JP6060684B2 - 太陽電池モジュールの製造方法 - Google Patents
太陽電池モジュールの製造方法 Download PDFInfo
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- JP6060684B2 JP6060684B2 JP2012554714A JP2012554714A JP6060684B2 JP 6060684 B2 JP6060684 B2 JP 6060684B2 JP 2012554714 A JP2012554714 A JP 2012554714A JP 2012554714 A JP2012554714 A JP 2012554714A JP 6060684 B2 JP6060684 B2 JP 6060684B2
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- Prior art keywords
- solar cell
- adhesive composition
- cell module
- wiring member
- conductive adhesive
- Prior art date
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- 238000012546 transfer Methods 0.000 description 1
- KEROTHRUZYBWCY-UHFFFAOYSA-N tridecyl 2-methylprop-2-enoate Chemical compound CCCCCCCCCCCCCOC(=O)C(C)=C KEROTHRUZYBWCY-UHFFFAOYSA-N 0.000 description 1
- XOALFFJGWSCQEO-UHFFFAOYSA-N tridecyl prop-2-enoate Chemical compound CCCCCCCCCCCCCOC(=O)C=C XOALFFJGWSCQEO-UHFFFAOYSA-N 0.000 description 1
- BPSIOYPQMFLKFR-UHFFFAOYSA-N trimethoxy-[3-(oxiran-2-ylmethoxy)propyl]silane Chemical compound CO[Si](OC)(OC)CCCOCC1CO1 BPSIOYPQMFLKFR-UHFFFAOYSA-N 0.000 description 1
- YUYCVXFAYWRXLS-UHFFFAOYSA-N trimethoxysilane Chemical compound CO[SiH](OC)OC YUYCVXFAYWRXLS-UHFFFAOYSA-N 0.000 description 1
- 238000009849 vacuum degassing Methods 0.000 description 1
- 125000000391 vinyl group Chemical group [H]C([*])=C([H])[H] 0.000 description 1
- 229920002554 vinyl polymer Polymers 0.000 description 1
- 238000010792 warming Methods 0.000 description 1
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B32—LAYERED PRODUCTS
- B32B—LAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
- B32B17/00—Layered products essentially comprising sheet glass, or glass, slag, or like fibres
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- B—PERFORMING OPERATIONS; TRANSPORTING
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- B32B17/10807—Making laminated safety glass or glazing; Apparatus therefor
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- H01L31/04—Semiconductor devices sensitive to infrared radiation, light, electromagnetic radiation of shorter wavelength or corpuscular radiation and specially adapted either for the conversion of the energy of such radiation into electrical energy or for the control of electrical energy by such radiation; Processes or apparatus specially adapted for the manufacture or treatment thereof or of parts thereof; Details thereof adapted as photovoltaic [PV] conversion devices
- H01L31/042—PV modules or arrays of single PV cells
- H01L31/05—Electrical interconnection means between PV cells inside the PV module, e.g. series connection of PV cells
- H01L31/0504—Electrical interconnection means between PV cells inside the PV module, e.g. series connection of PV cells specially adapted for series or parallel connection of solar cells in a module
- H01L31/0512—Electrical interconnection means between PV cells inside the PV module, e.g. series connection of PV cells specially adapted for series or parallel connection of solar cells in a module made of a particular material or composition of materials
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Description
本実施形態の太陽電池モジュールの製造方法について図を用いて説明する。図1は、本実施形態の太陽電池モジュールの製造方法により製造される太陽電池モジュールの要部を示す模式図であり、複数の太陽電池セルが相互に配線接続された構造の概略を一つの例として示している。図1(a)は表面側から、図1(b)は裏面側から、図1(c)は側面側から見た太陽電池モジュールを示す図である。
本実施形態の太陽電池の製造方法に用いられる導電性接着剤組成物は、(a)導電性粒子、(b)熱硬化性樹脂及び(c)フラックス活性剤を含有する。
YDF−170(ビスフェノールF型エポキシ樹脂、エポキシ当量=170、東都化成(株)製、商品名)25.2質量部と、2PZ−CN(四国化成(株)製、1−シアノエチル−2−フェニルイミダゾールの商品名)1.3質量部と、BHPA(2,2−ビス(ヒドロキシメチル)プロピオン酸)3.5質量部とを混合し、3本ロールを3回通して導電性接着剤組成物の接着剤成分を調製した。
樹脂組成及び配合比を表1に示すものとした他は上記配合例1と同様にして、導電性接着剤組成物を得た。なお、表1に示した材料の詳細は以下のとおりである。また、表1中の各材料の配合割合の単位は質量部である。
TETRAD−X:アミン型エポキシ樹脂、三菱瓦斯化学(株)製商品名
SR−349:ビスフェノールAジアクリレート、サートマー社製商品名
BHPA:2,2−ビス(ヒドロキシメチル)プロピオン酸、東京化成工業(株)製
BHBA:2,2−ビス(ヒドロキシメチル)ブタン酸、東京化成工業(株)社製
Sn42−Bi57−Ag1はんだ:融点139℃
Sn96.5−Ag3−Cu0.5はんだ:融点217℃
Sn95−Ag5:融点221〜240℃
TCG−1:銀粉、徳力化学研究所製、商品名、融点960℃以上
MA05K:AgめっきCu粉、日立化成工業(株)製、商品名、融点800℃以上
実施例1〜3、実施例6〜10、比較例1〜7並びに参考例4及び5について図2〜4を用いて説明する。表1に示す組成で配合した導電性接着剤組成物(配合例1〜9)を、太陽電池セル6(125mm×125mm、厚さ210μm)の受光面上に形成された表面電極3a(材質:銀ガラスペースト、2mm×125mm)上にディスペンサー(武蔵エンジニアリング(株)製、ML−606X)を用いて幅0.25mm×長さ122mmに塗布した(図2(a)、工程1)。配線部材4aとしてはんだ被覆タブ線(日立電線(株)製、商品名:A−TPS)を、導電性接着剤組成物を挟んで表面電極3aと相対向するように配置させた(図2(b)、工程2)。なお、塗布量は塗布前後の重量を測定し、その後、塗布長で単位長さあたりに換算を行った。この後、裏面のバス電極3bについても同様に導電性接着剤組成物を塗布し、タブ線(配線部材)4bを配置した(図3(a),(b)、工程3、4)。その後、熱圧着機(日化設備エンジニアリング(株)製、商品名:MB−200WH)を用いて、0.5MPaの圧力で、所定の時間経過後に所定の温度に到達するように設定し、加熱圧着した(図4(a)、工程5)。所定の時間及び所定の温度は表2及び3に示すとおりである。
上記の工程で得られた太陽電池セルの表面電極3aと配線部材4aとの間の導電性接着剤組成物中の金属の融合状態をX線透過装置(日立建機ファインテック(株)製、商品名:MF160C)で観察した。導電性粒子が融合しているものを良好、導電性粒子が融合していないものを不良として評価した。導電性粒子が融合していないもの(非融合)は、図5(a)に示すようにX線透過装置像で黒い粒状の金属粒子が観測される。また、導電性粒子が融合しているものは、図5(b)に示すように非融合の時に見られた、黒い粒状の金属粒子が観測されず、導電性粒子が溶融及び融合してできた部分が一面の黒い影となって見られる。
この後、太陽電池セル表面の受光面には封止樹脂13(三井化学ファブロ(株)製、商品名:ソーラーエバSC50B)、保護ガラス14(200×200×3mm)を積層し、裏面には封止樹脂13(三井化学ファブロ(株)製、商品名:ソーラーエバSC50B)、保護フィルム15((株)コバヤシ製、商品名:コバテックPV KB−L1)を積層し、真空ラミネータ((株)エヌ・ピー・シー製、商品名:LM−50×50−S)の熱板側に保護ガラス14が接するように搭載して5分間0.1MPaの減圧下に置いた後、真空ラミネータの真空を解放した状態で140℃、10分間加熱して太陽電池モジュールを作製した(図4(b)、工程6)。
得られた太陽電池セルのIV曲線を、ソーラシミュレータ(ワコム電創社製、商品名:WXS−155S−10、AM:1.5G)を用いて測定した。また、太陽電池セルを85℃、85%RHの高温高湿雰囲気下で1500時間静置した後、同様にIV曲線を測定した。それぞれのIV曲線から太陽電池の電気特性を示す曲線因子(fill factor、以下F.Fと略す)を各々導出し、高温高湿雰囲気下に静置する前のF.Fと高温高湿条件下に静置した後のF.Fの変化率[F.F(1500h)*100/F.F(0h)]をΔF.Fとし、これを評価指標として用いた。なお、一般にΔF.Fの値が90%以上となると接続信頼性が良好であると判断され、95%以上であることがより好ましい。得られた一連の結果を表2、表3に示す。
太陽電池セルの受光面及び裏面の電極上にフラックス剤(千住金属製、商品名:デルタラックス533)を塗布した後、Sn96.5−Ag3.0−Cu0.5はんだ被覆タブ線(日立電線(株)製、商品名:A−TPS)を配置し、ホットプレート上で260℃に加熱してタブ線に被覆された前記はんだを溶融させて表面電極と接続を行ったものの、加熱後の急速冷却時に、太陽電池セルが割れ、太陽電池特性を測定することができなかった。
Claims (4)
- (A)太陽電池セルの電極上に(a)金属を含む導電性粒子、(b)熱硬化性樹脂及び(c)フラックス活性剤を含有する、導電性接着剤組成物を0.008mg/mm〜0.8mg/mmの塗布量で塗布する工程、
(B)塗布された前記導電性接着剤組成物を挟んで、前記太陽電池セルの電極と相対向するように配線部材を配置する工程、
(C)前記(B)工程で得られた配線部材付太陽電池セルを加熱する工程、
(D)前記(C)工程で得られた配線部材付太陽電池セルの両面に封止樹脂を積層し、さらに前記太陽電池セルの受光面に保護ガラスを、前記太陽電池セルの裏面に保護フィルムを積層して加熱する工程
を備える太陽電池モジュールの製造方法であって、
前記(C)工程における加熱温度が140〜180℃であり、かつ(a)導電性粒子における金属の融点が前記(C)工程における加熱温度以下であり、
前記(c)フラックス活性剤が、脂肪族ジヒドロキシカルボン酸を含む、太陽電池モジュールの製造方法。 - 前記(a)導電性粒子における金属が、ビスマス、インジウム、スズ及び亜鉛から選ばれる少なくとも1種の成分を含有する、請求項1に記載の太陽電池モジュールの製造方法。
- 前記(b)熱硬化性樹脂が、エポキシ樹脂又は(メタ)アクリル樹脂を含有する、請求項1又は2に記載の太陽電池モジュールの製造方法。
- 前記脂肪族ジヒドロキシカルボン酸が、下記一般式(V)で表される化合物又は酒石酸を含む、請求項1〜3のいずれか一項に記載の太陽電池モジュールの製造方法。
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JPWO2015008455A1 (ja) * | 2013-07-19 | 2017-03-02 | パナソニックIpマネジメント株式会社 | 太陽電池モジュール |
CA2865110C (en) * | 2013-12-16 | 2021-11-09 | The Boeing Company | Composite structures using interpenetrating polymer network adhesives |
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KR101757879B1 (ko) * | 2014-08-04 | 2017-07-26 | 엘지전자 주식회사 | 태양전지 모듈 |
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US9899546B2 (en) | 2014-12-05 | 2018-02-20 | Tesla, Inc. | Photovoltaic cells with electrodes adapted to house conductive paste |
CN105702807B (zh) * | 2016-03-28 | 2018-02-02 | 泰州中来光电科技有限公司 | 太阳能电池的制备方法 |
CN105702769B (zh) * | 2016-03-28 | 2019-04-16 | 泰州中来光电科技有限公司 | 一种太阳能电池模块及其制备方法和组件、系统 |
DE102016218338A1 (de) * | 2016-09-23 | 2018-03-29 | Siemens Healthcare Gmbh | Röntgendetektor mit wärmeleitfähiger Zwischenschicht |
CN108336188A (zh) * | 2018-03-12 | 2018-07-27 | 苏州易昇光学材料有限公司 | 一种太阳能涂料喷涂层压一体设备 |
JP7125907B2 (ja) * | 2019-03-19 | 2022-08-25 | タツタ電線株式会社 | 導電性組成物 |
KR102190447B1 (ko) * | 2019-05-14 | 2020-12-14 | 주식회사 뷰웍스 | 전수 검사 자동화를 위한 배터리 셀 검사 장치 및 검사 방법 |
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US20130340813A1 (en) | 2013-12-26 |
WO2012102080A1 (ja) | 2012-08-02 |
EP2669955A1 (en) | 2013-12-04 |
JPWO2012102080A1 (ja) | 2014-06-30 |
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