JP2011070977A - Laminated battery - Google Patents

Laminated battery Download PDF

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JP2011070977A
JP2011070977A JP2009221780A JP2009221780A JP2011070977A JP 2011070977 A JP2011070977 A JP 2011070977A JP 2009221780 A JP2009221780 A JP 2009221780A JP 2009221780 A JP2009221780 A JP 2009221780A JP 2011070977 A JP2011070977 A JP 2011070977A
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positive electrode
current collector
negative electrode
battery
electrode current
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Daisuke Otsuka
大輔 大塚
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Murata Manufacturing Co Ltd
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Murata Manufacturing Co Ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/10Energy storage using batteries

Abstract

<P>PROBLEM TO BE SOLVED: To provide a laminated battery capable of improving volume energy density by folding down a sealing section of an outer package made from a laminated film. <P>SOLUTION: The laminated battery includes the outer package 19 made from the laminated film, a battery element 9 sealed with the sealing section 19b of the outer package 19, and a positive electrode tab terminal and a negative electrode tab terminal which are electrically and internally connected to the battery element 9 and are stuck out from the outer package 19 to the outside. In the battery element 9, ends 4a, 4a, ... of a positive electrode collector and ends 4b, 4b, ... of the negative electrode collector are arranged along two sides of the outer package 19 which are faced each other, and the sealing section 19b, 19b of the outer package 19 are folded down so as to be respectively overlapped on the ends 4a, 4a, ... of the positive electrode collector and the ends 4b, 4b, ... of the negative electrode collector. <P>COPYRIGHT: (C)2011,JPO&INPIT

Description

本発明は、ラミネートフィルムからなる外装体で封止されたラミネート電池に関し、特に外装体の融着部分の構造を改良してあるラミネート電池に関する。   The present invention relates to a laminate battery sealed with an exterior body made of a laminate film, and more particularly to a laminate battery in which the structure of the fused portion of the exterior body is improved.

ラミネートフィルムを外装体として用いたリチウムイオン二次電池等の二次電池は、セパレータを間に挟んだ正極と負極とを多層に重ねた積層体構造を有する電池要素を、ラミネートフィルムからなる外装体で形成されたパッケージ内に封入している。昨今の電子機器の小型化、薄型化の要請に伴って、二次電池の体積を少しでも小さくするため、互いに熱融着した外装体の周縁部を折り曲げ加工することが多い。   A secondary battery such as a lithium ion secondary battery using a laminate film as an outer package is an outer package made of a laminate film. The battery element has a laminate structure in which a positive electrode and a negative electrode with a separator interposed therebetween are stacked in layers. It is enclosed in a package formed by In response to recent demands for downsizing and thinning of electronic devices, the peripheral portions of the outer package that are heat-sealed to each other are often bent in order to reduce the volume of the secondary battery as much as possible.

特許文献1には、電池セル(電池要素)の厚みに沿ってラミネートフィルムからなる外装体の端部を折り曲げている電池が開示されている。   Patent Document 1 discloses a battery in which an end portion of an exterior body made of a laminate film is bent along the thickness of a battery cell (battery element).

特開2001−250515号公報JP 2001-250515 A

特許文献1に開示してある電池では、ラミネートフィルムからなる外装体の端部を電池の幅方向に沿って折り曲げることにより、折り曲げない状態よりは電池を収容するのに必要な幅方向の寸法を小さくすることができる。しかし、折り曲げた部分の厚み分だけ厚さ方向の寸法は大きくなることから、二次電池としての体積エネルギー密度を大きく向上させることはできないという問題点があった。   In the battery disclosed in Patent Document 1, by folding the end portion of the exterior body made of a laminate film along the width direction of the battery, the dimension in the width direction necessary to accommodate the battery is reduced compared to the state where the battery is not bent. Can be small. However, since the dimension in the thickness direction is increased by the thickness of the bent portion, there is a problem that the volume energy density as the secondary battery cannot be greatly improved.

本発明は、斯かる事情に鑑みてなされたものであり、ラミネートフィルムからなる外装体の封止部を折り曲げることにより、体積エネルギー密度を向上させることができるラミネート電池を提供することを目的とする。   This invention is made | formed in view of such a situation, and it aims at providing the laminated battery which can improve a volume energy density by bending the sealing part of the exterior body which consists of laminate films. .

上記目的を達成するために第1発明に係るラミネート電池は、ラミネートフィルムからなる外装体と、該外装体の封止部にて封止される電池要素と、該電池要素と内部で電気的に接続してあり、前記外装体から外部へ突出してある正極タブ端子及び負極タブ端子とを備える略方形のラミネート電池において、前記電池要素は、正極集電体及び負極集電体の端部が、前記外装体の対向する二辺に沿って設けてあり、前記外装体の前記封止部を、前記正極集電体及び前記負極集電体の端部に、それぞれ重なるよう折り曲げてあることを特徴とする。   In order to achieve the above object, a laminated battery according to the first invention includes an exterior body made of a laminate film, a battery element sealed by a sealing portion of the exterior body, and the battery element and the interior electrically. In a substantially rectangular laminated battery having a positive electrode tab terminal and a negative electrode tab terminal that are connected and projecting outward from the exterior body, the battery element includes end portions of the positive electrode current collector and the negative electrode current collector, It is provided along two opposite sides of the exterior body, and the sealing part of the exterior body is bent so as to overlap the end portions of the positive electrode current collector and the negative electrode current collector, respectively. And

第1発明では、ラミネートフィルムからなる外装体と、該外装体の封止部にて封止される電池要素と、該電池要素と内部で電気的に接続してあり、外装体から外部へ突出してある正極タブ端子及び負極タブ端子とを備える。電池要素の正極集電体及び負極集電体の端部は、外装体の対向する二辺に沿って設けてあり、外装体の封止部を、正極集電体及び負極集電体の端部に、それぞれ重なるよう折り曲げてある。これにより、折り曲げた外装体の封止部の厚みと正極集電体又は負極集電体の端部の厚みとを合わせても電池要素の最大厚みと同等又はそれ以下であり、電池を収容するのに必要な幅方向の寸法を小さくすることができるとともに、折り曲げた部分の厚みによって厚さ方向の寸法も大きくならず、二次電池としての体積エネルギー密度を向上させることが可能となる。   In the first invention, the exterior body made of a laminate film, the battery element sealed by the sealing portion of the exterior body, and the battery element are electrically connected inside, and project from the exterior body to the outside. A positive electrode tab terminal and a negative electrode tab terminal. The ends of the positive electrode current collector and the negative electrode current collector of the battery element are provided along two opposing sides of the outer package, and the sealing portions of the outer package are connected to the ends of the positive electrode current collector and the negative electrode current collector. It is bent to overlap each other. Thus, even when the thickness of the sealed portion of the folded outer package and the thickness of the end of the positive electrode current collector or the negative electrode current collector are combined, it is equal to or less than the maximum thickness of the battery element and accommodates the battery. In addition, the dimension in the width direction necessary for this can be reduced, and the dimension in the thickness direction is not increased by the thickness of the bent portion, so that the volume energy density of the secondary battery can be improved.

また、第2発明に係るラミネート電池は、第1発明において、前記正極タブ端子及び前記負極タブ端子は、前記外装体の対向する二辺とは異なる同一の辺側から略平行に突出してあることを特徴とする。   Moreover, in the laminated battery according to the second invention, in the first invention, the positive electrode tab terminal and the negative electrode tab terminal protrude substantially parallel from the same side different from the two opposite sides of the outer package. It is characterized by.

第2発明では、正極タブ端子及び負極タブ端子は、外装体の対向する二辺とは異なる同一の辺側から略平行に突出してある。これにより、封止部を折り曲げる場合に正極タブ端子及び負極タブ端子を折り曲げる必要がなく、封止部を正極集電体及び負極集電体の端部へ、より密着させて折り曲げることができるので、電池を収容するのに必要な幅方向の寸法をより小さくすることが可能となる。   In the second invention, the positive electrode tab terminal and the negative electrode tab terminal protrude substantially parallel from the same side different from the two opposite sides of the exterior body. This eliminates the need to bend the positive electrode tab terminal and the negative electrode tab terminal when the sealing portion is bent, and allows the sealing portion to be bent more closely to the ends of the positive electrode current collector and the negative electrode current collector. The dimension in the width direction necessary for housing the battery can be further reduced.

また、第3発明に係るラミネート電池は、第1又は第2発明において、前記封止部の端部が、前記正極集電体及び前記負極集電体の端部と、前記正極集電体及び前記負極集電体上に形成してある正極合剤及び負極合剤との境界部分近傍へ達するように、前記外装体の封止部を前記電池要素側へ折り曲げてあることを特徴とする。   Further, in the laminated battery according to the third invention, in the first or second invention, the end portion of the sealing portion includes an end portion of the positive electrode current collector and the negative electrode current collector, and the positive electrode current collector and The sealing portion of the outer package is bent to the battery element side so as to reach the vicinity of the boundary between the positive electrode mixture and the negative electrode mixture formed on the negative electrode current collector.

第3発明では、封止部の端部が、正極集電体及び負極集電体の端部と、正極集電体及び負極集電体上に形成してある正極合剤及び負極合剤との境界部分近傍へ達するように、外装体の封止部を電池要素側へ折り曲げてあることにより、折り曲げた外装体の封止部を、正極集電体又は負極集電体の端部の厚みと電池要素の最大厚みとの差で生じた段差部分に重ね合わせることができ、電池を収容するのに必要な幅方向の寸法を小さくすることができるとともに、折り曲げた部分の厚みによって厚さ方向の寸法も大きくならず、二次電池としての体積エネルギー密度を向上させることが可能となる。   In 3rd invention, the edge part of the sealing part has the edge part of a positive electrode electrical power collector and a negative electrode current collector, and the positive electrode mixture and negative electrode mixture currently formed on the positive electrode current collector and the negative electrode current collector, The thickness of the end of the positive electrode current collector or the negative electrode current collector is determined by folding the sealed portion of the outer package toward the battery element side so as to reach the vicinity of the boundary portion of the battery. And the maximum thickness of the battery element can be superimposed on the stepped portion, the width direction dimension required to accommodate the battery can be reduced, and the thickness direction depends on the thickness of the folded portion Therefore, the volume energy density of the secondary battery can be improved.

上記構成により、外装体の封止部を、正極集電体及び負極集電体の端部に、それぞれ重なるよう折り曲げることにより、折り曲げた外装体の封止部の厚みと正極集電体又は負極集電体の端部の厚みとを合わせても電池要素の最大厚みと同等又はそれ以下であり、電池を収容するのに必要な幅方向の寸法を小さくすることができるとともに、折り曲げた部分の厚みによって厚さ方向の寸法も大きくならず、二次電池としての体積エネルギー密度を向上させることが可能となる。   With the above configuration, the thickness of the sealed portion of the outer package and the positive electrode current collector or the negative electrode are folded by folding the sealed portion of the outer package so as to overlap the end portions of the positive electrode current collector and the negative electrode current collector, respectively. Even when combined with the thickness of the end of the current collector, it is equal to or less than the maximum thickness of the battery element, and the width dimension required to accommodate the battery can be reduced, and the folded portion The dimension in the thickness direction is not increased by the thickness, and the volume energy density as the secondary battery can be improved.

本発明の実施の形態に係るリチウムイオン二次電池の構成を模式的に示す平面図である。It is a top view which shows typically the structure of the lithium ion secondary battery which concerns on embodiment of this invention. 本発明の実施の形態に係るリチウムイオン二次電池の電池要素の構成を模式的に示す、図1のII−II線での断面図である。It is sectional drawing in the II-II line | wire of FIG. 1 which shows typically the structure of the battery element of the lithium ion secondary battery which concerns on embodiment of this invention. 本発明の実施の形態に係るリチウムイオン二次電池の電池要素の構成を模式的に示す平面図である。It is a top view which shows typically the structure of the battery element of the lithium ion secondary battery which concerns on embodiment of this invention. 本発明の実施の形態に係るリチウムイオン二次電池の外装体の構造を示す部分断面図である。It is a fragmentary sectional view which shows the structure of the exterior body of the lithium ion secondary battery which concerns on embodiment of this invention. 本発明の実施の形態に係るリチウムイオン二次電池の外装体の封止部を折り曲げた状態を示す部分断面図である。It is a fragmentary sectional view which shows the state which bent the sealing part of the exterior body of the lithium ion secondary battery which concerns on embodiment of this invention. 従来のリチウムイオン二次電池の外装体の封止部を折り曲げる場合の部分平面図である。It is a fragmentary top view in the case of bending the sealing part of the exterior body of the conventional lithium ion secondary battery. 本発明の実施の形態に係るリチウムイオン二次電池の外装体の封止部を折り曲げる場合の部分平面図である。It is a fragmentary top view in the case of bending the sealing part of the exterior body of the lithium ion secondary battery which concerns on embodiment of this invention.

以下、本発明の実施の形態について、図面を参照しながら詳細に説明する。なお、以下の実施の形態では、ラミネート電池として積層型のリチウムイオン二次電池を用いて説明するが、電池要素についてはリチウム二次電池、ポリマー二次電池、有機ラジカル電池、全固体電池、電気二重層キャパシタ等でも良く、特にこれに限定されるものではない。   Hereinafter, embodiments of the present invention will be described in detail with reference to the drawings. In the following embodiments, a laminate type lithium ion secondary battery will be described as a laminate battery. However, battery elements include a lithium secondary battery, a polymer secondary battery, an organic radical battery, an all-solid battery, an electric battery A double layer capacitor or the like may be used and is not particularly limited thereto.

図1は、本発明の実施の形態に係るリチウムイオン二次電池の構成を模式的に示す平面図である。図1に示すように、本実施の形態に係るリチウムイオン二次電池1は、可撓性を有する二枚のラミネートフィルムからなる外装体19の略中央に電池要素9を挟み、二枚の外装体19の周縁にある封止部19bを熱融着させることにより電池要素9を封入する。なお、外装体19は、二枚のラミネートフィルムを重ね合わせて四方の封止部19bを熱融着しても良いし、一枚のラミネートフィルムを二つ折りにして、三方の封止部19bを熱融着しても良い。   FIG. 1 is a plan view schematically showing a configuration of a lithium ion secondary battery according to an embodiment of the present invention. As shown in FIG. 1, the lithium ion secondary battery 1 according to the present embodiment has a battery element 9 sandwiched between substantially the center of an exterior body 19 made of two flexible laminate films, The battery element 9 is sealed by heat-sealing the sealing portion 19b at the periphery of the body 19. In addition, the exterior body 19 may be obtained by superimposing two laminated films and heat-sealing the four sealing portions 19b, or by folding the single laminated film in two to form the three-side sealing portions 19b. It may be heat-sealed.

本発明の実施の形態に係るリチウムイオン二次電池1は、略方形であり、外部端子と接続して充放電する正極タブ端子11a、負極タブ端子11bは、外装体19の同一辺上の両端近傍に配置されている。なお、図1では外装体19が略正方形であるが、特に限定されるものではなく、略長方形であっても良いし、略多角形であっても良い。略長方形である場合、正極タブ端子11aが配置してある一辺は、長辺側であっても良いし短辺側であっても良い。また、略多角形である場合には、角部は面取りしてあることが好ましい。   The lithium ion secondary battery 1 according to the embodiment of the present invention has a substantially rectangular shape, and the positive electrode tab terminal 11a and the negative electrode tab terminal 11b that are connected to an external terminal for charging and discharging are both ends on the same side of the exterior body 19. It is arranged in the vicinity. In addition, in FIG. 1, the exterior body 19 is substantially square, but is not particularly limited, and may be substantially rectangular or substantially polygonal. In the case of a substantially rectangular shape, the one side on which the positive electrode tab terminal 11a is arranged may be a long side or a short side. Moreover, when it is a substantially polygon, it is preferable that the corner | angular part is chamfered.

図2は、本発明の実施の形態に係るリチウムイオン二次電池1の電池要素9の構成を模式的に示す、図1のII−II線での断面図である。図2に示すように、本発明の実施の形態に係るリチウムイオン二次電池1の電池要素9は、正極集電体211上に正極合剤212、212が積層されてなる正極板21、負極集電体221上に負極合剤222、222が積層されてなる負極板22及びこれらの間に介装されたセパレータ23を備えている。なお、図示していないが外装体19の内部には電解液が注液されており、正極板21、負極板22、及びセパレータ23が浸漬している。   FIG. 2 is a cross-sectional view taken along line II-II in FIG. 1, schematically showing the configuration of the battery element 9 of the lithium ion secondary battery 1 according to the embodiment of the present invention. As shown in FIG. 2, the battery element 9 of the lithium ion secondary battery 1 according to the embodiment of the present invention includes a positive electrode plate 21 in which positive electrode mixtures 212 and 212 are laminated on a positive electrode current collector 211, a negative electrode A negative electrode plate 22 in which negative electrode mixtures 222 and 222 are laminated on a current collector 221 and a separator 23 interposed therebetween are provided. In addition, although not shown in figure, the electrolyte solution is inject | poured inside the exterior body 19, and the positive electrode plate 21, the negative electrode plate 22, and the separator 23 are immersed.

正極板21又は負極板22は、それぞれ正極集電体211又は負極集電体221を芯材としてその両面又は片面に正極活物質又は負極活物質を正極合剤212又は負極合剤222として積層したものである。正極板21に用いる正極集電体211には、アルミニウム、ステンレス、ニッケル等の金属箔を使用することができ、アルミニウムが特に好ましい。また、負極板22に用いる負極集電体221には、銅、ステンレス、ニッケル等の金属箔を使用することができ、銅が特に好ましい。   The positive electrode plate 21 or the negative electrode plate 22 is formed by laminating the positive electrode active material or the negative electrode active material as the positive electrode mixture 212 or the negative electrode mixture 222 on both surfaces or one surface of the positive electrode current collector 211 or the negative electrode current collector 221, respectively. Is. For the positive electrode current collector 211 used for the positive electrode plate 21, a metal foil such as aluminum, stainless steel, or nickel can be used, and aluminum is particularly preferable. Moreover, metal foil, such as copper, stainless steel, nickel, can be used for the negative electrode collector 221 used for the negative electrode plate 22, and copper is particularly preferable.

正極合剤212に用いる正極活物質としては、コバルト酸リチウム複合酸化物(LCO)、マンガン酸リチウム複合酸化物(LMO)、ニッケル酸リチウム複合酸化物(LNO)、リチウム−ニッケル−マンガン−コバルト複合酸化物(LNMCO)、リチウム−マンガン−ニッケル複合酸化物(LMNO)、リチウム−マンガン−コバルト複合酸化物(LMCO)、リチウム−ニッケル−コバルト複合酸化物(LNCO)等を用いることができる。また、正極活物質は上記の材料を混合したものであっても良い。正極活物質は、LiFePO4 といったオリビン系材料であっても良い。負極合剤222に用いる負極活物質としては、グラファイト、ハードカーボン、ソフトカーボン等の炭素材料、チタン酸リチウムのようなセラミック、Si、Sn等の合金系材料を用いることができる。また、負極活物質は上記の材料を混合したものであっても良い。 Examples of the positive electrode active material used for the positive electrode mixture 212 include lithium cobaltate composite oxide (LCO), lithium manganate composite oxide (LMO), lithium nickelate composite oxide (LNO), and lithium-nickel-manganese-cobalt composite. An oxide (LNMCO), a lithium-manganese-nickel composite oxide (LMNO), a lithium-manganese-cobalt composite oxide (LMCO), a lithium-nickel-cobalt composite oxide (LNCO), or the like can be used. The positive electrode active material may be a mixture of the above materials. The positive electrode active material may be an olivine-based material such as LiFePO 4 . As the negative electrode active material used for the negative electrode mixture 222, carbon materials such as graphite, hard carbon, and soft carbon, ceramics such as lithium titanate, and alloy materials such as Si and Sn can be used. The negative electrode active material may be a mixture of the above materials.

セパレータ23としては、ポリオレフィン系樹脂のような公知材料であれば足り、特に限定されるものではない。なお、本発明においては、セパレータは、その名称によって限定されるべきものではなく、セパレータの代わりにセパレータとしての機能(役割)を有する固体電解質、ゲル状電解質等を用いても良い。また、アルミナ、ジルコニア等の無機材料を含有させたセパレータを用いても良い。   The separator 23 is not particularly limited as long as it is a known material such as a polyolefin resin. In the present invention, the separator is not limited by its name, and instead of the separator, a solid electrolyte having a function (role) as a separator, a gel electrolyte, or the like may be used. A separator containing an inorganic material such as alumina or zirconia may also be used.

なお、電解液としては、エチレンカーボネート(EC)、プロピレンカーボネート(PC)等の環状カーボネート、ジエチルカーボネート(DEC)、ジメチルカーボネート(DMC)等の鎖状カーボネートを単独又は2種類以上組み合わせて用いることができる。さらに、ギ酸メチル、ギ酸エチル、メチルアセテート、エチルアセテート等の鎖状エステル系、γーブチロラクトン等の環状エステル系、スルホラン等の環状スルホン系が含まれていても良い。   As the electrolytic solution, cyclic carbonates such as ethylene carbonate (EC) and propylene carbonate (PC), and chain carbonates such as diethyl carbonate (DEC) and dimethyl carbonate (DMC) may be used alone or in combination of two or more. it can. Furthermore, chain ester systems such as methyl formate, ethyl formate, methyl acetate, and ethyl acetate, cyclic ester systems such as γ-butyrolactone, and cyclic sulfones such as sulfolane may be included.

図3は、本発明の実施の形態に係るリチウムイオン二次電池1の電池要素9の構成を模式的に示す平面図である。電池要素9は、図2に示すように、複数の正極板21と負極板22とを、セパレータ23を介して交互に積層することにより形成されている。正極板21、負極板22それぞれの正極集電体の端部(以下、正極集電体の非塗工部、すなわち正極集電体において正極合剤が塗工されていない部分を指す)4a、負極集電体の端部(以下、負極集電体の非塗工部、すなわち負極集電体において負極合剤が塗工されていない部分を指す)4bは、それぞれ電池要素9の異なる両端側、すなわち図1に示す外装体19の四辺において、正極タブ端子11a及び負極タブ端子11bが突出していない、対向する二辺に沿って設けてあり、複数の正極集電体の非塗工部4a、4a、・・・、負極集電体の非塗工部4b、4b、・・・は、それぞれ集約されるとともに正極タブ端子11a、負極タブ端子11bと超音波溶着等により電気的に接続されている。なお、図2では短冊状の複数の正極板21、負極板22及びセパレータ23を積層してなる積層構造を有しているが、長尺状の正極板、セパレータ及び負極板を巻回してなる巻回構造であっても良い。巻回構造においても正極集電体の非塗工部4a、4a、・・・及び負極集電体の非塗工部4b、4b、・・・をそれぞれ反対側に引き出すことにより、積層構造である場合と同様に正極タブ端子11a、負極タブ端子11bと接続することが可能である。   FIG. 3 is a plan view schematically showing the configuration of the battery element 9 of the lithium ion secondary battery 1 according to the embodiment of the present invention. As shown in FIG. 2, the battery element 9 is formed by alternately laminating a plurality of positive plates 21 and negative plates 22 with separators 23 interposed therebetween. Ends of the positive electrode current collector of each of the positive electrode plate 21 and the negative electrode plate 22 (hereinafter referred to as a non-coated portion of the positive electrode current collector, that is, a portion where the positive electrode mixture is not applied in the positive electrode current collector) 4a, The end portions of the negative electrode current collector (hereinafter referred to as the non-coated portion of the negative electrode current collector, that is, the portion where the negative electrode mixture is not applied in the negative electrode current collector) 4b are respectively different end sides of the battery element 9 That is, in the four sides of the exterior body 19 shown in FIG. 1, the positive electrode tab terminal 11a and the negative electrode tab terminal 11b do not protrude and are provided along two opposing sides, and a plurality of positive electrode collector non-coated portions 4a. 4a,..., The non-coated portions 4b, 4b,... Of the negative electrode current collector are aggregated and electrically connected to the positive electrode tab terminal 11a and the negative electrode tab terminal 11b by ultrasonic welding or the like. ing. In addition, in FIG. 2, it has a laminated structure formed by laminating a plurality of strip-shaped positive electrode plates 21, negative electrode plates 22 and separators 23, but is formed by winding a long positive electrode plate, separators and negative electrode plates. A winding structure may be used. In the winding structure, the non-coated portions 4a, 4a,... Of the positive electrode current collector and the non-coated portions 4b, 4b,. It is possible to connect with the positive electrode tab terminal 11a and the negative electrode tab terminal 11b similarly to a certain case.

電池要素9は、電池の高容量化を図るために複数の正極集電体及び負極集電体を積層してあるので、正極集電体の非塗工部4a、4a、・・・及び負極集電体の非塗工部4b、4b、・・・は、それぞれ束ねられて電池要素9の一方の面、例えば下面側へ寄せることができる。この状態で、正極集電体の非塗工部4a、4a、・・・及び負極集電体の非塗工部4b、4b、・・・と略直交する正極タブ端子11a及び負極タブ端子11b(図1参照)と電気的に接続して、リチウムイオン二次電池1の外部へ引き出している。したがって、電池要素9は、複数の集電体が積層されている部分の厚みと正極集電体の非塗工部4a、4a、・・・及び負極集電体の非塗工部4b、4b、・・・を束ねている部分の厚みとの間で段差が生じている。本発明は、斯かる段差を利用して、封止部19bを電池要素9側へ折り曲げて段差に嵌入することで折り曲げた時点での電池全体の体積増大を回避するものである。   Since the battery element 9 is formed by laminating a plurality of positive electrode current collectors and negative electrode current collectors in order to increase the capacity of the battery, the non-coated portions 4a, 4a,. The non-coated portions 4b, 4b,... Of the current collector can be bundled and brought to one surface of the battery element 9, for example, the lower surface side. In this state, the positive electrode tab terminal 11a and the negative electrode tab terminal 11b substantially orthogonal to the non-coated parts 4a, 4a,... Of the positive electrode current collector and the non-coated parts 4b, 4b,. (See FIG. 1) and electrically connected to the lithium ion secondary battery 1. Therefore, the battery element 9 includes a thickness of a portion where a plurality of current collectors are stacked, a non-coated portion 4a, 4a of the positive electrode current collector, and a non-coated portion 4b, 4b of the negative electrode current collector. A step is generated between the thicknesses of the portions where the. The present invention avoids an increase in the volume of the entire battery at the time when the sealing part 19b is bent toward the battery element 9 side and fitted into the step by using such a step.

なお、外装体の材料としては、アルミニウム、ニッケルメッキをした鉄、銅等の金属、合成樹脂等を用いることができるが、金属と合成樹脂とが積層されたラミネート状の複合材(以下、ラミネートフィルムという)を用いることが好ましい。ラミネートフィルムを用いることにより、電池全体の薄膜化・軽量化を図ることができる。   As the material of the exterior body, aluminum, nickel-plated iron, copper and other metals, synthetic resins, etc. can be used, but a laminated composite material (hereinafter referred to as laminate) in which metal and synthetic resin are laminated. It is preferable to use a film). By using a laminate film, the entire battery can be made thinner and lighter.

図4は、本発明の実施の形態に係るリチウムイオン二次電池1の外装体の構造を示す部分断面図である。図4(a)に示すように、外装体19として用いるラミネートフィルムは、中間層である金属層30の外側に外面層となる合成樹脂層31を設けると共に、金属層30の内側に内面層となる合成樹脂層32を積層した三層構造体であっても良い。   FIG. 4 is a partial cross-sectional view showing the structure of the exterior body of the lithium ion secondary battery 1 according to the embodiment of the present invention. As shown in FIG. 4A, the laminate film used as the exterior body 19 is provided with a synthetic resin layer 31 as an outer surface layer on the outer side of the metal layer 30 that is an intermediate layer, and with an inner surface layer on the inner side of the metal layer 30. A three-layer structure in which synthetic resin layers 32 are stacked may be used.

この場合、合成樹脂層31は、ポリエチレン、ポリプロピレン、変性ポリオレフィン、アイオノマー、非晶性ポリオレフィン、ポリエチレンテレフタレート、ポリアミド等耐薬品性、機械的強度に優れた合成樹脂を用いることが望ましい。また、合成樹脂層32は、耐薬品性の合成樹脂が望ましく、例えばポリエチレン、ポリプロピレン、変性ポリオレフィン、アイオノマー、エチレン−酢酸ビニル共重合体等を用いることが好ましい。   In this case, the synthetic resin layer 31 is desirably made of a synthetic resin excellent in chemical resistance and mechanical strength, such as polyethylene, polypropylene, modified polyolefin, ionomer, amorphous polyolefin, polyethylene terephthalate, and polyamide. The synthetic resin layer 32 is preferably a chemical-resistant synthetic resin, and for example, polyethylene, polypropylene, modified polyolefin, ionomer, ethylene-vinyl acetate copolymer, or the like is preferably used.

また、図4(b)に示すように、外装体19として用いるラミネートフィルムは、外面層である金属層30と内面層である合成樹脂層31とを積層した二層構造体であっても良い。金属層30は、水分の浸入の防止又は形状保持を目的としている。金属層30は、アルミニウム、鉄、銅、ニッケル、チタン、モリブデン、金等の単体金属、ステンレス、ハステロイ等の合金又は酸化アルミニウム等の金属酸化物を用いることができ、加工性の優れたアルミニウムが特に好ましい。   As shown in FIG. 4B, the laminate film used as the exterior body 19 may be a two-layer structure in which a metal layer 30 that is an outer surface layer and a synthetic resin layer 31 that is an inner surface layer are stacked. . The metal layer 30 is intended to prevent moisture from entering or maintain its shape. The metal layer 30 may be made of a single metal such as aluminum, iron, copper, nickel, titanium, molybdenum, gold, an alloy such as stainless steel or hastelloy, or a metal oxide such as aluminum oxide. Particularly preferred.

合成樹脂層31は、電池の保護、電解質による腐食の防止、金属層30と電池要素9等との接触の防止、金属層30の保護等を目的としている。合成樹脂層31は、ヒートシール性に優れた熱可塑性樹脂である変性ポリプロピレンである。なお、ポリエチレン、ポリスチレン、ポリアミド、アイオノマー等の樹脂であっても良い。   The purpose of the synthetic resin layer 31 is to protect the battery, prevent corrosion due to the electrolyte, prevent contact between the metal layer 30 and the battery element 9, protect the metal layer 30, and the like. The synthetic resin layer 31 is a modified polypropylene which is a thermoplastic resin excellent in heat sealability. A resin such as polyethylene, polystyrene, polyamide, or ionomer may be used.

図5は、本発明の実施の形態に係るリチウムイオン二次電池1の外装体19の封止部19bを折り曲げた状態を示す部分断面図である。図5(a)は、外装体19の封止部19bを折り曲げる前の状態を示す部分断面図であり、図5(b)は、外装体19の封止部19bを折り曲げた後の状態を示す部分断面図である。外装体19の封止部19bを折り曲げる前に、電池要素9を上下から挟むようにラミネートフィルムからなる外装体19を配置し、周縁部を熱融着することにより封止部19bを電池要素9の四方に形成してある。   FIG. 5 is a partial cross-sectional view showing a state where the sealing portion 19b of the exterior body 19 of the lithium ion secondary battery 1 according to the embodiment of the present invention is bent. FIG. 5A is a partial cross-sectional view showing a state before the sealing portion 19b of the exterior body 19 is bent, and FIG. 5B shows a state after the sealing portion 19b of the exterior body 19 is bent. It is a fragmentary sectional view shown. Before the sealing portion 19b of the outer casing 19 is bent, the outer casing 19 made of a laminate film is disposed so as to sandwich the battery element 9 from above and below, and the peripheral portion is heat-sealed to thereby fix the sealing portion 19b to the battery element 9. It is formed on all four sides.

電池要素9には、正極板21、21、・・・、負極板22、22、・・・及びセパレータ23、23、・・・が積層されている部分の厚みD1と、正極集電体の非塗工部4a、4a、・・・及び負極集電体の非塗工部4b、4b、・・・を束ねている部分の厚みD2との間に段差D3が生じており、封止部19bを斯かる段差に重ね合わせるよう、封止部19bを電池要素9側へ折り曲げる。これにより、リチウムイオン二次電池1の正極集電体の非塗工部4a、4a、・・・及び負極集電体の非塗工部4b、4b、・・・の引き出し方向の幅を最小限にすることができる。そして、段差D3が、外装体19の封止部19bの厚みD4よりも大きい場合には、封止部19bを電池要素9側へ折り曲げた場合であっても、電池要素9全体の厚みはD1を超えることがないので、リチウムイオン二次電池1の厚みを増大させることもない。このとき封止部19bの端部は、正極集電体の非塗工部4a及び負極集電体の非塗工部4bと、電池要素9の正極板21、負極板22のそれぞれの集電体上に形成してある正極合剤、負極合剤との境界部分近傍に達するように折り曲げられている。   In the battery element 9, the thickness D1 of the portion where the positive plates 21, 21,..., The negative plates 22, 22,. A step D3 occurs between the non-coated portions 4a, 4a,... And the thickness D2 of the portion where the non-coated portions 4b, 4b,. The sealing portion 19b is bent toward the battery element 9 so that 19b overlaps the step. This minimizes the width in the lead-out direction of the non-coated portions 4a, 4a,... Of the positive electrode current collector of the lithium ion secondary battery 1 and the non-coated portions 4b, 4b,. Can be limited. And when the level | step difference D3 is larger than the thickness D4 of the sealing part 19b of the exterior body 19, even if it is a case where the sealing part 19b is bent to the battery element 9 side, the thickness of the battery element 9 whole is D1. Therefore, the thickness of the lithium ion secondary battery 1 is not increased. At this time, the end portions of the sealing portion 19b are respectively connected to the current collectors of the non-coated portion 4a of the positive electrode current collector and the non-coated portion 4b of the negative electrode current collector, and the positive electrode plate 21 and the negative electrode plate 22 of the battery element 9. It is bent so as to reach the vicinity of the boundary between the positive electrode mixture and the negative electrode mixture formed on the body.

図6は、従来のリチウムイオン二次電池1の外装体19の封止部19bを折り曲げる場合の部分平面図である。図6(a)は、外装体19の封止部19bを折り曲げる前の状態を、図6(b)は、外装体19の封止部19bを折り曲げた後の状態を、それぞれ示している。   FIG. 6 is a partial plan view when the sealing portion 19b of the exterior body 19 of the conventional lithium ion secondary battery 1 is bent. 6A shows a state before the sealing portion 19b of the outer body 19 is bent, and FIG. 6B shows a state after the sealing portion 19b of the outer body 19 is bent.

図6(a)に示すように、外装体19の封止部19bを折り曲げる前の状態では、リチウムイオン二次電池の幅(電池要素9の幅と正極集電体の非塗工部4a、4a、・・・及び負極集電体の非塗工部4b、4b、・・・が引き出されている長さとの和)L1を200mmとし、両端の封止部19b、19bの幅L3、L3をそれぞれ10mmとする。したがって、外装体19の封止部19bを折り曲げる前の状態では、全幅L2は220mmとなる。   As shown in FIG. 6A, in the state before the sealing portion 19b of the outer package 19 is bent, the width of the lithium ion secondary battery (the width of the battery element 9 and the non-coated portion 4a of the positive electrode current collector, 4a,..., And the length of the non-coated portions 4b, 4b,... Of the negative electrode current collector) L1 is 200 mm, and the widths L3, L3 of the sealing portions 19b, 19b at both ends Are each 10 mm. Therefore, in a state before the sealing portion 19b of the exterior body 19 is bent, the full width L2 is 220 mm.

従来は、両端の封止部19b、19bのそれぞれ略中央にて、封止部19b、19bのみを折り曲げていた。したがって、図6(b)に示すように、折り曲げた封止部19b、19bの幅L4がそれぞれ5mmとなり、全幅L5は210mmまで短縮することができた。   Conventionally, only the sealing portions 19b and 19b are bent at substantially the center of the sealing portions 19b and 19b at both ends. Therefore, as shown in FIG. 6B, the width L4 of the folded sealing portions 19b and 19b is 5 mm, and the total width L5 can be reduced to 210 mm.

図7は、本発明の実施の形態に係るリチウムイオン二次電池1の外装体19の封止部19bを折り曲げる場合の部分平面図である。図7(a)は、外装体19の封止部19bを折り曲げる前の状態を、図7(b)は、外装体19の封止部19bを折り曲げた後の状態を、それぞれ示している。   FIG. 7 is a partial plan view when the sealing portion 19b of the exterior body 19 of the lithium ion secondary battery 1 according to the embodiment of the present invention is bent. FIG. 7A shows a state before the sealing portion 19b of the exterior body 19 is bent, and FIG. 7B shows a state after the sealing portion 19b of the exterior body 19 is bent.

図7(a)に示すように、外装体19の封止部19bを折り曲げる前の状態では、図6(a)と同様、リチウムイオン二次電池の幅L1を200mmとし、両端の封止部19b、19bの幅L3、L3をそれぞれ10mmとしている。したがって、外装体19の封止部19bを折り曲げる前の状態では、全幅L2は220mmとなる。   As shown in FIG. 7A, in a state before the sealing portion 19b of the outer package 19 is bent, the width L1 of the lithium ion secondary battery is set to 200 mm as in FIG. The widths L3 and L3 of 19b and 19b are 10 mm, respectively. Therefore, in a state before the sealing portion 19b of the exterior body 19 is bent, the full width L2 is 220 mm.

しかし、電池要素9の両端の正極集電体の非塗工部4a、4a、・・・及び負極集電体の非塗工部極4b、4b、・・・を束ねている部分は、正極板21、21、・・・、負極板22、22、・・・及びセパレータ23、23、・・・が積層されている部分の厚みに比べて薄くなっているので、両端の封止部19b、19bを従来よりも大きな幅で電池要素9側へ折り曲げることができる。例えば電池要素9と封止部19b、19bの両端位置との境界から、電池要素9側へ幅L6、L6だけ厚みに段差が生じている場合、両端の封止部19b、19bが斯かる段差に重ね合わせるよう、両端の封止部19b、19bは、(式1)で算出される電池要素9の両端位置から距離L7だけ外側の位置にて折り曲げることができる。   However, the portion where the non-coated portions 4a, 4a,... Of the positive electrode current collector and the non-coated portion electrodes 4b, 4b,. Since the plates 21, 21,..., The negative plates 22, 22,... And the separators 23, 23,. , 19b can be bent to the battery element 9 side with a larger width than before. For example, when there is a step in thickness L6 and L6 on the battery element 9 side from the boundary between the battery element 9 and the both end positions of the sealing portions 19b and 19b, the sealing portions 19b and 19b at both ends have such a step. The sealing portions 19b, 19b at both ends can be bent at a position outside by a distance L7 from the both end positions of the battery element 9 calculated by (Equation 1).

L7=(L3−L6)/2 ・・・(式1)   L7 = (L3-L6) / 2 (Formula 1)

段差が生じている部分の幅を示すL6が6mmである場合、(式1)に基づいて電池要素9の両端位置からの折り曲げ位置までの幅を示すL7を2mmと算出することができる。したがって、両端の封止部19b、19bは、電池要素9の両端位置から2mm外側の位置にて電池要素9側へ折り曲げることができる。   When L6 indicating the width of the stepped portion is 6 mm, L7 indicating the width from the both end positions of the battery element 9 to the bending position can be calculated as 2 mm based on (Equation 1). Therefore, the sealing portions 19b, 19b at both ends can be bent toward the battery element 9 at a position 2 mm outside from both end positions of the battery element 9.

具体的には、図7(b)に示すように、折り曲げた封止部19b、19bの幅L8がそれぞれ8mmとなり、全幅L9は204mmまで短縮することができ、従来の折り曲げ方の場合と比べて6mmサイズを縮小することができる。   Specifically, as shown in FIG. 7B, the width L8 of each of the folded sealing portions 19b and 19b is 8 mm, and the total width L9 can be reduced to 204 mm, which is compared with the conventional bending method. 6mm size can be reduced.

以上のように本実施の形態によれば、外装体19を封止した封止部19bを、正極集電体の非塗工部4a、4a、・・・及び負極集電体の非塗工部4b、4b、・・・に重なるよう折り曲げることにより、折り曲げた封止部19bを含む外装体19の厚みと正極集電体の非塗工部4a、4a、・・・又は負極集電体の非塗工部4b、4b、・・・を束ねている部分の厚みとを合わせても電池要素9の最大厚みと同等又はそれ以下であり、電池を収容するのに必要な寸法を小さくすることができるとともに、厚み方向にも電池全体の寸法が増大することがなく、リチウムイオン二次電池としての体積エネルギー密度が低下しないラミネート電池を提供することが可能となる。   As described above, according to the present embodiment, the sealing portion 19b that seals the exterior body 19 is not coated with the non-coated portions 4a, 4a,. The thickness of the outer casing 19 including the bent sealing portion 19b and the non-coated portion 4a, 4a,... Of the positive electrode current collector or the negative electrode current collector by being bent so as to overlap the portions 4b, 4b,. Even when combined with the thickness of the portion where the non-coated portions 4b, 4b,... In addition, it is possible to provide a laminated battery in which the overall battery size does not increase in the thickness direction and the volume energy density as a lithium ion secondary battery does not decrease.

なお、正極タブ端子11a及び負極タブ端子11bは、正極集電体の非塗工部4a、4a、・・・及び負極集電体の非塗工部4b、4b、・・・がそれぞれ引き出されている方向と略直交する方向の同一辺側へ引き出してあるので、封止部19b、19bを折り曲げる場合に正極集電体の非塗工部4a、4a、・・・及び負極集電体の非塗工部4b、4b、・・・を折り曲げる必要がなく、封止部19b、19bを正極集電体の非塗工部4a、4a、・・・及び負極集電体の非塗工部4b、4b、・・・に対して、より密着させて折り曲げることができる。したがって、電池全体の体積をより小さくすることが可能となる。   The positive electrode tab terminal 11a and the negative electrode tab terminal 11b are drawn out from the non-coated portions 4a, 4a,... Of the positive electrode current collector and the non-coated portions 4b, 4b,. Are pulled out to the same side in a direction substantially perpendicular to the direction in which the sealing member 19b, 19b is bent, the uncoated portions 4a, 4a,... Of the positive electrode current collector and the negative electrode current collector There is no need to bend the non-coated parts 4b, 4b,... And the sealing parts 19b, 19b are non-coated parts 4a, 4a,... Of the positive electrode current collector and the non-coated parts of the negative electrode current collector. 4b, 4b,... Can be bent more closely. Therefore, the volume of the entire battery can be further reduced.

また、封止部19b、19bの端部が、正極集電体の非塗工部4a、4a、・・・及び負極集電体の非塗工部4b、4b、・・・と電池要素9との接続部分近傍へ可能な限り近づくよう、外装体19の封止部19b、19bを電池要素9側へ折り曲げることが好ましい。電池を収容するのに必要な表面積を最小限にすることができるからである。   Further, the end portions of the sealing portions 19b and 19b are the non-coated portions 4a, 4a,... Of the positive electrode current collector and the non-coated portions 4b, 4b,. It is preferable that the sealing portions 19b and 19b of the outer package 19 be bent toward the battery element 9 so as to be as close as possible to the vicinity of the connection portion. This is because the surface area required to accommodate the battery can be minimized.

その他、本発明は上記実施例に限定されるものではなく、本発明の趣旨の範囲内であれば多種の変形、置換等が可能であることは言うまでもない。例えば封止部19b、19bの幅を可能な限り小さくしておき、正極集電体の非塗工部4a、4a、・・・及び負極集電体の非塗工部4b、4b、・・・とともに折り曲げるようにしても良い。この場合、正極タブ端子11a及び負極タブ端子11bを、正極集電体の非塗工部4a、4a、・・・及び負極集電体の非塗工部4b、4b、・・・の先端部分又は電池要素9近傍に接続しておくことで、正極タブ端子11a及び負極タブ端子11bを折り曲げる必要はない。斯かる構成であっても、電池を収容するのに必要な寸法を小さくすることができるとともに、厚み方向にも電池全体の体積が増大することがなく、二次電池としての体積エネルギー密度が低下しないラミネート電池を提供することが可能となる。   In addition, the present invention is not limited to the above-described embodiments, and it goes without saying that various modifications and substitutions are possible within the scope of the gist of the present invention. For example, the width of the sealing portions 19b, 19b is made as small as possible, and the non-coated portions 4a, 4a,... Of the positive electrode current collector and the non-coated portions 4b, 4b,. -It may be bent together. In this case, the positive electrode tab terminal 11a and the negative electrode tab terminal 11b are connected to the tip portions of the non-coated portions 4a, 4a,... Of the positive electrode current collector and the non-coated portions 4b, 4b,. Or it is not necessary to bend the positive electrode tab terminal 11a and the negative electrode tab terminal 11b by connecting in the battery element 9 vicinity. Even with such a configuration, the size required to accommodate the battery can be reduced, the volume of the entire battery is not increased in the thickness direction, and the volume energy density as a secondary battery is reduced. It becomes possible to provide a laminate battery that does not.

4a 正極集電体の端部(非塗工部)
4b 負極集電体の端部(非塗工部)
9 電池要素
11a 正極タブ端子
11b 負極タブ端子
19 外装体
19b 封止部
21 正極板
22 負極板
23 セパレータ
4a End of positive electrode current collector (non-coated part)
4b End of negative electrode current collector (non-coated part)
DESCRIPTION OF SYMBOLS 9 Battery element 11a Positive electrode tab terminal 11b Negative electrode tab terminal 19 Exterior body 19b Sealing part 21 Positive electrode plate 22 Negative electrode plate 23 Separator

Claims (3)

ラミネートフィルムからなる外装体と、該外装体の封止部にて封止される電池要素と、該電池要素と内部で電気的に接続してあり、前記外装体から外部へ突出してある正極タブ端子及び負極タブ端子とを備える略方形のラミネート電池において、
前記電池要素は、正極集電体及び負極集電体の端部が、前記外装体の対向する二辺に沿って設けてあり、
前記外装体の前記封止部を、前記正極集電体及び前記負極集電体の端部に、それぞれ重なるよう折り曲げてあることを特徴とするラミネート電池。
A package body made of a laminate film, a battery element sealed by a sealing portion of the package body, and a positive electrode tab that is electrically connected to the battery element inside and protrudes outside from the package body In a substantially square laminated battery comprising a terminal and a negative electrode tab terminal,
In the battery element, the ends of the positive electrode current collector and the negative electrode current collector are provided along two opposing sides of the exterior body,
The laminated battery, wherein the sealing portion of the outer package is bent so as to overlap the end portions of the positive electrode current collector and the negative electrode current collector, respectively.
前記正極タブ端子及び前記負極タブ端子は、前記外装体の対向する二辺とは異なる同一の辺側から略平行に突出してあることを特徴とする請求項1記載のラミネート電池。   The laminate battery according to claim 1, wherein the positive electrode tab terminal and the negative electrode tab terminal protrude substantially in parallel from the same side different from the two opposite sides of the outer package. 前記封止部の端部が、前記正極集電体及び前記負極集電体の端部と、前記正極集電体及び前記負極集電体上に形成してある正極合剤及び負極合剤との境界部分近傍へ達するように、前記外装体の封止部を前記電池要素側へ折り曲げてあることを特徴とする請求項1又は2記載のラミネート電池。   End portions of the sealing portion are formed on the positive electrode current collector and the negative electrode current collector, and on the positive electrode current collector and the negative electrode current collector. The laminated battery according to claim 1 or 2, wherein the sealing portion of the outer package is bent toward the battery element side so as to reach the vicinity of the boundary portion.
JP2009221780A 2009-09-28 2009-09-28 Laminated battery Pending JP2011070977A (en)

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