JP2009246360A - 太陽電池モジュール用バックシート - Google Patents
太陽電池モジュール用バックシート Download PDFInfo
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- JP2009246360A JP2009246360A JP2009060614A JP2009060614A JP2009246360A JP 2009246360 A JP2009246360 A JP 2009246360A JP 2009060614 A JP2009060614 A JP 2009060614A JP 2009060614 A JP2009060614 A JP 2009060614A JP 2009246360 A JP2009246360 A JP 2009246360A
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- C08G—MACROMOLECULAR COMPOUNDS OBTAINED OTHERWISE THAN BY REACTIONS ONLY INVOLVING UNSATURATED CARBON-TO-CARBON BONDS
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- C—CHEMISTRY; METALLURGY
- C09—DYES; PAINTS; POLISHES; NATURAL RESINS; ADHESIVES; COMPOSITIONS NOT OTHERWISE PROVIDED FOR; APPLICATIONS OF MATERIALS NOT OTHERWISE PROVIDED FOR
- C09J—ADHESIVES; NON-MECHANICAL ASPECTS OF ADHESIVE PROCESSES IN GENERAL; ADHESIVE PROCESSES NOT PROVIDED FOR ELSEWHERE; USE OF MATERIALS AS ADHESIVES
- C09J133/00—Adhesives based on homopolymers or copolymers of compounds having one or more unsaturated aliphatic radicals, each having only one carbon-to-carbon double bond, and at least one being terminated by only one carboxyl radical, or of salts, anhydrides, esters, amides, imides, or nitriles thereof; Adhesives based on derivatives of such polymers
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Abstract
【解決手段】少なくとも2つの基材をアクリル系接着剤で貼り合わされた積層体からなる太陽電池モジュール用バックシートであって、前記アクリル系接着剤が耐加水分解性、耐絶縁性及び水分バリア性を有することを特徴とする太陽電池モジュール用バックシート、該太陽電池モジュール用バックシートを有する太陽電池モジュール及び太陽電池。
【選択図】図1
Description
(1)少なくとも2つの基材をアクリル系接着剤で貼り合わされた積層体からなる太陽電池モジュール用バックシートであって、前記アクリル系接着剤が耐加水分解性、耐絶縁性及び水分バリア性を有することを特徴とする太陽電池モジュール用バックシート、
CH2=C(R1)−CO−OZ (I)
(式中、R1は水素原子又はメチル基、Zは炭素数4〜25の炭化水素基を示す)
で表されるモノマーを含有するモノマー成分を重合させてなるアクリル系ポリマーを含有する前記(1)に記載の太陽電池モジュール用バックシート、
に関する。
CH2=C(R1)−CO−OZ (I)
(式中、R1は水素原子又はメチル基、Zは炭素数4〜25の炭化水素基を示す)
で表されるモノマーを含有するモノマー成分を重合させることによって得られるアクリル系ポリマーを含有するアクリル系接着剤が挙げられる。
基材1:帝人デュポンフィルム(株)製、商品名:テトロンU298W〔白色ポリエチレンテレフタレート(以下、PETという)フィルム〕
基材2:三菱樹脂(株)製、商品名:テックバリア(二酸化ケイ素蒸着PETフィルム)
基材3:JIS 1N30 軟質アルミニウム箔
基材4:東レ(株)製、商品名:ルミラーX10S(耐熱性オリゴマーPETフィルム)
充填材:三井化学ファブロ(株)製、品番:SC50B(厚さが400μmのEVAシート)
攪拌機、滴下口、温度計、冷却管及び窒素ガス導入口を備えた500ミリリットル容のフラスコ内に、酢酸エチル70gと、エチルメタクリレート70g、シクロヘキシルメタクリレート10g、2−エチルヘキシルアクリレート10g及び2−ヒドロキシエチルアクリレート10gのモノマー混合物100gのうち50gを仕込み、80℃に昇温させた。80℃に到達してから、重合開始剤として2,2’−アゾビス−(2−メチルブチロニトリル)1gをフラスコ内に投入し、自己発熱によって昇温させ、約84℃で還流させた。還流反応を確認してから5分間経過後に、前記モノマー混合物の残りの50gと2,2’−アゾビス−(2−メチルブチロニトリル)1gと酢酸エチル30gとの混合物を2時間かけてフラスコ内に連続的に滴下した。更に3時間加熱した後、アクリル系ポリマーの不揮発分が50.0質量%の溶液を得た。
合成例1において、アクリル系ポリマーの合成に用いるモノマー成分の組成を表1に示すようにしたこと以外は、合成例1と同様の方法でアクリル系ポリマーを得た。得られたアクリル系ポリマーの物性を表1に示す。
MMA:メチルメタクリレート
EMA:エチルメタクリレート
CHMA:シクロヘキシルメタクリレート
TBMA:tert−ブチルメタクリレート
2EHA:2−エチルヘキシルアクリレート
HEA:2−ヒドロキシエチルアクリレート
HEMA:2−ヒドロキシエチルメタクリレート
FM1:ダイセル化学工業(株)製、商品名:プラクセルFM−1
MMA:メタクリル酸
RUVA93:2−(2’−ヒドロキシ−5’−メタクリロイルオキシエチルフェニル)−2H−ベンゾトリアゾール〔大塚化学(株)製、商品名:RUVA93〕
LA82:旭電化工業(株)製、商品名:アデカスタブLA82
重合開始剤:2,2’−アゾビス(2−メチルブチロニトリル)
合成例1で得られたアクリル系ポリマー100質量部に対してポリイソシアネート硬化剤〔住化バイエルウレタン(株)製、商品名:デスモジュールN3200〕8質量部を容器に入れ、さらにトルエンで不揮発分が20質量%溶液となるまで希釈することにより、接着剤1を得た。
実施例1において、接着剤の組成を表2に示すように変更したこと以外は、実施例1と同様の方法で接着剤2〜7を得た。
ウレタン系接着剤として、三井武田ケミカル(株)製、商品名:タケラックA511(主剤)と三井武田ケミカル(株)製、商品名:A50(硬化剤)を10:1の質量比で混合し、接着剤8を得た。
実施例1において、接着剤の組成を表2に示すように変更したこと以外は、実施例1と同様の方法で接着剤9を得た。
飽和ポリエステル:東洋紡績(株)製、商品名:バイロン240
硬化剤A:イソシアネート硬化剤〔住化バイエルウレタン(株)製、商品名:デスモジュールN3200〕
硬化剤B:オキサゾリンポリマー(2−イソプロペニル−2−オキサゾリン50質量%とメチルメチクリレート20質量%とブチルアクリレート30質量%とからなる共重合体)
接着剤1〜9のいずれかを用い、乾燥後の塗工量が5g/m2となるように基材1〜3に塗布し、ドライラミネート法により、各基材を積層し、太陽電池モジュール用バックシートを作製した後、50℃で5日間養生を行った。得られたバックシートの具体的な構成は、以下の構成1〜構成3のとおりである。
構成2:充填層(EVA)側から、基材1/接着剤/基材2/「接着剤」/基材1
構成3:充填層(EVA)側から、基材1/接着剤/基材3/接着剤/基材1
なお、構成1及び構成2において、「接着剤」は、蒸着層に接する側の接着剤を示す。
前記構成を有するバックシートを、加圧蒸気を用いた促進評価試験により、耐加水分解性を評価した。
前記構成を有するバックシートをA4の大きさに切り取り、ハイプレッシャークッカー(加圧蒸気による促進評価装置)にセットし、105℃の雰囲気中で96時間、168時間又は192時間加熱した後、各バックシートのラミネート強度と剥離挙動を評価した。
◎:ラミネート強度の保持率が95%以上(密着性が非常に優れる)
○:ラミネート強度の保持率が90%以上95%未満(密着性が優れる)
△:ラミネート強度の保持率が80%以上90%未満(密着性がやや劣る)
×:ラミネート強度の保持率が80%未満(密着性が劣る)
前記耐加水分解性と同様にして、前記構成1〜構成3のバックシートを、加圧蒸気を用いた促進評価試験により評価した。前記バックシートをA4サイズの大きさに切り取り、ハイプレッシャークッカー(加圧蒸気による促進評価装置)にセットし、105℃の雰囲気中で168時間加熱した後又は192時間加熱した後に、JIS−C2110:94(固体電気絶縁材料の絶縁耐力の試験方法)に規定されている「絶縁破壊強さ」の試験方法に準じて各バックシートの絶縁破壊の強さを測定した。
◎:絶縁破壊の強さの保持率が95%以上(非常に優れる)
○:絶縁破壊の強さの保持率が90%以上95%未満(優れる)
△:絶縁破壊の強さの保持率が80%以上90%未満(やや劣る)
×:絶縁破壊の強さの保持率が80%未満(劣る)
a)試験電圧電源周波数:60Hz
b)試験電圧上昇速度 :1kV/s
c)試験媒体 :絶縁油(鉱油)
d)試験雰囲気 :気温が25℃で相対湿度62%
ア)上部電極:直径が20mmの球
イ)下部電極:直径が25mmの円盤
ウ)電極荷重:500g
前記構成を有するバックシートをJIS Z0208「防湿包装材料の透湿度試験方法(カップ法)」に準拠し、前記促進評価試験前後の加圧蒸気を用いた促進評価試験前の水蒸気透過率に対する比率(加圧蒸気を用いた促進評価試験168時間後の水蒸気透過率を前記試験前の水蒸気透過率で除し、100を乗じた値)を水蒸気透過率の保持率(%)として評価した。
◎:水蒸気透過率の保持率が95%以上(非常に優れる)
○:水蒸気透過率の保持率が90%以上95%未満(優れる)
△:水蒸気透過率の保持率が80%以上90%未満(やや劣る)
×:水蒸気透過率の保持率が80%未満(劣る)
前記接着剤2を乾燥後の塗工量が3g/m2となるように前記基材1に塗布し、100℃の大気中で1分間乾燥させ、易接着コート層を形成した。
前記構成を有するバックシートを幅60mm、長さ150mmに裁断したもの2枚、EVAシート〔三井化学ファブロ(株)製、品番:SC50B、厚さ:400μm〕を幅60mm、長さ60mmに裁断したもの1枚を用意した。
太陽電池モジュール用充填剤として、標準キュアタイプのEVAシートを用いた。太陽電池セルは、多結晶系シリコンのものを用いた。A4サイズの強化ガラス上に、同じサイズのEVAシート〔三井化学ファブロ(株)製、品番:SC50B、厚さ:400μm〕で挟み込んだセルを載せ、さらにその上に実施例8で得られたバックシートを易接着コート層がEVA側と接するように設けた。130℃で5分間真空引きをした後、150℃に加温したオーブン中に30分間保管し、架橋反応を進行させた。その後、アルミニウムフレームで枠組みを行った。
〔易接着性の評価〕
易接着性は、前記易接着性の評価用サンプルを23℃で相対湿度が65%の雰囲気中で、引張試験機〔テスター産業(株)製〕の上下のクリップに未接着部分のバックシートを挟み、オートグラフによるT型剥離法を用い、幅10mmのクロスヘッド速度100mm/分における剥離強度を測定し、以下の評価基準に基づいて評価した。
さらに、前記易接着性の評価用サンプルを85℃で相対湿度が85%の雰囲気中で1000時間試験を行い、前記と同じ条件で剥離強度を評価した。
◎:20N/10mm以上(接着性に優れている)
〇:10N/10mm以上、20N/10mm未満(接着性が良好)
△:5N/10mm以上、10N/10mm未満(接着性がやや良好)
×:5N/10mm未満(接着性が不良)
バックシート2枚を易接着コート層面が向かい合わない方向、すなわち易接着コート層/基材層/易接着コート層/基材層の順序で重ね合わせ、金属製の板上に基材層が接するように置いた後、さらに底面が3cm×4cmの直方体の金属製の錘を2枚のシート上に置き、そのままの状態で気温が50℃の雰囲気中に65時間放置した。その後、錘を除去し、シート2枚それぞれを平面に沿った対向方向(錘の底面の長軸方向に相当)に引っ張り、剪断応力を測定した。
〇:剪断応力が0.49N未満
×:剪断応力が0.49N以上
前記太陽電池の電気特性の評価サンプルのガラス面を光入射側として置き、アイスーパーUVテスター〔岩崎電気(株)製、品番:SUV−W151〕を用い、100mW/cm2で温度60℃、相対湿度50%の条件で100時間、150時間又は200時間試験を行い、試験前後の最大出力の変化率を測定し、以下の評価基準に基づいて評価した。
なお、太陽電池の電気出力特性は、JIS C8913に準じて測定した。また、試験後のバックシートの外観に浮きなどがないかどうかを目視で観察した。
〇:最大出力の変化率が95%以上
△:最大出力の変化率が90%以上95%未満
×:最大出力の変化率が90%未満
実施例8において、接着剤2の代わりに接着剤4を用いたこと以外は、実施例8と同様にして太陽電池モジュール用バックシートを作製し、実施例8と同様にしてその物性を評価した。その結果を表4に示す。
実施例8において、接着剤2の代わりに接着剤5を用いたこと以外は、実施例8と同様にして太陽電池モジュール用バックシートを作製し、実施例8と同様にしてその物性を評価した。その結果を表4に示す。
実施例8において、接着剤2の代わりに接着剤8を用いたこと以外は、実施例8と同様にして太陽電池モジュール用バックシートを作製し、実施例8と同様にしてその物性を評価した。その結果を表4に示す。
実施例8において、接着剤2の代わりに接着剤9を用いたこと以外は、実施例8と同様にして太陽電池モジュール用バックシートを作製し、実施例8と同様にしてその物性を評価した。その結果を表4に示す。
2:アクリル系接着剤の接着層
3:バリア層
Claims (11)
- 少なくとも2つの基材をアクリル系接着剤で貼り合わされた積層体からなる太陽電池モジュール用バックシートであって、前記アクリル系接着剤が耐加水分解性、耐絶縁性及び水分バリア性を有することを特徴とする太陽電池モジュール用バックシート。
- アクリル系接着剤が、一般式(I):
CH2=C(R1)−CO−OZ (I)
(式中、R1は水素原子又はメチル基、Zは炭素数4〜25の炭化水素基を示す)
で表されるモノマーを含有するモノマー成分を重合させてなるアクリル系ポリマーを含有する請求項1に記載の太陽電池モジュール用バックシート。 - アクリル系接着剤が、架橋させた接着層を形成する請求項1又は2に記載の太陽電池モジュール用バックシート。
- アクリル系接着剤が、さらに硬化剤を含有する請求項1〜3のいずれかに記載の太陽電池モジュール用バックシート。
- 硬化剤が、ポリイソシアネート化合物及びその変性物、エポキシ樹脂、及びオキサゾリン基含有樹脂からなる群より選ばれた少なくとも1種である請求項4に記載の太陽電池モジュール用バックシート。
- 積層体が、さらにガスバリア層としてアルミニウム箔又は酸化物を蒸着した蒸着基材を有する請求項1〜5のいずれかに記載の太陽電池モジュール用バックシート。
- 基材が、ポリエステル基材、ポリカーボネート系基材、フッ素系基材又はアクリル系基材である請求項1〜6のいずれかに記載の太陽電池モジュール用バックシート。
- ポリエステル基材が、ポリエチレンテレフタレート、ポリエチレンナフタレート、ポリブチレンテレフタレート及びポリシクロヘキサンジメタノール−テレフタレートからなる群より選ばれた少なくとも1種からなる請求項7に記載の太陽電池モジュール用バックシート。
- フッ素系基材が、ポリフッ化ビニル、ポリフッ化ビニリデン、ポリクロロトリフルオロエチレン、ポリエチレンテトラフルオロエチレン、ポリテトラフルオロエチレン、テトラフルオロエチレン−パーフルオロアルキルビニルエーテル共重合体及びテトラフルオロエチレン−ヘキサフルオロプロピレン共重合体からなる群より選ばれた少なくとも1種からなる請求項7に記載の太陽電池モジュール用バックシート。
- 請求項1〜9のいずれかに記載の太陽電池モジュール用バックシートを有することを特徴とする太陽電池モジュール。
- 請求項10に記載の太陽電池モジュールを有することを特徴とする太陽電池。
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