が維持できるアルミニウム同士のかしめを実施することで接触不良等を抑制しているのが現状である。   In particular, lithium-ion batteries use aluminum that easily oxidizes the surface as a material for the current collector or electrode on the positive electrode side. Therefore, it is necessary to carry out caulking of aluminum that can accurately manage parts and maintain strength. The current situation is to suppress poor contact and the like.

特開平8−77999号公報JP-A-8-77999

本発明は上記状況に鑑みてなされたもので、電流の取り出しを行なうための部材の部品点数を低減し、電極端子の部位での電気的性能や機械的性能を向上させて信頼性を高めた非水電解質二次電池を提供することを目的とする。   The present invention has been made in view of the above situation, and has reduced the number of parts of a member for taking out current and improved the electrical performance and mechanical performance at the portion of the electrode terminal to improve reliability. An object is to provide a nonaqueous electrolyte secondary battery.

上記目的を達成するための請求項1に係る本発明の非水電解質二次電池は、電池外装部材の内側に設けられ電極に導通する集電部材と、前記電池外装部材の外側に設けられる端子部材と、前記電池外装部材を貫通して設けられ前記集電部材と前記端子部材とを導通する貫通端子部材とを備え、前記貫通端子部材は、前記集電部材もしくは前記端子部材に塑性変形により一体形成されていることを特徴とする。   In order to achieve the above object, a nonaqueous electrolyte secondary battery of the present invention according to claim 1 includes a current collecting member provided on the inner side of the battery outer member and conducting to the electrode, and a terminal provided on the outer side of the battery outer member. And a through terminal member provided through the battery exterior member and conducting the current collecting member and the terminal member. The through terminal member is formed by plastic deformation of the current collecting member or the terminal member. It is formed integrally.

請求項1に係る本発明では、貫通端子部材が塑性変形により設けられているので、部品点数が減ると共に、接触不良に対する影響をなくすことができる。この結果、電極端子の部位での電気的性能や機械的性能を向上させて信頼性を高めることが可能になる。   In the present invention according to claim 1, since the through terminal member is provided by plastic deformation, the number of parts can be reduced and the influence on contact failure can be eliminated. As a result, it is possible to improve reliability by improving electrical performance and mechanical performance at the electrode terminal.

そして、請求項2に係る本発明の非水電解質二次電池は、請求項1に記載の非水電解質二次電池において、前記貫通端子部材は、前記集電部材に塑性変形により一体形成されて前記電池外装部材側に突出していることを特徴とする。   A nonaqueous electrolyte secondary battery according to a second aspect of the present invention is the nonaqueous electrolyte secondary battery according to the first aspect, wherein the through terminal member is integrally formed with the current collecting member by plastic deformation. It protrudes to the battery exterior member side.

請求項2に係る本発明では、貫通端子部材が塑性変形により集電部材に設けられているので、部品点数が減ると共に、集電部材と貫通端子部材との間で機械的な固定がなくなり、接触不良に対する影響をなくすことができる。この結果、電極端子の部位での電気的性能や機械的性能を向上させて信頼性を高めることが可能になる。また、電池外装部材の内側で集電部材と貫通端子部材との固定作業が不要になるため、電池外装部材の内側での作業スペースを考慮することがなく、貫通端子部材の位置、即ち、端子部材の位置を任意に設定することができる。   In the present invention according to claim 2, since the through terminal member is provided on the current collecting member by plastic deformation, the number of parts is reduced, and mechanical fixation between the current collecting member and the through terminal member is eliminated. The influence on contact failure can be eliminated. As a result, it is possible to improve reliability by improving electrical performance and mechanical performance at the electrode terminal. Further, since the work of fixing the current collecting member and the penetrating terminal member is not required inside the battery exterior member, the position of the penetrating terminal member, that is, the terminal, is not considered without considering the work space inside the battery exterior member. The position of the member can be arbitrarily set.

また、請求項3に係る本発明の非水電解質二次電池は、請求項2に記載の非水電解質二次電池において、前記端子部材には、前記貫通端子部材が貫通し、前記貫通端子部材の端部がかしめられることで固定される貫通孔が備えられ、前記貫通孔の内周には、逃げ部が形成されていることを特徴とする。   The nonaqueous electrolyte secondary battery of the present invention according to claim 3 is the nonaqueous electrolyte secondary battery according to claim 2, wherein the through terminal member penetrates the terminal member, and the through terminal member A through hole that is fixed by caulking its end is provided, and an escape portion is formed on the inner periphery of the through hole.

請求項3に係る本発明では、端子部材の貫通孔に貫通端子部材の端部をかしめ固定した際に、貫通孔の逃げ部に貫通端子部材の材料が食い込み、周方向に対する接合強度が向上して周方向のガタ付きがなくなり、接触状態を良好に保つことができる。   In this invention which concerns on Claim 3, when the edge part of a penetration terminal member is crimped and fixed to the penetration hole of a terminal member, the material of a penetration terminal member bites into the escape part of a penetration hole, and the joining strength with respect to the circumferential direction improves. Thus, there is no backlash in the circumferential direction, and the contact state can be kept good.

また、請求項4に係る本発明の非水電解質二次電池は、請求項2もしくは請求項3に記載の非水電解質二次電池において、前記貫通端子部材と前記電池外装部材の内側との間にはパッキンが介装され、前記パッキンは、前記貫通端子部材の基端部に嵌合してシール性を保つシールパッキンと、前記シールパッキンに密着して前記貫通端子部材と前記電池外装部材との間に働く力を受ける剛性を有する保持パッキンとからなることを特徴とする。   A nonaqueous electrolyte secondary battery according to a fourth aspect of the present invention is the nonaqueous electrolyte secondary battery according to the second or third aspect, wherein it is between the through terminal member and the inside of the battery exterior member. A packing is interposed between the sealing terminal and the packing, and the packing is fitted to the base end portion of the through-terminal member to maintain sealing performance, and the through-terminal member and the battery exterior member are in close contact with the seal packing. It is characterized by comprising a holding packing having rigidity for receiving a force acting between the two.

請求項4に係る本発明では、貫通端子部の基端側はシールパッキンによりシール性が確保され、集電部材と電池外装部材との間に相対的に働く変位方向の力は保持パッキンにより受け持たれ、シール性と剛性を両立させることができる。   In the present invention according to claim 4, the base end side of the penetrating terminal portion is sealed by the seal packing, and the displacement force acting between the current collecting member and the battery exterior member is received by the holding packing. It is possible to achieve both sealing performance and rigidity.

剛性を有する保持パッキンとしては、例えば、剛性の高いポリフェニレンスルフィド(PPS)樹脂を用いて好適である。また、シール性を保つシールパッキンとしては、例えば、テトラフルオロエチレン・パープルオロアルキルビニルエーテル共重合体(PFA)樹脂や、ポリプロピレン(PP)樹脂を用いて好適である。   As the holding packing having rigidity, for example, polyphenylene sulfide (PPS) resin having high rigidity is preferably used. Further, as the seal packing for maintaining the sealing performance, for example, tetrafluoroethylene / purple oloalkyl vinyl ether copolymer (PFA) resin or polypropylene (PP) resin is preferably used.

また、請求項5に係る本発明の非水電解質二次電池は、請求項4に記載の非水電解質二次電池において、前記端子部材と前記電池外装部材の外側との間には、前記保持パッキンと同一材質の上部パッキンが介装されていることを特徴とする。   The nonaqueous electrolyte secondary battery of the present invention according to claim 5 is the nonaqueous electrolyte secondary battery according to claim 4, wherein the holding member is disposed between the terminal member and the outside of the battery exterior member. An upper packing made of the same material as the packing is interposed.

請求項5に係る本発明では、端子部材と電池外装部材の間に相対的に働く変位方向の力が剛性を有する上部パッキンにより受け持たれる。   In this invention which concerns on Claim 5, the force of the displacement direction which acts relatively between a terminal member and a battery exterior member is received by the upper packing which has rigidity.

本発明の非水電解質二次電池は、電流の取り出しを行なうための部材の部品点数を低減し、電極端子の部位での電気的性能や機械的性能を向上させて信頼性を高めることが可能になる。   The non-aqueous electrolyte secondary battery of the present invention can reduce the number of parts of a member for taking out current, improve electrical performance and mechanical performance at the electrode terminal, and increase reliability. become.

図1には本発明の一実施形態例に係る非水電解質二次電池の全体構造を表す分解斜視、図2には電池ケース内部の構造を表す一部破断側面、図3には図2中のIII−III線矢視、図4には正極側の正面視、図5には負極側の正面視、図6には正極側の端子部品の分解状況、図7には正極端子部材の詳細状況、図8には負極端子部材の詳細状況、図9には電極群(スタックエレメント)の外観、図10には図9中のX−X線矢視、図11には電極群の製作状況、図12にはセルの接続状況を表す平面、図13には接続バーの接合状況を示してある。   FIG. 1 is an exploded perspective view showing the overall structure of a nonaqueous electrolyte secondary battery according to an embodiment of the present invention, FIG. 2 is a partially broken side view showing the structure inside the battery case, and FIG. Fig. 4 is a front view of the positive electrode side, Fig. 5 is a front view of the negative electrode side, Fig. 6 is an exploded view of terminal components on the positive electrode side, and Fig. 7 is a detail of the positive electrode terminal member. 8 shows the details of the negative electrode terminal member, FIG. 9 shows the appearance of the electrode group (stack element), FIG. 10 shows the XX line in FIG. 9, and FIG. FIG. 12 shows a plane showing the connection status of the cells, and FIG. 13 shows the connection status of the connection bars.

図1〜図6に基づいて非水電解質二次電池の全体構造を説明する。   The overall structure of the nonaqueous electrolyte secondary battery will be described with reference to FIGS.

図1に示すように、非水電解質二次電池(リチウムイオン二次電池)1は、電池ケース2の内部に電極群3が収容されて構成されている。電極群3の上面部には電池ケース2の蓋部材4(電池外装部材)が接続され、蓋部材4の上面には正極端子部材5及び負極端子部材6が露出して配されている。電極群3の正極部3aは正極側の集電部材としての集電体7に固定され、電極群3の負極部3bは負極側の集電部材としての集電体8に固定される。集電体7は蓋部材4を挟んで正極端子部材5に導通され、集電体8は蓋部材4を挟んで負極端子部材6に導通されている。   As shown in FIG. 1, a non-aqueous electrolyte secondary battery (lithium ion secondary battery) 1 is configured such that an electrode group 3 is accommodated inside a battery case 2. A lid member 4 (battery exterior member) of the battery case 2 is connected to the upper surface portion of the electrode group 3, and the positive electrode terminal member 5 and the negative electrode terminal member 6 are arranged on the upper surface of the lid member 4 so as to be exposed. The positive electrode portion 3a of the electrode group 3 is fixed to a current collector 7 as a positive current collector, and the negative electrode portion 3b of the electrode group 3 is fixed to a current collector 8 as a negative current collector. The current collector 7 is electrically connected to the positive electrode terminal member 5 with the lid member 4 interposed therebetween, and the current collector 8 is electrically connected to the negative electrode terminal member 6 with the lid member 4 interposed therebetween.

詳細は後述するが、電極群3の正極部3aはアルミ箔の集合体(束)で、集電体7はアルミニウム製とされている。また、電極群3の負極部3bは銅箔の集合体(束)で、集電体8は銅製とされている。   Although details will be described later, the positive electrode portion 3a of the electrode group 3 is an aluminum foil aggregate (bundle), and the current collector 7 is made of aluminum. The negative electrode portion 3b of the electrode group 3 is a copper foil aggregate (bundle), and the current collector 8 is made of copper.

蓋部材4と集電体7、集電体8との接続の状況(電極端子の部位の構造)を説明する。   The state of connection between the lid member 4 and the current collector 7 and current collector 8 (structure of the electrode terminal portion) will be described.

図2〜図5に示すように、蓋部材4は矩形板状とされ、蓋部材4の内側(図2中下側)の長手方向の端部には集電体7及び集電体8が接続されている。蓋部材4の外側(図2中上側)の長手方向の端部側には集電体7及び集電体8に導通して接続される正極端子部材5及び負極端子部材6が設けられている。   As shown in FIGS. 2 to 5, the lid member 4 has a rectangular plate shape, and a current collector 7 and a current collector 8 are disposed at the end in the longitudinal direction on the inner side (lower side in FIG. 2) of the lid member 4. It is connected. A positive electrode terminal member 5 and a negative electrode terminal member 6 that are conductively connected to the current collector 7 and the current collector 8 are provided on the end side in the longitudinal direction on the outer side (upper side in FIG. 2) of the lid member 4. .

集電体7及び集電体8は材質が異なり構造は同一であるので、以下の説明は正極側の集電体7を例に挙げて説明し、負極側の集電体8の詳細説明は省略してある。   Since the current collector 7 and the current collector 8 are different in material and have the same structure, the following description will be given by taking the current collector 7 on the positive electrode side as an example, and a detailed description of the current collector 8 on the negative electrode side will be given below. It is omitted.

集電体7は蓋部材4の内側の面に当接する上面板11と上面板11の端部から下側に向けて延びる長尺接合板12とで構成されている。集電体7は上面板11及び長尺接合板12により側面視で逆L字型に形成され、長尺接合板12の両縁部には長手方向(上下方向)に延びて外側に屈曲した接続板片13が形成され、長尺接合板12は断面コ字型とされている。長尺接合板12の接続板片13には電極群3の2列の正極部3aがそれぞれ接合される。   The current collector 7 includes an upper surface plate 11 that is in contact with the inner surface of the lid member 4 and a long joining plate 12 that extends downward from the end of the upper surface plate 11. The current collector 7 is formed in an inverted L shape in a side view by an upper surface plate 11 and a long joining plate 12, and is extended outward in the longitudinal direction (vertical direction) at both edges of the long joining plate 12. A connecting plate piece 13 is formed, and the long joining plate 12 has a U-shaped cross section. Two rows of positive electrode portions 3a of the electrode group 3 are joined to the connection plate piece 13 of the long joining plate 12, respectively.

図6に詳細に示すように、集電体7の上面板11には貫通端子部材15が設けられ、貫通端子部材15は絞り加工(塑性変形)により上面板11と一体に形成されている。貫通端子部材15の上部が蓋部材4を貫通して配され、正極端子部材5には貫通端子部材15が貫通(嵌合)する貫通孔16が形成されている。貫通端子部材15の上端部は貫通孔16にかしめ固定されている。   As shown in detail in FIG. 6, a through terminal member 15 is provided on the upper surface plate 11 of the current collector 7, and the through terminal member 15 is formed integrally with the upper surface plate 11 by drawing (plastic deformation). The upper part of the penetrating terminal member 15 is arranged to penetrate the lid member 4, and the positive terminal member 5 is formed with a through hole 16 through which the penetrating terminal member 15 penetrates (fits). The upper end portion of the through terminal member 15 is caulked and fixed to the through hole 16.

正極端子部材5は銅製であり、正極側の電池内部側は銅製の部材を配することができないため、集電体7の上面板11に貫通端子部材15を一体に形成しているが、正極端子部材をアルミ製とした場合、正極端子部材に貫通端子部材を塑性変形により一体に形成することも可能である。また、負極側の集電体8は銅製であり、銅製の集電体8の上面板11に貫通端子が一体に形成されている。負極側の電池内部側には銅製の部材を配することができるため、銅製の負極端子部材6に貫通端子部材を塑性変形により一体に形成することも可能である。   Since the positive electrode terminal member 5 is made of copper and no copper member can be disposed on the battery inner side on the positive electrode side, the through terminal member 15 is integrally formed on the upper surface plate 11 of the current collector 7. When the terminal member is made of aluminum, the through terminal member can be integrally formed with the positive electrode terminal member by plastic deformation. Further, the current collector 8 on the negative electrode side is made of copper, and a through terminal is integrally formed on the upper surface plate 11 of the current collector 8 made of copper. Since a copper member can be disposed inside the battery on the negative electrode side, the through terminal member can be integrally formed with the copper negative electrode terminal member 6 by plastic deformation.

一方、集電体7の上面板11と蓋部材4の間にはパッキンとしての下部パッキン17が介装されている。下部パッキン17は貫通端子部材15の基端部に嵌合してシール性を保持するシールパッキン47と、シールパッキン47に密着して貫通端子部材15と蓋部材4との間に働く力を受ける剛性を有した保持パッキン48とで構成されている。   On the other hand, a lower packing 17 as a packing is interposed between the upper surface plate 11 of the current collector 7 and the lid member 4. The lower packing 17 is fitted to the base end portion of the penetrating terminal member 15 so as to maintain a sealing property, and receives a force acting between the penetrating terminal member 15 and the lid member 4 in close contact with the seal packing 47. The holding packing 48 has rigidity.

シールパッキン47は、貫通端子部材15に嵌合する筒部47a及び集電体7の上面板11の上面に密着するフランジ部47bを備えている。保持パッキン48はシールパッキン47のフランジ部47bが嵌合する嵌合穴48aを有し、シールパッキン47のフランジ部47bが保持パッキン48の嵌合穴48aに嵌合することにより、シールパッキン47と保持パッキン48が一体となった下部パッキン17とされる。   The seal packing 47 includes a cylindrical portion 47 a that is fitted to the through terminal member 15 and a flange portion 47 b that is in close contact with the upper surface of the upper surface plate 11 of the current collector 7. The holding packing 48 has a fitting hole 48 a into which the flange portion 47 b of the seal packing 47 is fitted. The flange portion 47 b of the sealing packing 47 is fitted into the fitting hole 48 a of the holding packing 48, thereby The lower packing 17 is formed by integrating the holding packing 48.

尚、保持パッキン48の嵌合穴48aをシールパッキン47のフランジ部47bよりも小さく形成し、シールパッキン47のフランジ部47bを保持パッキン48の嵌合穴48aに重ねる状態にして一体となった下部パッキン17を構成することも可能である。また、シールパッキン47は筒部47aだけの構成とし、筒部47aの外周が嵌合する嵌合穴48aを保持パッキン48に形成することも可能である。   The fitting hole 48a of the holding packing 48 is formed smaller than the flange portion 47b of the seal packing 47, and the flange portion 47b of the sealing packing 47 is overlapped with the fitting hole 48a of the holding packing 48 so as to be integrated. It is also possible to constitute the packing 17. Further, the seal packing 47 may be configured only by the cylindrical portion 47 a, and a fitting hole 48 a into which the outer periphery of the cylindrical portion 47 a is fitted can be formed in the holding packing 48.

正極端子部材5と蓋部材4の間には上部パッキン18が介装され、上部パッキン18には貫通端子部材15が貫通する孔18aが形成されている。上部パッキン18の材質は、下部パッキン17の保持パッキン48と同一材質とされている。   An upper packing 18 is interposed between the positive electrode terminal member 5 and the lid member 4, and a hole 18 a through which the penetrating terminal member 15 passes is formed in the upper packing 18. The material of the upper packing 18 is the same material as the holding packing 48 of the lower packing 17.

下部パッキン17の保持パッキン48及び上部パッキン18は、蓋部材4と密着し電解質に対して耐性を有するもので、剛性の高いポリフェニレンスルフィド(PPS)樹脂が用いられる。また、下部パッキン17のシールパッキン47は、蓋部材4と密着し電解質に対して耐性を有するもので、柔軟性を有するテトラフルオロエチレン・パープルオロアルキルビニルエーテル共重合体(PFA)樹脂が用いられる。   The holding packing 48 and the upper packing 18 of the lower packing 17 are in close contact with the lid member 4 and have resistance to the electrolyte, and a highly rigid polyphenylene sulfide (PPS) resin is used. Further, the seal packing 47 of the lower packing 17 is in close contact with the lid member 4 and has resistance to the electrolyte, and a flexible tetrafluoroethylene / purple oloalkyl vinyl ether copolymer (PFA) resin is used.

尚、下部パッキン17の保持パッキン48及び上部パッキン18としてポリプロピレン(PP)樹脂を用いることも可能である。   Note that polypropylene (PP) resin may be used as the holding packing 48 and the upper packing 18 of the lower packing 17.

貫通端子部材15の上端部は正極端子部材5の貫通孔16にかしめ固定されているため、かしめ固定の際に蓋部材4と集電体7(貫通端子部材15)の間に相対的な変位力が働く。かしめ固定の際に蓋部材4と集電体7(貫通端子部材15)の間に相対的な変位力が働いても、柔軟性を有するシールパッキン47によりシール性が確保される。つまり、圧縮性に優れたシールパッキン47が介在しているので、かしめ固定の際に働く変位力により、貫通端子部材15と蓋部材4との間に隙間等が生じることがない。また、かしめ固定の際に蓋部材4に働く力は、剛性のある保持パッキン48及び上部パッキン18で受けることができる。さらに、貫通端子部材15の頭部をかしめて径を大きくして上下方向に圧迫しているのでシール性が向上する。   Since the upper end portion of the penetrating terminal member 15 is caulked and fixed to the through hole 16 of the positive electrode terminal member 5, relative displacement between the lid member 4 and the current collector 7 (penetrating terminal member 15) during caulking is fixed. Power works. Even when a relative displacement force acts between the lid member 4 and the current collector 7 (through terminal member 15) during the caulking and fixing, the sealing performance is ensured by the flexible seal packing 47. That is, since the seal packing 47 excellent in compressibility is interposed, a gap or the like does not occur between the penetrating terminal member 15 and the lid member 4 due to the displacement force that is applied during caulking. Further, the force acting on the lid member 4 during the caulking and fixing can be received by the rigid holding packing 48 and the upper packing 18. Furthermore, the head of the penetrating terminal member 15 is crimped to increase the diameter and press in the vertical direction, so that the sealing performance is improved.

このため、電極端子の部位で、機械的強度とシール性を両立させることができ、電池の信頼性が低下することがない。特に、電池が大型化された場合の信頼性を維持することが可能になる。   For this reason, the mechanical strength and the sealing performance can be made compatible at the electrode terminal portion, and the reliability of the battery is not lowered. In particular, it is possible to maintain reliability when the battery is enlarged.

図6及び図7、図8に基づいて正極端子部材5及び負極端子部材6を説明する。尚、図6には正極端子部材5側が示されているが、負極端子部材6側の構成も同一であるため、負極端子部材6の説明の際にも図6に示した部材を用いて説明してある。   The positive electrode terminal member 5 and the negative electrode terminal member 6 will be described with reference to FIGS. 6, 7, and 8. Although FIG. 6 shows the positive electrode terminal member 5 side, the structure of the negative electrode terminal member 6 side is also the same, and therefore the negative electrode terminal member 6 will be described using the members shown in FIG. It is.

正極端子部材5を説明する。   The positive electrode terminal member 5 will be described.

図7(a)には正極端子部材5の平面視、図7(b)には正極端子部材5の側面視、図7(c)には貫通孔の詳細を示してある。   7A shows a plan view of the positive electrode terminal member 5, FIG. 7B shows a side view of the positive electrode terminal member 5, and FIG. 7C shows details of the through hole.

図7(a)、図7(b)に示すように、正極端子部材5は、蓋部材4の上面の上部パッキン18に密着する密着板部21を有し、密着板部21には貫通端子部材15が貫通する貫通孔16が形成されている。密着板部21に連続して接続板部22が形成され、接続板部22は上部パッキン18との間に隙間を介した状態で配されている。接続板部22には一対の端子爪23a、23bが形成され、一対の端子爪23a、23bは蓋部材4の長手方向に対して直交する方向(図7(a)中上下方向)に並設されている。   As shown in FIGS. 7A and 7B, the positive electrode terminal member 5 has a contact plate portion 21 that is in close contact with the upper packing 18 on the upper surface of the lid member 4. A through hole 16 through which the member 15 passes is formed. A connection plate portion 22 is formed continuously with the contact plate portion 21, and the connection plate portion 22 is disposed between the upper packing 18 and a gap. A pair of terminal claws 23a and 23b is formed on the connecting plate portion 22, and the pair of terminal claws 23a and 23b are arranged in parallel in a direction orthogonal to the longitudinal direction of the lid member 4 (vertical direction in FIG. 7A). Has been.

負極端子部材6を説明する。   The negative electrode terminal member 6 will be described.

図8(a)には負極端子部材6の平面視、図8(b)には負極端子部材6の側面視、図8(c)には貫通孔の詳細を示してある。   8A shows a plan view of the negative electrode terminal member 6, FIG. 8B shows a side view of the negative electrode terminal member 6, and FIG. 8C shows details of the through hole.

図8(a)、図8(b)に示すように、負極端子部材6は、蓋部材4の上面の上部パッキン18に密着する密着板部27を有し、密着板部27には貫通端子部材15が貫通する貫通孔26が形成されている。密着板部27に連続して接続板部28が形成され、接続板部28は上部パッキン18との間に隙間を介した状態で配されている。接続板部28には一対の端子爪29a、29bが形成され、一対の端子爪29a、29bは蓋部材4の長手方向に沿った方向(図8中左右方向)に並設されている。   As shown in FIGS. 8A and 8B, the negative electrode terminal member 6 has a contact plate portion 27 that is in close contact with the upper packing 18 on the upper surface of the lid member 4. A through hole 26 through which the member 15 passes is formed. A connection plate portion 28 is formed continuously with the close contact plate portion 27, and the connection plate portion 28 is disposed between the upper packing 18 and a gap. A pair of terminal claws 29 a and 29 b are formed on the connection plate portion 28, and the pair of terminal claws 29 a and 29 b are juxtaposed in a direction along the longitudinal direction of the lid member 4 (left and right direction in FIG. 8).

つまり、接続板部22の一対の端子爪23a、23bの並設方向(長手方向)と、接続板部28の一対の端子爪29a、29bの並設方向(長手方向)とは、蓋部材4の平面内(端子部材の平面内)で直交して配された状態になっている。   In other words, the parallel arrangement direction (longitudinal direction) of the pair of terminal claws 23 a and 23 b of the connection plate portion 22 and the parallel arrangement direction (longitudinal direction) of the pair of terminal claws 29 a and 29 b of the connection plate portion 28 are the lid member 4. In the plane (in the plane of the terminal member).

図7(c)に示すように、正極端子部材5の密着板部21の貫通孔16の内周には、周方向の4箇所に逃げ部24が形成されている。図8(c)に示すように、負極端子部材6の密着板部27の貫通孔26の内周には、周方向の4箇所に逃げ部30が形成されている。このため、正極端子部材5の貫通孔16及び負極端子部材6の貫通孔26に貫通端子部材15の上端部をかしめ固定した場合、貫通端子部材15の材料が逃げ部24及び逃げ部30に食い込み、貫通端子部材15の周方向の接合強度が向上して周方向のガタ付きがなくなる。   As shown in FIG. 7C, relief portions 24 are formed at four locations in the circumferential direction on the inner periphery of the through hole 16 of the contact plate portion 21 of the positive electrode terminal member 5. As shown in FIG. 8C, relief portions 30 are formed at four locations in the circumferential direction on the inner periphery of the through hole 26 of the contact plate portion 27 of the negative electrode terminal member 6. Therefore, when the upper end portion of the through terminal member 15 is caulked and fixed to the through hole 16 of the positive electrode terminal member 5 and the through hole 26 of the negative electrode terminal member 6, the material of the through terminal member 15 bites into the escape portion 24 and the escape portion 30. Further, the joining strength in the circumferential direction of the through-terminal member 15 is improved and the play in the circumferential direction is eliminated.

従って、貫通端子部材15を介しての集電体7及び集電体8と正極端子部材5及び負極端子部材6との接触状態を良好に保つことができ、電気的性能や機械的性能を向上させることができる。   Therefore, the contact state between the current collector 7 and the current collector 8 and the positive electrode terminal member 5 and the negative electrode terminal member 6 through the penetrating terminal member 15 can be kept good, and the electrical performance and mechanical performance are improved. Can be made.

図9、図10に基づいて電極群3を説明する。   The electrode group 3 will be described based on FIGS. 9 and 10.

図に示すように、電極群3は、正極側のアルミ箔55と負極側の銅箔56が交互に多数積層され、アルミ箔55及び銅箔56には活物質が保持されてセパレータで仕切られている。アルミ箔55の端部(活物質未保持部)同士と銅箔56の端部(活物質未保持部)同士が互いに逆側の端部で重ねられ、アルミ箔55の端部が束ねられて正極部3aとされ、銅箔56の端部が束ねられて負極部3bとされている。電極群3の正極部3a及び負極部3bはそれぞれ2列設けられた状態になっている。つまり、一つの電極群3(1セル)あたりで、スタックが2つに分割された状態になっている。   As shown in the figure, in the electrode group 3, a large number of aluminum foils 55 on the positive electrode side and copper foils 56 on the negative electrode side are alternately stacked, and the aluminum foil 55 and the copper foil 56 hold an active material and are partitioned by a separator. ing. The end portions of the aluminum foil 55 (active material non-holding portions) and the end portions of the copper foil 56 (active material non-holding portions) are overlapped with each other on the opposite ends, and the end portions of the aluminum foil 55 are bundled together. A positive electrode portion 3a is formed, and ends of the copper foil 56 are bundled to form a negative electrode portion 3b. The positive electrode part 3a and the negative electrode part 3b of the electrode group 3 are in a state of being provided in two rows. That is, the stack is divided into two per one electrode group 3 (one cell).

図11に基づいて電極群の製作状況を説明する。図11には一つのスタックを示してある。   The production status of the electrode group will be described based on FIG. FIG. 11 shows one stack.

図11(a)に示すように、活物質が保持されていない部位のアルミ箔55の端部が一方側で積層され、活物質が保持されていない部位の銅箔56の端部が他方側で積層されている。図11(b)に示すように、一方側のアルミ箔55の端部及び他方側の銅箔56の積層部位を結束し(箔よせ)、折り曲げ、裁断して長さを揃える。図11(c)に示すように、端部の長さを揃えて仮止めし、図示しない止め具等で固定して接合し、所定の状態の正極部3a及び負極部3bとする。   As shown in FIG. 11 (a), the end of the aluminum foil 55 where the active material is not held is laminated on one side, and the end of the copper foil 56 where the active material is not held is on the other side. Are stacked. As shown in FIG. 11 (b), the end portions of the aluminum foil 55 on one side and the laminated portion of the copper foil 56 on the other side are bound (foiled), bent, and cut to have the same length. As shown in FIG. 11 (c), the lengths of the end portions are aligned and temporarily fixed, and fixed and joined with a not-shown fastener or the like to form a positive electrode portion 3a and a negative electrode portion 3b in a predetermined state.

電極群3は箔の積層方向に厚さがあり、端部を箔よせした際に、厚さ方向の中央に位置する箔に比べて両側に位置する箔が短くなる。このため、アルミ箔55の端部及び銅箔56の端部の長さ(活物質未保持部)を十分に確保し、折り曲げ、裁断が不能にならないように、箔よせが実施される。   The electrode group 3 has a thickness in the foil stacking direction, and when the end portion is made of foil, the foils located on both sides are shorter than the foil located in the center in the thickness direction. For this reason, the length of the end portion of the aluminum foil 55 and the end portion of the copper foil 56 (active material non-holding portion) is sufficiently secured, and the foil is laid so that bending and cutting are not impossible.

本実施形態例では、スタックが2つに分割された状態になっているので、箔よせして接合する電極の集電箇所が増加し、また、集電体7(8)に保持される箇所が増加するので、集電部の抵抗を減らして機械的強度を高めることができる。   In the present embodiment example, the stack is divided into two, so that the number of current collecting points of the electrodes to be joined together with the foil is increased, and the portion held by the current collector 7 (8) Therefore, the resistance of the current collector can be reduced and the mechanical strength can be increased.

図12、図13に基づいて、図1に示した非水電解質二次電池1を複数並べて接続した状態、即ち、複数のセルを複数並べて接続した状態を説明する。   Based on FIGS. 12 and 13, a state in which a plurality of nonaqueous electrolyte secondary batteries 1 shown in FIG. 1 are arranged and connected, that is, a state in which a plurality of cells are arranged and connected will be described.

図12に示すように、隣接する非水電解質二次電池1は、正極端子部材5と負極端子部材6が隣接する状態に交互に配される。隣接する正極端子部材5と負極端子部材6は接続バー31により接続され、複数の非水電解質二次電池1が直列につながれた電池ユニットが構成される。このため、接続バー31は非水電解質二次電池1の蓋部材4の長手方向に直交する方向に長手を有する部材とされている。   As shown in FIG. 12, adjacent nonaqueous electrolyte secondary batteries 1 are alternately arranged in a state where the positive electrode terminal members 5 and the negative electrode terminal members 6 are adjacent to each other. The adjacent positive electrode terminal member 5 and negative electrode terminal member 6 are connected by a connection bar 31 to form a battery unit in which a plurality of nonaqueous electrolyte secondary batteries 1 are connected in series. For this reason, the connection bar 31 is a member having a length in a direction orthogonal to the length direction of the lid member 4 of the nonaqueous electrolyte secondary battery 1.

接続バー31を説明する。   The connection bar 31 will be described.

接続バー31の一端には正極端子部材5に接続される正極接続部32が設けられ、接続バー31の他端には負極端子部材6に接続される負極接続部33が設けられている。   One end of the connection bar 31 is provided with a positive electrode connection portion 32 connected to the positive electrode terminal member 5, and the other end of the connection bar 31 is provided with a negative electrode connection portion 33 connected to the negative electrode terminal member 6.

正極接続部32には、接続バー31の長手方向に沿った長孔34、即ち、蓋部材4の長手方向に直交する方向に延びる長孔34が形成されている。長孔34の長辺縁部には一対の接続爪35a、35bが長手方向に沿って設けられ、長孔34の端部と一対の接続爪35a、35bの間には隙間sが形成されている。接続爪35a、35bは長手方向(並設方向)が正極端子部材5の端子爪23a、23bに対応して形成されている。   In the positive electrode connection portion 32, a long hole 34 extending in the longitudinal direction of the connection bar 31, that is, a long hole 34 extending in a direction orthogonal to the longitudinal direction of the lid member 4 is formed. A pair of connecting claws 35a and 35b are provided along the longitudinal direction at the long side edge of the long hole 34, and a gap s is formed between the end of the long hole 34 and the pair of connecting claws 35a and 35b. Yes. The connecting claws 35 a and 35 b are formed so that the longitudinal direction (parallel direction) corresponds to the terminal claws 23 a and 23 b of the positive electrode terminal member 5.

負極接続部33には、接続バー31の長手方向に直交する方向に沿った長孔36、即ち、蓋部材4の長手方向に延びる長孔36が形成されている。長孔36の縁部には一対の接続爪37a、37bが長手方向に沿って設けられ、長孔36の端部と一対の接続爪37a、37bの間には隙間sが形成されている。接続爪37a、37bは長手方向(並設方向)が負極端子部材6の端子爪29a、29bに対応して形成されている。   The negative electrode connecting portion 33 is formed with a long hole 36 extending in the direction perpendicular to the longitudinal direction of the connection bar 31, that is, a long hole 36 extending in the longitudinal direction of the lid member 4. A pair of connecting claws 37a and 37b are provided along the longitudinal direction at the edge of the long hole 36, and a gap s is formed between the end of the long hole 36 and the pair of connecting claws 37a and 37b. The connecting claws 37 a and 37 b are formed so that the longitudinal direction (parallel arrangement direction) corresponds to the terminal claws 29 a and 29 b of the negative electrode terminal member 6.

図13(a)に示すように、接続バー31の正極接続部32の長孔34が正極端子部材5の端子爪23a、23bに嵌め込まれると共に、負極接続部33の長孔36が負極端子部材6の端子爪29a、29bに嵌め込まれる。正極端子部材5の端子爪23a、23bと負極端子部材6の端子爪29a、29bの長手方向(並設方向)は互いに直行する方向に交差し、接続バー31の長孔34と長孔36の長手方向は端子爪23a、23bと端子爪29a、29bの長手方向に沿っているので、接続バー31は、正極端子部材5と負極端子部材6との間の接続だけが許容される。   As shown in FIG. 13A, the long hole 34 of the positive electrode connecting portion 32 of the connection bar 31 is fitted into the terminal claws 23a and 23b of the positive electrode terminal member 5, and the long hole 36 of the negative electrode connecting portion 33 is negative electrode terminal member. 6 terminal claws 29a and 29b. The longitudinal direction (parallel direction) of the terminal claws 23a, 23b of the positive electrode terminal member 5 and the terminal claws 29a, 29b of the negative electrode terminal member 6 intersect each other in a direction perpendicular to each other, and the long holes 34 and 36 of the connection bar 31 Since the longitudinal direction is along the longitudinal direction of the terminal claws 23a, 23b and the terminal claws 29a, 29b, the connection bar 31 is allowed to connect only between the positive terminal member 5 and the negative terminal member 6.

つまり、接続バー31は正極と負極との間の接続だけが許容され、非水電解質二次電池1の正極同士、負極同士を並べた際であっても、隣接する端子部材間には接続バー31を装着することができないので、正極と負極の極性間を間違えて接続することがない。このため、接続バー31を用いることで、作業ミス及びショート等の不具合をなくすことができる。   That is, the connection bar 31 only allows connection between the positive electrode and the negative electrode, and even when the positive electrodes and the negative electrodes of the non-aqueous electrolyte secondary battery 1 are arranged, the connection bar 31 has a connection bar between adjacent terminal members. Since 31 cannot be attached, the polarity of the positive electrode and the negative electrode is not wrongly connected. For this reason, the use of the connection bar 31 can eliminate problems such as work mistakes and short circuits.

接続バー31の正極接続部32及び負極接続部33が正極端子部材5及び負極端子部材6に嵌め込まれ、接続爪35a、35bと端子爪23a、23bが突き合わされ、接続爪37a、37bと端子爪29a、29bが付き合わされる。図13(b)に示すように、接続爪35a、35bと端子爪23a、23bの上部、接続爪37a、37bと端子爪29a、29bの上部がそれぞれ溶接(TIG溶接等)により接合され、溶接部50が形成される。これにより、正極端子部材5と負極端子部材6とが連結固定される。   The positive electrode connection portion 32 and the negative electrode connection portion 33 of the connection bar 31 are fitted into the positive electrode terminal member 5 and the negative electrode terminal member 6, the connection claws 35a, 35b and the terminal claws 23a, 23b are abutted, and the connection claws 37a, 37b and the terminal claws 29a and 29b are brought together. As shown in FIG. 13B, the connection claws 35a and 35b and the upper portions of the terminal claws 23a and 23b, and the connection claws 37a and 37b and the upper portions of the terminal claws 29a and 29b are joined by welding (TIG welding or the like), respectively. Part 50 is formed. Thereby, the positive electrode terminal member 5 and the negative electrode terminal member 6 are connected and fixed.

接続バー31を用いたことにより、ボルト、ナット等の締結部材を用いることなく、また、極性の間違えが生じない状態で、非水電解質二次電池1の極性間の接続を行うことができ、接合が簡単且つ確実になり、接続のための部品点数及び作業工数の削減が可能になり、更に、接続スペースを削減することができる。   By using the connection bar 31, it is possible to connect between the polarities of the nonaqueous electrolyte secondary battery 1 without using fastening members such as bolts and nuts and in a state where the polarity is not mistaken, Joining is simple and reliable, the number of parts for connection and the number of work steps can be reduced, and the connection space can be reduced.

また、接続バー31の長孔34の端部と一対の接続爪35a、35bの間には隙間sが形成され、長孔36の端部と一対の接続爪37a、37bの間には隙間sが形成されているので、非水電解質二次電池1がずれて配されていても、隙間sの範囲で吸収される。隙間sは、互いに直交する長孔34、長孔36の端部にそれぞれ備えられているので、非水電解質二次電池1の水平面内の任意の方向の相対的な位置ずれを吸収することができる。   A gap s is formed between the end of the long hole 34 of the connection bar 31 and the pair of connection claws 35a and 35b, and a gap s is formed between the end of the long hole 36 and the pair of connection claws 37a and 37b. Therefore, even if the non-aqueous electrolyte secondary battery 1 is shifted and disposed, it is absorbed within the gap s. Since the gaps s are provided at the ends of the elongated hole 34 and the elongated hole 36 that are orthogonal to each other, the relative displacement in an arbitrary direction within the horizontal plane of the nonaqueous electrolyte secondary battery 1 can be absorbed. it can.

尚、接続バー31の正極接続部32、負極接続部33にそれぞれ一対の接続爪を設け、接続爪と端子部材の端子爪を対向させるようにしたが、端子爪が挿入されて挟持する嵌入爪を設けることも可能である。   A pair of connection claws are provided on the positive electrode connection portion 32 and the negative electrode connection portion 33 of the connection bar 31, respectively, so that the connection claws and the terminal claws of the terminal member are opposed to each other. It is also possible to provide.

上記構成の本発明の非水電解質二次電池1では、集電体7及び集電体8の貫通端子部材15が、絞り加工(塑性変形)により上面板11と一体に形成されている。   In the non-aqueous electrolyte secondary battery 1 of the present invention having the above-described configuration, the current collector 7 and the through-terminal member 15 of the current collector 8 are formed integrally with the upper surface plate 11 by drawing (plastic deformation).

このため、電極群3に接続される長尺接合板12と貫通端子部材15が一つの部材で構成され、別体の貫通端子部材をかしめ等により上面板11に固定する構成に比べ、電気的性能及び機械的性能を向上させることができる。特に、集電体7はアルミニウム製であるので、アルミニウム同士のかしめによる強度不足や接触抵抗増加等の不具合をなくすことができる。更に、部品点数を削減することができる。従って、電気的信頼性及び機械的な信頼性が大幅に向上すると共に、表面酸化を考慮した部品管理が不要になって部品管理が容易になる。   For this reason, the long joining plate 12 and the through terminal member 15 connected to the electrode group 3 are formed of a single member, and compared with a configuration in which a separate through terminal member is fixed to the upper surface plate 11 by caulking or the like. Performance and mechanical performance can be improved. In particular, since the current collector 7 is made of aluminum, problems such as insufficient strength and increased contact resistance due to caulking of aluminum can be eliminated. Furthermore, the number of parts can be reduced. Therefore, the electrical reliability and the mechanical reliability are greatly improved, and the parts management considering the surface oxidation becomes unnecessary, and the parts management becomes easy.

集電体7及び集電体8の貫通端子部材15が上面板11と一体化されていることで、上面板11の下面側で貫通端子部材15のかしめ作業が不要になり、上面板11の下面側に作業スペースを確保する必要がない。このため、上面板11の端部から下側に向けて延びる長尺接合板12が存在していても、上面板11の端部寄り(蓋部材4の端部寄り)に貫通端子部材15を形成することができ、正極端子部材5(負極端子部材6)の端子爪23a、23b(29a、29b)までの貫通端子部材15を経由しての電気的な経路長が短くなり、回路抵抗を小さくすることが可能になる。また、正極端子部材5(負極端子部材6)を及び上面板11を小型化することができ、接続部位を構成する部材の材料の使用量を減らすことができる。   Since the current collector 7 and the through terminal member 15 of the current collector 8 are integrated with the upper surface plate 11, it is not necessary to caulk the through terminal member 15 on the lower surface side of the upper surface plate 11. There is no need to secure a work space on the bottom side. For this reason, even if the long joining plate 12 extending downward from the end portion of the upper surface plate 11 exists, the penetrating terminal member 15 is disposed closer to the end portion of the upper surface plate 11 (closer to the end portion of the lid member 4). The electrical path length through the penetrating terminal member 15 to the terminal claws 23a, 23b (29a, 29b) of the positive electrode terminal member 5 (negative electrode terminal member 6) can be shortened, and the circuit resistance can be reduced. It becomes possible to make it smaller. Moreover, the positive electrode terminal member 5 (negative electrode terminal member 6) and the upper surface board 11 can be reduced in size, and the usage-amount of the material of the member which comprises a connection part can be reduced.

上述した本実施形態例の非水電解質二次電池1は、電流の取り出しを行なうための部材の部品点数を低減し、電極端子の部位での電気的性能や機械的性能を向上させて信頼性を高めることが可能になる。   The non-aqueous electrolyte secondary battery 1 of the present embodiment described above is reliable by reducing the number of parts of a member for taking out current and improving electrical performance and mechanical performance at the electrode terminal. Can be increased.

本発明は、非水電解質二次電池の産業分野で利用することができる。   The present invention can be used in the industrial field of non-aqueous electrolyte secondary batteries.

本発明の一実施形態例に係る非水電解質二次電池の全体構造を表す分解斜視図である。It is a disassembled perspective view showing the whole structure of the nonaqueous electrolyte secondary battery concerning the example of one embodiment of the present invention. 電池ケース内部の構造を表す一部破断側面図である。It is a partially broken side view showing the structure inside a battery case. 図2中のIII−III線矢視図である。It is the III-III arrow directional view in FIG. 正極側の正面図である。It is a front view on the positive electrode side. 負極側の正面図である。It is a front view on the negative electrode side. 正極側の端子部品の分解側面図である。It is an exploded side view of the terminal component on the positive electrode side. 正極端子部材の詳細図である。It is detail drawing of a positive electrode terminal member. 負極端子部材の詳細図である。It is detail drawing of a negative electrode terminal member. 電池群(スタックエレメント)の外観図である。It is an external view of a battery group (stack element). 図9中のX−X線矢視図である。FIG. 10 is an XX line view in FIG. 9. 電極群の製作工程図である。It is a manufacturing process figure of an electrode group. セルの接続状況を表す平面図である。It is a top view showing the connection condition of a cell. 接続バーの接合状況説明図である。It is joining state explanatory drawing of a connection bar.

符号の説明Explanation of symbols

1 非水電解質二次電池
2 電池ケース
3 電極群
4 蓋部材
5 正極端子部材
6 負極端子部材
7 集電体(正極側)
8 集電体(負極側)
11 上面板
12 長尺接合板
13 接続板片
15 貫通端子部材
16、26 貫通孔
17 下部パッキン
18 上部パッキン
21、27 密着板部
22、28 接続板部
23a、29a 端子爪
24、30 逃げ部
31 接続バー
32 正極接続部
33 負極接続部
34 長孔(正極側)
35a、37a 接続爪
36 長孔(負極側)
47 シールパッキン
48 保持パッキン
DESCRIPTION OF SYMBOLS 1 Nonaqueous electrolyte secondary battery 2 Battery case 3 Electrode group 4 Lid member 5 Positive electrode terminal member 6 Negative electrode terminal member 7 Current collector (positive electrode side)
8 Current collector (negative electrode side)
DESCRIPTION OF SYMBOLS 11 Top plate 12 Long joining board 13 Connection board piece 15 Through-terminal member 16, 26 Through-hole 17 Lower packing 18 Upper packing 21, 27 Contact board part 22, 28 Connection board part 23a, 29a Terminal claw 24, 30 Escape part 31 Connection bar 32 Positive electrode connection 33 Negative electrode connection 34 Long hole (positive electrode side)
35a, 37a Connection claw 36 Long hole (negative electrode side)
47 Seal packing 48 Holding packing

Claims (5)

電池外装部材の内側に設けられ電極に導通する集電部材と、
前記電池外装部材の外側に設けられる端子部材と、
前記電池外装部材を貫通して設けられ前記集電部材と前記端子部材とを導通する貫通端子部材とを備え、
前記貫通端子部材は、前記集電部材もしくは前記端子部材に塑性変形により一体形成されている
ことを特徴とする非水電解質二次電池。
A current collecting member provided on the inside of the battery exterior member and conducting to the electrode;
A terminal member provided outside the battery exterior member;
A penetrating terminal member provided through the battery exterior member and conducting the current collecting member and the terminal member;
The non-aqueous electrolyte secondary battery, wherein the through terminal member is integrally formed with the current collecting member or the terminal member by plastic deformation.
請求項1に記載の非水電解質二次電池において、
前記貫通端子部材は、前記集電部材に塑性変形により一体形成されて前記電池外装部材側に突出している
ことを特徴とする非水電解質二次電池。
The nonaqueous electrolyte secondary battery according to claim 1,
The non-aqueous electrolyte secondary battery, wherein the through terminal member is integrally formed with the current collecting member by plastic deformation and protrudes toward the battery exterior member.
請求項2に記載の非水電解質二次電池において、
前記端子部材には、前記貫通端子部材が貫通し、前記貫通端子部材の端部がかしめられることで固定される貫通孔が備えられ、
前記貫通孔の内周には、逃げ部が形成されている
ことを特徴とする非水電解質二次電池。
The nonaqueous electrolyte secondary battery according to claim 2,
The terminal member is provided with a through hole that is penetrated by the through terminal member and fixed by caulking an end portion of the through terminal member.
A non-aqueous electrolyte secondary battery, wherein an escape portion is formed on an inner periphery of the through hole.
請求項2もしくは請求項3に記載の非水電解質二次電池において、
前記貫通端子部材と前記電池外装部材の内側との間にはパッキンが介装され、
前記パッキンは、前記貫通端子部材の基端部に嵌合してシール性を保つシールパッキンと、前記シールパッキンに密着して前記貫通端子部材と前記電池外装部材との間に働く力を受ける剛性を有する保持パッキンとからなる
ことを特徴とする非水電解質二次電池。
The nonaqueous electrolyte secondary battery according to claim 2 or 3,
A packing is interposed between the through terminal member and the inside of the battery exterior member,
The packing includes a seal packing that is fitted to a base end portion of the through-terminal member to maintain a sealing property, and a rigidity that is in close contact with the seal packing and receives a force acting between the through-terminal member and the battery exterior member. A non-aqueous electrolyte secondary battery comprising: a holding packing having:
請求項4に記載の非水電解質二次電池において、
前記端子部材と前記電池外装部材の外側との間には、前記保持パッキンと同一材質の上部パッキンが介装されている
ことを特徴とする非水電解質二次電池。
The nonaqueous electrolyte secondary battery according to claim 4,
The non-aqueous electrolyte secondary battery is characterized in that an upper packing made of the same material as that of the holding packing is interposed between the terminal member and the outside of the battery exterior member.
JP2008130071A 2008-05-16 2008-05-16 Nonaqueous electrolyte secondary battery Active JP5326126B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2008130071A JP5326126B2 (en) 2008-05-16 2008-05-16 Nonaqueous electrolyte secondary battery

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2008130071A JP5326126B2 (en) 2008-05-16 2008-05-16 Nonaqueous electrolyte secondary battery

Publications (2)

Publication Number Publication Date
JP2009277604A true JP2009277604A (en) 2009-11-26
JP5326126B2 JP5326126B2 (en) 2013-10-30

Family

ID=41442829

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2008130071A Active JP5326126B2 (en) 2008-05-16 2008-05-16 Nonaqueous electrolyte secondary battery

Country Status (1)

Country Link
JP (1) JP5326126B2 (en)

Cited By (18)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2011204405A (en) * 2010-03-24 2011-10-13 Eliiy Power Co Ltd Nonaqueous electrolyte secondary battery and method for manufacturing the same
JP2011216396A (en) * 2010-04-01 2011-10-27 Hitachi Vehicle Energy Ltd Square secondary battery
WO2012023434A1 (en) * 2010-08-17 2012-02-23 株式会社Gsユアサ Power storage element manufacturing method and power storage element
WO2012029593A1 (en) 2010-08-30 2012-03-08 エリーパワー株式会社 Battery cover with attached electrode terminal, method for producing battery cover with attached electrode terminal, and airtight battery
WO2012073331A1 (en) * 2010-11-30 2012-06-07 日立ビークルエナジー株式会社 Rechargeable battery and rechargeable battery module
EP2463934A2 (en) 2010-12-10 2012-06-13 GS Yuasa International Ltd. Battery
CN102610782A (en) * 2011-01-19 2012-07-25 丰田合成株式会社 Lid assembly for battery
EP2479815A1 (en) * 2011-01-20 2012-07-25 GS Yuasa International Ltd. Electric storage device
KR20120088596A (en) * 2011-01-31 2012-08-08 가부시키가이샤 지에스 유아사 Battery
US8598471B2 (en) 2010-12-28 2013-12-03 Gs Yuasa International Ltd. Electric storage device
US8632912B2 (en) 2011-04-14 2014-01-21 Gs Yuasa International Ltd. Battery including baffling member and sealing material that seals auxiliary terminal to lid plate
US8748034B2 (en) 2011-04-14 2014-06-10 Gs Yuasa International Ltd. Battery including baffling member including one of projecting portion and recessed portion extending from lid plate
US8765293B2 (en) 2010-12-28 2014-07-01 Gs Yuasa International Ltd. Electric storage device
US8795882B2 (en) 2010-12-10 2014-08-05 Gs Yuasa International Ltd. Battery
KR20150089739A (en) * 2014-01-28 2015-08-05 삼성에스디아이 주식회사 Secondary battery
JP2017027952A (en) * 2010-12-10 2017-02-02 株式会社Gsユアサ battery
US10326169B2 (en) 2015-10-30 2019-06-18 Sanyo Electric Co., Ltd. Method for manufacturing prismatic secondary battery
JP2022042676A (en) * 2020-09-03 2022-03-15 プライムアースEvエナジー株式会社 Secondary battery

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2003249423A (en) * 2001-12-20 2003-09-05 Toyota Motor Corp Storage element and manufacturing method

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2003249423A (en) * 2001-12-20 2003-09-05 Toyota Motor Corp Storage element and manufacturing method

Cited By (34)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2011204405A (en) * 2010-03-24 2011-10-13 Eliiy Power Co Ltd Nonaqueous electrolyte secondary battery and method for manufacturing the same
JP2011216396A (en) * 2010-04-01 2011-10-27 Hitachi Vehicle Energy Ltd Square secondary battery
US10115958B2 (en) 2010-08-17 2018-10-30 Gs Yuasa International Ltd. Manufacturing method of electric storage device and electric storage device
WO2012023434A1 (en) * 2010-08-17 2012-02-23 株式会社Gsユアサ Power storage element manufacturing method and power storage element
WO2012029593A1 (en) 2010-08-30 2012-03-08 エリーパワー株式会社 Battery cover with attached electrode terminal, method for producing battery cover with attached electrode terminal, and airtight battery
WO2012073331A1 (en) * 2010-11-30 2012-06-07 日立ビークルエナジー株式会社 Rechargeable battery and rechargeable battery module
US9461296B2 (en) 2010-11-30 2016-10-04 Hitachi Automotive Systems, Ltd. Secondary battery and secondary battery module
JP5624157B2 (en) * 2010-11-30 2014-11-12 日立オートモティブシステムズ株式会社 Secondary battery and secondary battery module
EP2463934A2 (en) 2010-12-10 2012-06-13 GS Yuasa International Ltd. Battery
US8795882B2 (en) 2010-12-10 2014-08-05 Gs Yuasa International Ltd. Battery
JP2017027952A (en) * 2010-12-10 2017-02-02 株式会社Gsユアサ battery
KR20120089789A (en) 2010-12-10 2012-08-13 가부시키가이샤 지에스 유아사 Battery
US8945761B2 (en) 2010-12-10 2015-02-03 Gs Yuasa International Ltd. Battery
US9685643B2 (en) 2010-12-28 2017-06-20 Gs Yuasa International Ltd. Electric storage device
US8598471B2 (en) 2010-12-28 2013-12-03 Gs Yuasa International Ltd. Electric storage device
US8765293B2 (en) 2010-12-28 2014-07-01 Gs Yuasa International Ltd. Electric storage device
CN102610782A (en) * 2011-01-19 2012-07-25 丰田合成株式会社 Lid assembly for battery
US10714715B2 (en) 2011-01-20 2020-07-14 Gs Yuasa International Ltd. Electric storage device
EP2479815A1 (en) * 2011-01-20 2012-07-25 GS Yuasa International Ltd. Electric storage device
KR101959605B1 (en) 2011-01-31 2019-03-18 가부시키가이샤 지에스 유아사 Battery
KR101658263B1 (en) 2011-01-31 2016-09-22 가부시키가이샤 지에스 유아사 Battery
KR20160110929A (en) * 2011-01-31 2016-09-23 가부시키가이샤 지에스 유아사 Battery
KR20120088596A (en) * 2011-01-31 2012-08-08 가부시키가이샤 지에스 유아사 Battery
US9379372B2 (en) 2011-04-14 2016-06-28 Gs Yuasa International Ltd. Battery and method of manufacturing the same
US9118051B2 (en) 2011-04-14 2015-08-25 Gs Yuasa International Ltd. Battery and method of manufacturing the same
US8748034B2 (en) 2011-04-14 2014-06-10 Gs Yuasa International Ltd. Battery including baffling member including one of projecting portion and recessed portion extending from lid plate
US8632912B2 (en) 2011-04-14 2014-01-21 Gs Yuasa International Ltd. Battery including baffling member and sealing material that seals auxiliary terminal to lid plate
KR20150089739A (en) * 2014-01-28 2015-08-05 삼성에스디아이 주식회사 Secondary battery
US9692034B2 (en) 2014-01-28 2017-06-27 Samsung Sdi Co., Ltd. Secondary battery
KR102165332B1 (en) * 2014-01-28 2020-10-13 삼성에스디아이 주식회사 Secondary battery
US10326169B2 (en) 2015-10-30 2019-06-18 Sanyo Electric Co., Ltd. Method for manufacturing prismatic secondary battery
US11050092B2 (en) 2015-10-30 2021-06-29 Sanyo Electric Co., Ltd. Method for manufacturing prismatic secondary battery
JP2022042676A (en) * 2020-09-03 2022-03-15 プライムアースEvエナジー株式会社 Secondary battery
JP7321984B2 (en) 2020-09-03 2023-08-07 プライムアースEvエナジー株式会社 secondary battery

Also Published As

Publication number Publication date
JP5326126B2 (en) 2013-10-30

Similar Documents

Publication Publication Date Title
JP5326126B2 (en) Nonaqueous electrolyte secondary battery
JP5326125B2 (en) Nonaqueous electrolyte secondary battery
US10135040B2 (en) Electric storage device, electric storage device assembly, and method for producing electric storage device
CN107112488B (en) Electric storage element
CN109326813B (en) Power storage device and insulating holder
US20160233476A1 (en) Electricity storage module
JP5326127B2 (en) Battery module
KR102568341B1 (en) Energy storage device
US8530068B2 (en) Square battery and manufacturing method of the same
KR20120025389A (en) Square-sealed type secondary battery
US10424809B2 (en) Secondary battery, method for manufacturing same, and battery pack employing same
CN105428584B (en) Electric storage element
JP3988570B2 (en) Stacked battery
JP2019061892A (en) Power storage element
KR102494074B1 (en) Energy storage device
JP7150714B2 (en) BATTERY MODULE AND BATTERY MODULE MANUFACTURING METHOD
WO2019124109A1 (en) Busbar and battery laminate
KR20190084765A (en) Electrode Assembly Comprising Plastic Member Applied on Electrode Tab-lead Coupling Portion and Secondary Battery Comprising the Same
JP2014160614A (en) Power storage device
JP2019061881A (en) Power storage element
JP6864863B2 (en) Power storage element and manufacturing method of power storage element
JP6880483B2 (en) Power storage element
JP2020047502A (en) Manufacturing apparatus of power storage device and manufacturing method of power storage device
JP2013207026A (en) Capacitor and capacitor module using the same
CN110352515B (en) Electricity storage device

Legal Events

Date Code Title Description
A621 Written request for application examination

Free format text: JAPANESE INTERMEDIATE CODE: A621

Effective date: 20110414

A977 Report on retrieval

Free format text: JAPANESE INTERMEDIATE CODE: A971007

Effective date: 20130221

A131 Notification of reasons for refusal

Free format text: JAPANESE INTERMEDIATE CODE: A131

Effective date: 20130313

A521 Request for written amendment filed

Free format text: JAPANESE INTERMEDIATE CODE: A523

Effective date: 20130513

TRDD Decision of grant or rejection written
A01 Written decision to grant a patent or to grant a registration (utility model)

Free format text: JAPANESE INTERMEDIATE CODE: A01

Effective date: 20130605

A61 First payment of annual fees (during grant procedure)

Free format text: JAPANESE INTERMEDIATE CODE: A61

Effective date: 20130702

R150 Certificate of patent or registration of utility model

Ref document number: 5326126

Country of ref document: JP

Free format text: JAPANESE INTERMEDIATE CODE: R150

Free format text: JAPANESE INTERMEDIATE CODE: R150

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250