JP6623899B2 - Method for manufacturing power storage device - Google Patents

Method for manufacturing power storage device Download PDF

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JP6623899B2
JP6623899B2 JP2016067834A JP2016067834A JP6623899B2 JP 6623899 B2 JP6623899 B2 JP 6623899B2 JP 2016067834 A JP2016067834 A JP 2016067834A JP 2016067834 A JP2016067834 A JP 2016067834A JP 6623899 B2 JP6623899 B2 JP 6623899B2
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terminal
hole
press
external connection
connection member
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JP2017183059A (en
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幹也 栗田
幹也 栗田
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Toyota Industries Corp
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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

Description

本発明は、外部接続端子と外側絶縁部材を備える蓄電装置の製造方法に関する。   The present invention relates to a method for manufacturing a power storage device including an external connection terminal and an outer insulating member.

従来から、EV(Electric Vehicle)やPHV(Plug in Hybrid Vehicle)などの車両には、電動機などへの供給電力を蓄える蓄電装置としてリチウムイオン二次電池やニッケル水素二次電池などが搭載されている。一般的に、二次電池は、活物質層を有する正極電極及び負極電極が層状に重なった電極組立体と、該電極組立体を収容するケースとを備えている。正極電極及び負極電極には導電部材を介して端子構造が接続されている。   2. Description of the Related Art Conventionally, vehicles such as EVs (Electric Vehicles) and PHVs (Plug in Hybrid Vehicles) are equipped with a lithium ion secondary battery, a nickel hydrogen secondary battery, or the like as a power storage device for storing power supplied to an electric motor or the like. . Generally, a secondary battery includes an electrode assembly in which a positive electrode and a negative electrode having an active material layer are layered, and a case for housing the electrode assembly. A terminal structure is connected to the positive electrode and the negative electrode via a conductive member.

例えば、特許文献1に開示の電池の端子構造は、図6に示すように、蓋板80を貫通して外部に突出するリベット端子81を備える。また、端子構造は、蓋板80上に配置された上部絶縁封止板82を備える。上部絶縁封止板82には、リベット端子81の下端カシメ部81aが貫通している。   For example, the battery terminal structure disclosed in Patent Literature 1 includes a rivet terminal 81 that penetrates a cover plate 80 and protrudes to the outside as shown in FIG. Further, the terminal structure includes an upper insulating sealing plate 82 disposed on the lid plate 80. The lower end caulking portion 81a of the rivet terminal 81 penetrates the upper insulating sealing plate 82.

端子構造は、上部絶縁封止板82上に配置された端子接続杆83を備える。端子接続杆83は嵌合孔83aを備え、この嵌合孔83aにはリベット端子81の上端カシメ部81bが嵌入されている。   The terminal structure includes a terminal connecting rod 83 arranged on the upper insulating sealing plate 82. The terminal connecting rod 83 has a fitting hole 83a, and the upper end caulking portion 81b of the rivet terminal 81 is fitted into the fitting hole 83a.

リベット端子81の下端カシメ部81a及び上端カシメ部81bのカシメにより、蓋板80と、上部絶縁封止板82と、端子接続杆83が挟持されている。また、カシメにより、リベット端子81と端子接続杆83が電気的に接続されている。   The lid plate 80, the upper insulating sealing plate 82, and the terminal connecting rod 83 are sandwiched between the lower caulking portion 81 a and the upper caulking portion 81 b of the rivet terminal 81. The rivet terminal 81 and the terminal connecting rod 83 are electrically connected by caulking.

端子構造は、端子ボルト84を備える。端子ボルト84は、ボルト部84aを備える。ボルト部84aは、端子接続杆83の貫通孔83bに嵌合されている。
特許文献1の端子構造は、リベット端子81に位置決め突部となる突起部81cを備える。この突起部81cは、端子接続杆83の係合孔としての副嵌合孔83cに嵌入され、突起部81cは副嵌合孔83cの内面に係合している。突起部81cの副嵌合孔83cへの嵌入により、カシメ部81a,81bを中心とした端子接続杆83の回転が抑制されている。
The terminal structure includes a terminal bolt 84. The terminal bolt 84 includes a bolt portion 84a. The bolt portion 84a is fitted in the through hole 83b of the terminal connecting rod 83.
The terminal structure of Patent Literature 1 includes a rivet terminal 81 having a projection 81c serving as a positioning projection. The protrusion 81c is fitted into a sub-fitting hole 83c as an engaging hole of the terminal connection rod 83, and the protrusion 81c is engaged with the inner surface of the sub-fitting hole 83c. By the protrusion 81c being fitted into the sub-fitting hole 83c, the rotation of the terminal connecting rod 83 about the caulking parts 81a and 81b is suppressed.

特開2003−92103号公報JP 2003-92103 A

ところで、特許文献1の端子構造において、その組み付け性を向上させるため、端子ボルト84を端子接続杆83の貫通孔83bに予め嵌合して一体化した後、端子接続杆83の嵌合孔83aにリベット端子81の上端カシメ部81bを貫通させる場合がある。しかし、端子ボルト84を端子接続杆83に嵌合した際、嵌合によって端子接続杆83が変形してしまう虞がある。すると、端子接続杆83の変形により、副嵌合孔83cの開口幅が狭くなるように変形してしまい、副嵌合孔83cに突起部81cを嵌入できなくなってしまう。その結果、突起部81cを副嵌合孔83cに係合させることができず、端子接続杆83の回転が抑制できなくなる。   By the way, in the terminal structure of Patent Literature 1, in order to improve the assemblability, the terminal bolt 84 is previously fitted and integrated into the through hole 83b of the terminal connecting rod 83, and then the fitting hole 83a of the terminal connecting rod 83 is formed. In some cases, the upper end caulking portion 81b of the rivet terminal 81 is penetrated. However, when the terminal bolt 84 is fitted to the terminal connecting rod 83, the fitting may deform the terminal connecting rod 83. Then, due to the deformation of the terminal connection rod 83, the auxiliary fitting hole 83c is deformed so as to have a smaller opening width, and the projection 81c cannot be fitted into the sub-fitting hole 83c. As a result, the projection 81c cannot be engaged with the sub-fitting hole 83c, and the rotation of the terminal connecting rod 83 cannot be suppressed.

本発明は、上記従来技術に存在する問題点に着目してなされたものであり、その目的は、係合孔の変形を抑制することができる蓄電装置の製造方法を提供することにある。   SUMMARY OF THE INVENTION The present invention has been made in view of the problems existing in the related art, and has as its object to provide a method for manufacturing a power storage device capable of suppressing deformation of an engagement hole.

上記問題点を解決するための蓄電装置の製造方法は、異なる極性の電極が互いに絶縁されて積層された状態の電極組立体と、前記電極組立体を収容したケースと、前記ケースの壁部の外側に配置された外部接続端子と、前記電極組立体と電気的に接続され、前記壁部を貫通して外部に突出した状態の引出端子と、前記壁部の外側に配置され、かつ前記引出端子と前記外部接続端子とを接続した端子接続部材と、前記壁部の外側で前記外部接続端子と前記壁部とを絶縁し、かつ前記壁部からの前記引出端子の突出方向に沿って該引出端子が貫通する外側絶縁部材と、を備え、前記外側絶縁部材は、前記端子接続部材に向けて突出した形状の位置決め突部を有し、前記端子接続部材は、前記外部接続端子が圧入された圧入孔と、前記引出端子が挿通された挿通孔と、前記位置決め突部が係合した係合孔と、を有し、前記圧入孔と前記係合孔とが前記端子接続部材の面方向に並設されている蓄電装置の製造方法であって、前記端子接続部材の前記係合孔に治具を嵌めた状態で前記圧入孔に前記外部接続端子を圧入する工程と、前記治具を前記係合孔から取り外す工程と、前記圧入孔に前記外部接続端子が圧入された前記端子接続部材の前記係合孔に前記外側絶縁部材の前記位置決め突部を挿入する工程と、を含むことを要旨とする。   A method for manufacturing a power storage device for solving the above problems includes an electrode assembly in which electrodes of different polarities are insulated from each other and stacked, a case containing the electrode assembly, and a wall of the case. An external connection terminal disposed outside, an extraction terminal electrically connected to the electrode assembly, and penetrating the wall portion and protruding to the outside; and an extraction terminal disposed outside the wall portion, and A terminal connecting member that connects the terminal and the external connection terminal, and insulates the external connection terminal and the wall outside the wall, and extends along a direction in which the extraction terminal protrudes from the wall. An outer insulating member through which a lead terminal penetrates, wherein the outer insulating member has a positioning projection having a shape protruding toward the terminal connecting member, and the terminal connecting member is press-fitted with the external connecting terminal. Press-fit hole and the draw-out terminal Manufacturing of a power storage device having a through hole inserted, and an engaging hole engaged with the positioning projection, wherein the press-fitting hole and the engaging hole are juxtaposed in a surface direction of the terminal connecting member. A method of press-fitting the external connection terminal into the press-fitting hole with a jig fitted in the engagement hole of the terminal connection member; and removing the jig from the engagement hole; Inserting the positioning protrusion of the outer insulating member into the engagement hole of the terminal connection member having the external connection terminal press-fitted into the press-fitting hole.

これによれば、係合孔に治具を嵌めた状態で外部接続端子を圧入孔に圧入する。このとき、端子接続部材における圧入孔の周囲は、端子接続部材の面方向に沿って圧入孔を広げる方向に変形する。端子接続部材は、係合孔の開口幅が狭くなるように変形しようとするが、係合孔の内面が治具に当たって係合孔の変形が規制される。このため、治具を係合孔から取り外した後の工程において、外側絶縁部材の位置決め突部を係合孔に挿入し、係合孔の内面に位置決め突部を係合させることができる。   According to this, the external connection terminal is press-fitted into the press-fitting hole with the jig fitted in the engagement hole. At this time, the periphery of the press-fitting hole in the terminal connecting member is deformed in a direction of expanding the press-fitting hole along the surface direction of the terminal connecting member. The terminal connection member attempts to deform so that the opening width of the engagement hole is reduced, but the deformation of the engagement hole is restricted by the inner surface of the engagement hole hitting the jig. For this reason, in the step after the jig is removed from the engagement hole, the positioning projection of the outer insulating member can be inserted into the engagement hole, and the positioning projection can be engaged with the inner surface of the engagement hole.

また、蓄電装置の製造方法について、前記端子接続部材は矩形状であり、前記面方向は長手方向であって、前記係合孔は前記端子接続部材の短手方向に長手が延びる長孔状であり、前記治具は細長の柱状であってもよい。   Further, in the method for manufacturing a power storage device, the terminal connection member has a rectangular shape, the surface direction is a longitudinal direction, and the engagement hole has a long hole shape that extends in a short direction of the terminal connection member. The jig may have an elongated column shape.

これによれば、圧入孔に外部接続端子を圧入したとき、端子接続部材の短手方向のいずれの位置で係合孔に向けた変形が発生しても、その変形を治具で規制することが可能になる。   According to this, when the external connection terminal is press-fitted into the press-fitting hole, even if the terminal connection member is deformed toward the engagement hole at any position in the short direction, the deformation is regulated by the jig. Becomes possible.

また、前記蓄電装置は二次電池である。   Further, the power storage device is a secondary battery.

本発明によれば、係合孔の変形を抑制することができる。   According to the present invention, the deformation of the engagement hole can be suppressed.

実施形態の二次電池を示す分解斜視図。FIG. 2 is an exploded perspective view showing the secondary battery of the embodiment. 実施形態の二次電池の外観を示す斜視図。FIG. 1 is an exemplary perspective view showing the appearance of a secondary battery according to an embodiment. 端子構造を示す断面図。Sectional drawing which shows a terminal structure. 治具を示す斜視図。The perspective view which shows a jig. (a)は係合孔に治具を嵌めた状態を示す断面図、(b)は外部接続端子の圧入後に、治具を取り外した状態を示す断面図。(A) is sectional drawing which shows the state which fitted the jig in the engagement hole, (b) is sectional drawing which shows the state which removed the jig after press-fitting of the external connection terminal. 背景技術を示す図。The figure which shows background art.

以下、蓄電装置の製造方法を二次電池の製造方法に具体化した一実施形態を図1〜図5にしたがって説明する。
図1又は図2に示すように、蓄電装置としての二次電池10はケース11を備える。二次電池10は、ケース11内に収容された電極組立体12及び電解液(図示せず)を備える。ケース11は、四角箱状のケース部材14と、このケース部材14の開口部14aを閉塞する矩形平板状の蓋部材15とを有している。蓋部材15は、ケース11の壁部を構成する。本実施形態の二次電池10はリチウムイオン電池である。
Hereinafter, an embodiment in which a method for manufacturing a power storage device is embodied as a method for manufacturing a secondary battery will be described with reference to FIGS. 1 to 5.
As shown in FIG. 1 or 2, a secondary battery 10 as a power storage device includes a case 11. The secondary battery 10 includes an electrode assembly 12 and an electrolyte (not shown) housed in a case 11. The case 11 has a square box-shaped case member 14 and a rectangular flat plate-shaped lid member 15 that closes an opening 14 a of the case member 14. The cover member 15 forms a wall of the case 11. The secondary battery 10 of the present embodiment is a lithium ion battery.

電極組立体12は、シート状の複数の正極電極21とシート状の複数の負極電極31とを備える。正極電極21と負極電極31とは異なる極性の電極である。詳細に図示しないが、正極電極21は、正極金属箔(本実施形態ではアルミニウム箔)と、その正極金属箔の両面に存在する正極活物質層とを有する。負極電極31は、負極金属箔(本実施形態では銅箔)と、その負極金属箔の両面に存在する負極活物質層とを有する。そして、電極組立体12は、複数の正極電極21と複数の負極電極31の間にこれらを絶縁するセパレータ24を介在させて層状とした積層型である。   The electrode assembly 12 includes a plurality of sheet-shaped positive electrodes 21 and a plurality of sheet-shaped negative electrodes 31. The positive electrode 21 and the negative electrode 31 have different polarities. Although not shown in detail, the positive electrode 21 includes a positive metal foil (aluminum foil in the present embodiment) and positive electrode active material layers present on both surfaces of the positive metal foil. The negative electrode 31 has a negative electrode metal foil (a copper foil in the present embodiment) and negative electrode active material layers present on both surfaces of the negative electrode metal foil. The electrode assembly 12 is of a layered type in which a plurality of positive electrodes 21 and a plurality of negative electrodes 31 are layered with a separator 24 interposed therebetween for insulating them.

正極電極21は、正極電極21の一辺の一部から突出した形状のタブ25を有する。負極電極31は、負極電極31の一辺の一部から突出した形状のタブ35を有する。複数の正極のタブ25、及び複数の負極のタブ35は、正極電極21及び負極電極31が積層された状態で、正極のタブ25と負極のタブ35とが重ならない位置にそれぞれ設けられている。電極組立体12は、タブ25,35の突出したタブ側端面12bを有する。   The positive electrode 21 has a tab 25 having a shape protruding from a part of one side of the positive electrode 21. The negative electrode 31 has a tab 35 having a shape protruding from a part of one side of the negative electrode 31. The plurality of positive electrode tabs 25 and the plurality of negative electrode tabs 35 are provided at positions where the positive electrode tab 25 and the negative electrode tab 35 do not overlap in a state where the positive electrode electrode 21 and the negative electrode electrode 31 are stacked. . The electrode assembly 12 has a tab-side end surface 12b on which the tabs 25 and 35 protrude.

二次電池10は、タブ側端面12bから突出した正極のタブ群36を有する。正極のタブ群36は、全ての正極のタブ25を電極組立体12における積層方向の一端側に寄せ集め、積層して構成されている。二次電池10は、タブ側端面12bから突出した負極のタブ群36を有する。負極のタブ群36は、全ての負極のタブ35を電極組立体12における積層方向の一端側に寄せ集め、積層して構成されている。   The secondary battery 10 has a positive electrode tab group 36 protruding from the tab side end surface 12b. The positive electrode tab group 36 is configured by collecting and stacking all the positive electrode tabs 25 on one end side of the electrode assembly 12 in the stacking direction. The secondary battery 10 includes a negative electrode tab group 36 protruding from the tab side end surface 12b. The negative electrode tab group 36 is configured by collecting and stacking all the negative electrode tabs 35 on one end side of the electrode assembly 12 in the stacking direction.

正極のタブ群36には正極の導電部材51が接合されている。正極の導電部材51の長手方向一端側には正極のタブ群36が接合されている。正極の導電部材51の長手方向他端側には正極の引出端子60が接合されている。   A positive electrode conductive member 51 is joined to the positive electrode tab group 36. The positive electrode tab group 36 is joined to one longitudinal end of the positive electrode conductive member 51. A positive electrode lead-out terminal 60 is joined to the other end of the positive electrode conductive member 51 in the longitudinal direction.

負極のタブ群36には負極の導電部材51が接合されている。負極の導電部材51の長手方向一端側には負極のタブ群36が接合されている。負極の導電部材51の長手方向他端側には負極の引出端子60が接合されている。各導電部材51は、蓋部材15の内面15dと電極組立体12のタブ側端面12bとの間に配置されている。   A negative electrode conductive member 51 is joined to the negative electrode tab group 36. A tab group 36 of the negative electrode is joined to one end in the longitudinal direction of the conductive member 51 of the negative electrode. A negative electrode lead-out terminal 60 is joined to the other end of the negative electrode conductive member 51 in the longitudinal direction. Each conductive member 51 is disposed between the inner surface 15 d of the lid member 15 and the tab-side end surface 12 b of the electrode assembly 12.

次に、正極端子構造16及び負極端子構造17を説明する。なお、正極端子構造16と負極端子構造17は概ね同じ構成であるため、共通の部材については、同じ部材番号を使用して説明する。また、図3には、正極端子構造16のみを図示する。   Next, the positive terminal structure 16 and the negative terminal structure 17 will be described. Since the positive electrode terminal structure 16 and the negative electrode terminal structure 17 have substantially the same configuration, common members will be described using the same member numbers. FIG. 3 shows only the positive electrode terminal structure 16.

図1又は図3に示すように、蓋部材15は、ケース11の外側に臨む外面15c及びケース11の内側に臨む内面15dを有する。蓋部材15において、外面15cと内面15dを最短距離で結ぶ方向を厚み方向とする。   As shown in FIG. 1 or 3, the lid member 15 has an outer surface 15 c facing the outside of the case 11 and an inner surface 15 d facing the inside of the case 11. In the cover member 15, a direction connecting the outer surface 15c and the inner surface 15d at the shortest distance is defined as a thickness direction.

蓋部材15は、長手方向における両側に係止凸部18を備える。各係止凸部18は、外面15cから厚み方向に沿って突出した形状である。蓋部材15を外面15cから見て、係止凸部18は、蓋部材15の長手方向に長手が延びる突条形状である。各係止凸部18は、蓋部材15の短手方向の中央に位置する。蓋部材15は、長手方向における各係止凸部18より外側に挿通孔15eを備える。   The lid member 15 includes locking projections 18 on both sides in the longitudinal direction. Each locking projection 18 has a shape protruding from the outer surface 15c along the thickness direction. When the lid member 15 is viewed from the outer surface 15c, the locking projection 18 has a ridge shape that extends in the longitudinal direction of the lid member 15. Each locking projection 18 is located at the center of the cover member 15 in the lateral direction. The lid member 15 has an insertion hole 15e outside the locking projection 18 in the longitudinal direction.

正極端子構造16及び負極端子構造17は、蓋部材15の外面15cに配置された外側絶縁部材57を備える。正極端子構造16において、外側絶縁部材57は、正極の外部接続端子66及び引出端子60を蓋部材15から絶縁する。負極端子構造17において、外側絶縁部材57は、負極の外部接続端子66及び引出端子60を蓋部材15から絶縁する。   The positive electrode terminal structure 16 and the negative electrode terminal structure 17 include an outer insulating member 57 disposed on the outer surface 15c of the lid member 15. In the positive electrode terminal structure 16, the outer insulating member 57 insulates the positive external connection terminal 66 and the lead terminal 60 from the lid member 15. In the negative electrode terminal structure 17, the outer insulating member 57 insulates the external connection terminal 66 and the lead-out terminal 60 of the negative electrode from the lid member 15.

外側絶縁部材57は合成樹脂製である。外側絶縁部材57は、蓋部材15の外面15cから見て矩形状である。外側絶縁部材57の長手方向は、蓋部材15の長手方向に沿い、外側絶縁部材57の短手方向は、蓋部材15の短手方向に沿う。外側絶縁部材57は、蓋部材15の外面15cに対峙する裏面57aと、裏面57aと平行な表面57cを有する。外側絶縁部材57において、裏面57aと表面57cを結ぶ方向を厚み方向とする。   The outer insulating member 57 is made of a synthetic resin. The outer insulating member 57 has a rectangular shape when viewed from the outer surface 15c of the lid member 15. The longitudinal direction of the outer insulating member 57 is along the longitudinal direction of the lid member 15, and the lateral direction of the outer insulating member 57 is along the lateral direction of the lid member 15. The outer insulating member 57 has a back surface 57a facing the outer surface 15c of the lid member 15, and a front surface 57c parallel to the back surface 57a. In the outer insulating member 57, a direction connecting the back surface 57a and the front surface 57c is defined as a thickness direction.

外側絶縁部材57は、長手方向の一端寄りに位置決め突部58を備える。位置決め突部58は、表面57cから厚み方向に突出した形状である。位置決め突部58は、外側絶縁部材57の短手方向に長手が延びる細長形状である。   The outer insulating member 57 includes a positioning protrusion 58 near one end in the longitudinal direction. The positioning projection 58 has a shape protruding from the surface 57c in the thickness direction. The positioning projection 58 has an elongated shape that extends in the short direction of the outer insulating member 57.

外側絶縁部材57は、長手方向の一端寄りに、裏面57aから厚み方向に凹んだ回り止め凹部59を備える。回り止め凹部59は、蓋部材15の長手方向に長手が延びる細長状である。回り止め凹部59の開口形状は、蓋部材15を外面15cから見た係止凸部18の外形状と相似であり、係止凸部18の外形状より一回り小さい。   The outer insulating member 57 includes a detent recess 59 recessed in the thickness direction from the back surface 57a near one end in the longitudinal direction. The detent recess 59 has an elongated shape extending in the longitudinal direction of the lid member 15. The opening shape of the detent recess 59 is similar to the outer shape of the locking projection 18 when the lid member 15 is viewed from the outer surface 15c, and is slightly smaller than the outer shape of the locking projection 18.

外側絶縁部材57は、回り止め凹部59に係止凸部18が挿入された状態で蓋部材15の外面15cに設置されている。回り止め凹部59の内側面は、係止凸部18の外側面に接触している。ここで、蓋部材15はケース部材14に固定されている。このため、係止凸部18の外側面に対する回り止め凹部59の内側面の接触により、外側絶縁部材57は、蓋部材15の外面15cに沿う方向への移動が規制され、特に、外面15c上での回転が規制されている。   The outer insulating member 57 is installed on the outer surface 15 c of the lid member 15 in a state where the locking projection 18 is inserted into the rotation preventing recess 59. The inner surface of the rotation preventing recess 59 is in contact with the outer surface of the locking projection 18. Here, the lid member 15 is fixed to the case member 14. For this reason, the movement of the outer insulating member 57 in the direction along the outer surface 15c of the lid member 15 is restricted by the contact of the inner surface of the rotation preventing concave portion 59 with the outer surface of the locking convex portion 18, and particularly, The rotation at is regulated.

外側絶縁部材57は、長手方向の他端寄りに挿通孔57dを備える。挿通孔57dは、蓋部材15の挿通孔15eと一致した位置にある。
正極端子構造16及び負極端子構造17は、蓋部材15の外側に配置された外部接続端子66を備える。外部接続端子66は蓋部材15の外側で、二次電池10同士を電気的に接続するバスバーを固定可能とする。外部接続端子66は金属製である。
The outer insulating member 57 has an insertion hole 57d near the other end in the longitudinal direction. The insertion hole 57d is located at a position coinciding with the insertion hole 15e of the lid member 15.
The positive terminal structure 16 and the negative terminal structure 17 include external connection terminals 66 disposed outside the lid member 15. The external connection terminal 66 enables the bus bar that electrically connects the secondary batteries 10 to be fixed outside the cover member 15. The external connection terminal 66 is made of metal.

外部接続端子66は、円板状のボルト頭部67と、外部接続端子66の軸方向に沿ってボルト頭部67の一端面から突出した形状の軸部68とを備える。軸部68には、バスバー締結用のナットが螺合可能である。ボルト頭部67は、軸部68より大径である。   The external connection terminal 66 includes a disk-shaped bolt head 67 and a shaft 68 having a shape protruding from one end surface of the bolt head 67 along the axial direction of the external connection terminal 66. A bus bar fastening nut can be screwed into the shaft portion 68. The bolt head 67 has a larger diameter than the shaft 68.

正極端子構造16及び負極端子構造17は、引出端子60を備える。引出端子60は、導電部材51を介してタブ群36と電気的に接続されている。よって、引出端子60は電極組立体12と電気的に接続されている。引出端子60は、後述の端子接続部材44と電気的に接続される接続用軸部60aと、導電部材51と電気的に接続される基部60bとを軸方向に連続して備える。引出端子60は、基部60bを導電部材51に接合して導電部材51と一体化されている。   Each of the positive electrode terminal structure 16 and the negative electrode terminal structure 17 includes a lead terminal 60. The lead terminal 60 is electrically connected to the tab group 36 via the conductive member 51. Therefore, the extraction terminal 60 is electrically connected to the electrode assembly 12. The lead terminal 60 includes a connecting shaft portion 60a electrically connected to a terminal connecting member 44 described later and a base portion 60b electrically connected to the conductive member 51 in the axial direction. The lead terminal 60 is integrated with the conductive member 51 by joining the base 60 b to the conductive member 51.

正極端子構造16及び負極端子構造17は端子接続部材44を備える。端子接続部材44は、矩形板状である。端子接続部材44は、外側絶縁部材57に臨む裏面44aと、ケース11の外側に臨む表面44bを有する。端子接続部材44において裏面44aと表面44bを最短距離で結ぶ方向を厚み方向とする。   The positive terminal structure 16 and the negative terminal structure 17 include a terminal connecting member 44. The terminal connection member 44 has a rectangular plate shape. The terminal connection member 44 has a back surface 44 a facing the outer insulating member 57 and a front surface 44 b facing the outside of the case 11. In the terminal connecting member 44, the direction connecting the back surface 44a and the front surface 44b at the shortest distance is defined as the thickness direction.

端子接続部材44は、端子接続部材44の面方向である長手方向の一端寄りに係合孔45を備える。係合孔45は、端子接続部材44を厚み方向に貫通する。係合孔45は、端子接続部材44の短手方向に細長な長孔状である。二次電池10の製造の際、係合孔45には、治具52が嵌められる。   The terminal connection member 44 includes an engagement hole 45 near one end in the longitudinal direction that is the surface direction of the terminal connection member 44. The engagement hole 45 penetrates the terminal connection member 44 in the thickness direction. The engagement hole 45 has a long and narrow shape in the short direction of the terminal connection member 44. At the time of manufacturing the secondary battery 10, a jig 52 is fitted into the engagement hole 45.

図4に示すように、治具52は例えば鉄製である。治具52は、四角板状の基板53と、基板53から突出した細長な柱状の係合突条54と、を備える。係合突条54の長手方向への寸法L1は、係合孔45の長手方向への寸法N1より僅かに小さく、係合突条54の短手方向の寸法L2は、係合孔45の短手方向の寸法N2より僅かに小さい。係合突条54が係合孔45に嵌められると、係合突条54の外側面は、係合孔45の内面の全体に亘って接触する。   As shown in FIG. 4, the jig 52 is made of, for example, iron. The jig 52 includes a rectangular plate-shaped substrate 53 and an elongated columnar engaging protrusion 54 protruding from the substrate 53. The length L1 of the engaging ridge 54 in the longitudinal direction is slightly smaller than the length N1 of the engaging hole 45 in the longitudinal direction. It is slightly smaller than the dimension N2 in the hand direction. When the engagement ridge 54 is fitted into the engagement hole 45, the outer surface of the engagement ridge 54 contacts the entire inner surface of the engagement hole 45.

図1又は図3に示すように、係合孔45には、外側絶縁部材57の位置決め突部58が挿入されている。係合孔45の内側面には、位置決め突部58の外側面が接触している。この接触により、端子接続部材44は、外側絶縁部材57の表面57cに沿う方向への移動が規制され、特に、表面57c上での回転が規制されている。   As shown in FIG. 1 or 3, the positioning protrusion 58 of the outer insulating member 57 is inserted into the engagement hole 45. The outer surface of the positioning protrusion 58 is in contact with the inner surface of the engagement hole 45. Due to this contact, the movement of the terminal connection member 44 in the direction along the surface 57c of the outer insulating member 57 is restricted, and in particular, the rotation on the surface 57c is restricted.

端子接続部材44は、長手方向に沿って係合孔45に隣接する位置に圧入孔47を備える。圧入孔47は、円形状である。また、圧入孔47の孔径は、外部接続端子66の圧入前は、外部接続端子66の軸部68の直径より僅かに大きい。   The terminal connection member 44 has a press-fit hole 47 at a position adjacent to the engagement hole 45 along the longitudinal direction. The press-fit hole 47 has a circular shape. Before the press-fitting of the external connection terminal 66, the diameter of the press-fit hole 47 is slightly larger than the diameter of the shaft portion 68 of the external connection terminal 66.

圧入孔47には、ボルト頭部67が圧入されている。ボルト頭部67の圧入孔47への圧入により、外部接続端子66が端子接続部材44に回り止めされた状態で一体化されている。端子接続部材44において、圧入孔47に外部接続端子66が挿入され、ボルト頭部67が圧入されることで、端子接続部材44の裏面44a側が拡径するとともに、ボルト頭部67の端面が係合した係合面44cが形成されている。   The bolt head 67 is press-fitted into the press-fit hole 47. The external connection terminal 66 is integrated with the terminal connection member 44 in a state where the external connection terminal 66 is prevented from rotating by the press-fitting of the bolt head 67 into the press-fitting hole 47. In the terminal connection member 44, the external connection terminal 66 is inserted into the press-fit hole 47 and the bolt head 67 is press-fitted, so that the back surface 44 a side of the terminal connection member 44 expands and the end face of the bolt head 67 engages. A mating engagement surface 44c is formed.

端子接続部材44は、長手方向の他端寄りに挿通孔48を備える。挿通孔48は、端子接続部材44を厚み方向に貫通する。挿通孔48は円形状である。挿通孔48には、引出端子60の接続用軸部60aが挿通されている。接続用軸部60aは、内側絶縁部材40の挿通孔40a、蓋部材15の挿通孔15e、外側絶縁部材57の挿通孔57d及び端子接続部材44の挿通孔48を貫通している。   The terminal connection member 44 has an insertion hole 48 near the other end in the longitudinal direction. The insertion hole 48 penetrates the terminal connection member 44 in the thickness direction. The insertion hole 48 has a circular shape. The connection shaft portion 60 a of the lead terminal 60 is inserted into the insertion hole 48. The connection shaft portion 60a passes through the insertion hole 40a of the inner insulating member 40, the insertion hole 15e of the lid member 15, the insertion hole 57d of the outer insulating member 57, and the insertion hole 48 of the terminal connection member 44.

正極端子構造16及び負極端子構造17は、シールリング73を有する。シールリング73には、引出端子60の接続用軸部60aが挿通されている。シールリング73は、引出端子60の基部60bに支持されている。また、正極端子構造16及び負極端子構造17は、接続用軸部60aが挿通された前述の内側絶縁部材40を有する。内側絶縁部材40は、四角板状である。   The positive terminal structure 16 and the negative terminal structure 17 have a seal ring 73. The connection shaft 60 a of the lead-out terminal 60 is inserted through the seal ring 73. The seal ring 73 is supported by the base 60b of the lead terminal 60. Further, the positive electrode terminal structure 16 and the negative electrode terminal structure 17 have the above-described inner insulating member 40 into which the connecting shaft portion 60a is inserted. The inner insulating member 40 has a square plate shape.

内側絶縁部材40の内側には、シールリング73が配置されている。内側絶縁部材40は基部60bを覆っている。内側絶縁部材40は、蓋部材15と引出端子60の接触を規制するとともに、蓋部材15と引出端子60とを絶縁する。   A seal ring 73 is arranged inside the inner insulating member 40. The inner insulating member 40 covers the base 60b. The inner insulating member 40 regulates contact between the lid member 15 and the lead terminal 60 and insulates the lid member 15 from the lead terminal 60.

端子接続部材44の挿通孔48を貫通した接続用軸部60aの先端部が軸方向にかしめられることにより、接続用軸部60aと基部60bによって、内側絶縁部材40、蓋部材15、外側絶縁部材57、及び端子接続部材44が挟持されている。この挟持により、引出端子60が蓋部材15に固定されている。シールリング73は、蓋部材15の内面15dのうち挿通孔15eの周囲に密接し、蓋部材15の挿通孔15eをシールしている。   The distal end portion of the connection shaft portion 60a penetrating the insertion hole 48 of the terminal connection member 44 is axially swaged, so that the connection shaft portion 60a and the base portion 60b form the inner insulating member 40, the cover member 15, and the outer insulating member. 57 and the terminal connection member 44 are sandwiched. By this sandwiching, the drawer terminal 60 is fixed to the lid member 15. The seal ring 73 is in close contact with the inner surface 15d of the lid member 15 around the insertion hole 15e, and seals the insertion hole 15e of the lid member 15.

また、引出端子60の接続用軸部60aの先端部は、端子接続部材44の表面に係止するとともに、この係止によって引出端子60と端子接続部材44が電気的に接続されている。また、引出端子60の基部60bは、導電部材51に接触し、この接触によって、引出端子60と導電部材51が電気的に接続されている。   The distal end of the connecting shaft portion 60a of the lead terminal 60 is locked to the surface of the terminal connecting member 44, and the lead terminal 60 and the terminal connecting member 44 are electrically connected by this locking. The base 60b of the lead terminal 60 contacts the conductive member 51, and the contact connects the lead terminal 60 and the conductive member 51 electrically.

次に、二次電池10の製造方法を作用とともに記載する。
まず、蓋部材15の各係止凸部18を外側絶縁部材57の回り止め凹部59に挿入した状態で蓋部材15の外面15cに外側絶縁部材57を配置する。
Next, a method of manufacturing the secondary battery 10 will be described together with its operation.
First, the outer insulating member 57 is arranged on the outer surface 15c of the lid member 15 in a state in which the locking projections 18 of the lid member 15 are inserted into the detent recesses 59 of the outer insulating member 57.

次に、図5(a)に示すように、端子接続部材44の係合孔45に、治具52の係合突条54を嵌める工程を行う。治具52は、基板53が端子接続部材44の裏面44aに当接するまで係合突条54を係合孔45に嵌める。この工程により、係合突条54の外側面が係合孔45の内面の全体に亘って接触する。   Next, as shown in FIG. 5A, a step of fitting the engaging ridge 54 of the jig 52 into the engaging hole 45 of the terminal connecting member 44 is performed. The jig 52 fits the engagement ridge 54 into the engagement hole 45 until the substrate 53 contacts the back surface 44 a of the terminal connection member 44. By this step, the outer surface of the engaging ridge 54 contacts the entire inner surface of the engaging hole 45.

次に、圧入孔47に外部接続端子66のボルト頭部67を圧入する工程を行い、端子接続部材44と外部接続端子66を一体化する。
次に、図5(b)に示すように、係合孔45から係合突条54を抜き取り、端子接続部材44から治具52を取り外す工程を行う。
Next, a step of press-fitting the bolt head 67 of the external connection terminal 66 into the press-fit hole 47 is performed, and the terminal connection member 44 and the external connection terminal 66 are integrated.
Next, as shown in FIG. 5B, a step of removing the engagement protrusion 54 from the engagement hole 45 and removing the jig 52 from the terminal connection member 44 is performed.

次に、圧入孔47に外部接続端子66が圧入された端子接続部材44の係合孔45に外側絶縁部材57の位置決め突部58を挿入する工程を行う。すると、端子接続部材44が外側絶縁部材57の表面57cに配置される。   Next, a step of inserting the positioning protrusion 58 of the outer insulating member 57 into the engagement hole 45 of the terminal connection member 44 in which the external connection terminal 66 is press-fitted into the press-fit hole 47 is performed. Then, the terminal connection member 44 is disposed on the surface 57c of the outer insulating member 57.

次に、蓋部材15の内面15d側にシールリング73、内側絶縁部材40を配置する。引出端子60の接続用軸部60aを、内側絶縁部材40の挿通孔40a、シールリング73、蓋部材15の挿通孔15e、外側絶縁部材57の挿通孔57d及び端子接続部材44の挿通孔48に挿入する。そして、引出端子60の接続用軸部60aのかしめにより、基部60bと接続用軸部60aの先端部との間に、内側絶縁部材40、シールリング73、蓋部材15、外側絶縁部材57、及び端子接続部材44が一体化される。   Next, the seal ring 73 and the inner insulating member 40 are arranged on the inner surface 15d side of the lid member 15. The connecting shaft portion 60a of the lead terminal 60 is inserted into the insertion hole 40a of the inner insulating member 40, the seal ring 73, the insertion hole 15e of the lid member 15, the insertion hole 57d of the outer insulating member 57, and the insertion hole 48 of the terminal connecting member 44. insert. Then, by caulking the connecting shaft portion 60a of the extraction terminal 60, the inner insulating member 40, the seal ring 73, the lid member 15, the outer insulating member 57, and the inner insulating member 40 are provided between the base portion 60b and the distal end portion of the connecting shaft portion 60a. The terminal connection member 44 is integrated.

次に、各引出端子60の基部60bに導電部材51を接合する。すると、蓋部材15に正極端子構造16及び負極端子構造17が形成される。そして、各導電部材51に同じ極性のタブ群36を接合する。   Next, the conductive member 51 is joined to the base 60b of each lead terminal 60. Then, a positive electrode terminal structure 16 and a negative electrode terminal structure 17 are formed on the lid member 15. Then, the tab group 36 having the same polarity is joined to each conductive member 51.

電極組立体12をケース部材14の開口部14aからケース部材14内に挿入する。電極組立体12がケース部材14内に挿入された後、蓋部材15をケース部材14の開口端に接合すると、二次電池10が製造される。   The electrode assembly 12 is inserted into the case member 14 from the opening 14a of the case member 14. After the electrode assembly 12 is inserted into the case member 14, the lid member 15 is joined to the open end of the case member 14, whereby the secondary battery 10 is manufactured.

上記実施形態によれば、以下のような効果を得ることができる。
(1)端子接続部材44の係合孔45に治具52の係合突条54を嵌めた状態で、圧入孔47に外部接続端子66を圧入するようにした。このため、圧入孔47に外部接続端子66を圧入した際の端子接続部材44の変形を、治具52の係合突条54で受け止めることができる。よって、圧入孔47に隣接した係合孔45が、圧入孔47への外部接続端子66の圧入によって変形することを規制できる。その結果、係合孔45に外側絶縁部材57の位置決め突部58を挿入して位置決め突部58を係合孔45に係合させることができる。したがって、端子接続部材44に外部接続端子66を圧入する構造としても、外側絶縁部材57に対する端子接続部材44の回り止め状態を維持できる。
According to the above embodiment, the following effects can be obtained.
(1) The external connection terminal 66 is press-fitted into the press-fitting hole 47 in a state where the engaging ridge 54 of the jig 52 is fitted into the engaging hole 45 of the terminal connecting member 44. For this reason, the deformation of the terminal connection member 44 when the external connection terminal 66 is pressed into the press-fit hole 47 can be received by the engaging ridge 54 of the jig 52. Therefore, the deformation of the engaging hole 45 adjacent to the press-fit hole 47 due to the press-fit of the external connection terminal 66 into the press-fit hole 47 can be restricted. As a result, the positioning protrusion 58 of the outer insulating member 57 can be inserted into the engagement hole 45 and the positioning protrusion 58 can be engaged with the engagement hole 45. Therefore, even when the external connection terminal 66 is pressed into the terminal connection member 44, the rotation of the terminal connection member 44 with respect to the outer insulating member 57 can be maintained.

(2)係合孔45は、端子接続部材44の短手方向に長手が延びる長孔状であり、係合突条54は、係合孔45に嵌められる細長の柱状である。このため、圧入孔47に外部接続端子66を圧入した際、端子接続部材44がその短手方向のいずれの位置で変形しても、その変形を係合突条54で規制することができる。   (2) The engagement hole 45 is a long hole extending in the short direction of the terminal connection member 44, and the engagement protrusion 54 is a long and narrow columnar shape fitted into the engagement hole 45. For this reason, when the external connection terminal 66 is press-fitted into the press-fitting hole 47, even if the terminal connection member 44 is deformed at any position in the short direction, the deformation can be restricted by the engagement ridge 54.

(3)治具52の係合突条54の外側面は、係合孔45の内面の全体に亘って接触する。このため、圧入孔47に外部接続端子66を圧入した際、端子接続部材44がその短手方向全体に亘って変形しても、その変形を治具52で受け止め、係合孔45の変形を規制することができる。   (3) The outer surface of the engagement protrusion 54 of the jig 52 contacts the entire inner surface of the engagement hole 45. For this reason, when the external connection terminal 66 is press-fitted into the press-fitting hole 47, even if the terminal connecting member 44 is deformed over the entire width direction thereof, the deformation is received by the jig 52 and the deformation of the engagement hole 45 is prevented. Can be regulated.

(4)係合孔45に嵌められる治具52は1つである。このため、治具52を複数の分割体とする場合と比べると、係合孔45に治具52を嵌める作業が行いやすい。
(5)治具52において、係合突条54の長手方向への寸法L1は、係合孔45の長手方向への寸法N1より僅かに小さく、係合突条54の短手方向の寸法L2は、係合孔45の短手方向の寸法N2より僅かに小さい。このため、係合突条54を係合孔45に嵌めることで端子接続部材44が変形することが無く、係合孔45に治具52を嵌めることで圧入孔47が変形することが無い。
(4) One jig 52 is fitted into the engagement hole 45. For this reason, the work of fitting the jig 52 into the engagement hole 45 is easier than in the case where the jig 52 is formed of a plurality of divided bodies.
(5) In the jig 52, the dimension L1 in the longitudinal direction of the engagement ridge 54 is slightly smaller than the dimension N1 in the longitudinal direction of the engagement hole 45, and the dimension L2 in the short direction of the engagement ridge 54 is provided. Is slightly smaller than the dimension N2 of the engagement hole 45 in the short direction. Therefore, the terminal connecting member 44 is not deformed by fitting the engaging ridge 54 into the engaging hole 45, and the press-fitting hole 47 is not deformed by fitting the jig 52 into the engaging hole 45.

なお、上記実施形態は以下のように変更してもよい。
○ 治具52は、複数の分割体であってもよい。
○ 治具52は、基板53が無く、係合突条54だけの構成であってもよい。
The above embodiment may be modified as follows.
The jig 52 may be a plurality of divided bodies.
The jig 52 may have a configuration in which the substrate 53 is not provided and only the engagement ridge 54 is provided.

○ 係止凸部18は突条形状でなく、蓋部材15の外面15cから見て正方形状、長方形状、楕円形状、丸形状でもよく、係止凸部18に合わせて回り止め凹部59も、蓋部材15の外面15cから見て正方形状、長方形状、楕円形状、丸形状でもよい。   The locking projection 18 may have a square shape, a rectangular shape, an elliptical shape, or a round shape as viewed from the outer surface 15c of the lid member 15 instead of the ridge shape. When viewed from the outer surface 15c of the lid member 15, the shape may be square, rectangular, elliptical, or round.

○ 壁部は蓋部材15ではなく、ケース部材14の側壁であってもよい。
○ 電極組立体12は積層型でなく、捲回型であってもよい。
○ 引出端子60は、導電部材51を介さず、タブ群36に直接接続されていてもよい。
The wall may be a side wall of the case member 14 instead of the lid member 15.
The electrode assembly 12 may be of a wound type instead of a stacked type.
The drawer terminal 60 may be directly connected to the tab group 36 without using the conductive member 51.

○ 蓄電装置は、例えばキャパシタなど、二次電池以外の蓄電装置にも適用可能である。
○ 正極電極21及び負極電極31は、金属箔の片面に活物質層が存在する構造でもよい。
The power storage device can be applied to a power storage device other than a secondary battery, such as a capacitor.
The positive electrode 21 and the negative electrode 31 may have a structure in which an active material layer exists on one surface of a metal foil.

○ 二次電池10は、リチウムイオン二次電池でもよいし、他の二次電池であってもよい。要は、正極用の活物質と負極用の活物質との間をイオンが移動するとともに電荷の授受を行うものであればよい。   The secondary battery 10 may be a lithium ion secondary battery or another secondary battery. The point is that any material can be used as long as ions move between the positive electrode active material and the negative electrode active material and transfer charges.

次に、上記実施形態及び別例から把握できる技術的思想について以下に追記する。
(1)前記治具の外側面は、前記係合孔の内面の全体に亘って接触する蓄電装置の製造方法。
Next, technical ideas that can be grasped from the above embodiment and other examples will be additionally described below.
(1) A method of manufacturing a power storage device, wherein an outer surface of the jig contacts an entire inner surface of the engagement hole.

(2)前記治具の寸法は、前記係合孔の寸法より僅かに小さい蓄電装置の製造方法。   (2) A method for manufacturing a power storage device, wherein the dimension of the jig is slightly smaller than the dimension of the engagement hole.

10…二次電池、11…ケース、12…電極組立体、15…壁部としての蓋部材、21…電極としての正極電極、31…電極としての負極電極、44…端子接続部材、45…係合孔、47…圧入孔、48…挿通孔、52…治具、57…外側絶縁部材、58…位置決め突部、60…引出端子、66…外部接続端子。   DESCRIPTION OF SYMBOLS 10 ... Secondary battery, 11 ... Case, 12 ... Electrode assembly, 15 ... Lid member as a wall part, 21 ... Positive electrode as an electrode, 31 ... Negative electrode as an electrode, 44 ... Terminal connecting member, 45 ... Mating hole, 47 ... Press-fitting hole, 48 ... Inserting hole, 52 ... Jig, 57 ... Outer insulating member, 58 ... Positioning protrusion, 60 ... Extraction terminal, 66 ... External connection terminal.

Claims (3)

異なる極性の電極が互いに絶縁されて積層された状態の電極組立体と、
前記電極組立体を収容したケースと、
前記ケースの壁部の外側に配置された外部接続端子と、
前記電極組立体と電気的に接続され、前記壁部を貫通して外部に突出した状態の引出端子と、
前記壁部の外側に配置され、かつ前記引出端子と前記外部接続端子とを接続した端子接続部材と、
前記壁部の外側で前記外部接続端子と前記壁部とを絶縁し、かつ前記壁部からの前記引出端子の突出方向に沿って該引出端子が貫通する外側絶縁部材と、を備え、
前記外側絶縁部材は、前記端子接続部材に向けて突出した形状の位置決め突部を有し、
前記端子接続部材は、前記外部接続端子が圧入された圧入孔と、
前記引出端子が挿通された挿通孔と、
前記位置決め突部が係合した係合孔と、を有し、
前記圧入孔と前記係合孔とが前記端子接続部材の面方向に並設されている蓄電装置の製造方法であって、
前記端子接続部材の前記係合孔に治具を嵌めた状態で前記圧入孔に前記外部接続端子を圧入する工程と、
前記治具を前記係合孔から取り外す工程と、
前記圧入孔に前記外部接続端子が圧入された前記端子接続部材の前記係合孔に前記外側絶縁部材の前記位置決め突部を挿入する工程と、を含むことを特徴とする蓄電装置の製造方法。
An electrode assembly in which electrodes of different polarities are insulated from each other and stacked,
A case containing the electrode assembly;
An external connection terminal disposed outside a wall of the case;
An extraction terminal electrically connected to the electrode assembly and penetrating the wall to protrude outside;
A terminal connection member disposed outside the wall portion and connecting the extraction terminal and the external connection terminal;
An outer insulating member that insulates the external connection terminal and the wall portion outside the wall portion and penetrates the extraction terminal along a direction in which the extraction terminal protrudes from the wall portion,
The outer insulating member has a positioning protrusion having a shape protruding toward the terminal connection member,
The terminal connection member, a press-fit hole into which the external connection terminal is press-fitted,
An insertion hole through which the extraction terminal is inserted,
And an engagement hole with which the positioning projection is engaged,
A method for manufacturing a power storage device, wherein the press-fit hole and the engagement hole are arranged in parallel in a surface direction of the terminal connection member,
A step of press-fitting the external connection terminal into the press-fitting hole with a jig fitted in the engagement hole of the terminal connection member;
Removing the jig from the engagement hole;
Inserting the positioning protrusion of the outer insulating member into the engagement hole of the terminal connection member in which the external connection terminal is press-fitted into the press-fitting hole.
前記端子接続部材は矩形状であり、前記面方向は長手方向であって、前記係合孔は前記端子接続部材の短手方向に長手が延びる長孔状であり、前記治具は細長の柱状である請求項1に記載の蓄電装置の製造方法。   The terminal connection member has a rectangular shape, the surface direction is a longitudinal direction, the engaging hole is a long hole extending in a short direction of the terminal connection member, and the jig is an elongated columnar shape. The method for manufacturing a power storage device according to claim 1, wherein 前記蓄電装置は二次電池である請求項1又は請求項2に記載の蓄電装置の製造方法。   The method for manufacturing a power storage device according to claim 1, wherein the power storage device is a secondary battery.
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