JP6144203B2 - 合わせガラス及び合わせガラスの取り付け方法 - Google Patents
合わせガラス及び合わせガラスの取り付け方法 Download PDFInfo
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- JP6144203B2 JP6144203B2 JP2013547766A JP2013547766A JP6144203B2 JP 6144203 B2 JP6144203 B2 JP 6144203B2 JP 2013547766 A JP2013547766 A JP 2013547766A JP 2013547766 A JP2013547766 A JP 2013547766A JP 6144203 B2 JP6144203 B2 JP 6144203B2
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- laminated glass
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Images
Classifications
-
- 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
- B32B17/06—Layered products essentially comprising sheet glass, or glass, slag, or like fibres comprising glass as the main or only constituent of a layer, next to another layer of a specific material
- B32B17/10—Layered products essentially comprising sheet glass, or glass, slag, or like fibres comprising glass as the main or only constituent of a layer, next to another layer of a specific material of synthetic resin
- B32B17/10005—Layered products essentially comprising sheet glass, or glass, slag, or like fibres comprising glass as the main or only constituent of a layer, next to another layer of a specific material of synthetic resin laminated safety glass or glazing
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- B32B17/10761—Layered products essentially comprising sheet glass, or glass, slag, or like fibres comprising glass as the main or only constituent of a layer, next to another layer of a specific material of synthetic resin laminated safety glass or glazing characterized by the resin layer, i.e. interlayer containing vinyl acetal
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Landscapes
- Physics & Mathematics (AREA)
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- Life Sciences & Earth Sciences (AREA)
- Chemical & Material Sciences (AREA)
- Biochemistry (AREA)
- Joining Of Glass To Other Materials (AREA)
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- Securing Of Glass Panes Or The Like (AREA)
- Compositions Of Macromolecular Compounds (AREA)
Description
上記第1,第2の樹脂層は熱可塑性樹脂を含む。該熱可塑性樹脂は特に限定されない。熱可塑性樹脂として、従来公知の熱可塑性樹脂を用いることができる。熱可塑性樹脂は1種のみが用いられてもよく、2種以上が併用されてもよい。上記第1の樹脂層中の熱可塑性樹脂と、上記第2の樹脂層中の熱可塑性樹脂とは同一であってもよく、異なっていてもよい。
中間膜の接着力をより一層高める観点からは、上記第1の樹脂層は可塑剤を含むことが好ましく、上記第2の樹脂層は可塑剤を含むことが好ましい。上記第1,第2の樹脂層中の熱可塑性樹脂が、ポリビニルアセタール樹脂である場合に、上記第1,第2の樹脂層はそれぞれ、可塑剤を含むことが特に好ましい。
成分X:
上記第2の樹脂層は、遮熱性化合物を含むことが好ましい。上記第2の樹脂層は、フタロシアニン化合物、ナフタロシアニン化合物及びアントラシアニン化合物の内の少なくとも1種の成分Xを含むことが好ましい。上記第2の樹脂層は、フタロシアニン化合物、ナフタロシアニン化合物及びアントラシアニン化合物の内の少なくとも1種の成分Xを含むか、又は、後述する遮熱粒子を含むことが好ましい。上記第1の樹脂層は、上記成分Xを含んでいてもよい。上記成分Xは遮熱性化合物である。中間膜全体で少なくとも1層に上記成分Xを用いることにより、赤外線(熱線)を効果的に遮断できる。上記第2の樹脂層が上記成分Xを含むことにより、赤外線をより一層効果的に遮断できる。
上記第2の樹脂層は、遮熱粒子を含むことが好ましい。上記第1の樹脂層は、遮熱粒子を含んでいてもよい。遮熱粒子は遮熱性化合物である。中間膜全体で少なくとも1層に遮熱性化合物を用いることにより、赤外線(熱線)を効果的に遮断できる。上記第2の樹脂層が遮熱粒子を含むことにより、赤外線をより一層効果的に遮断できる。
上記式(X1)において、Wはタングステン、Oは酸素を表し、y及びzは2.0<z/y<3.0を満たす。
上記式(X2)において、Mは、H、He、アルカリ金属、アルカリ土類金属、希土類元素、Mg、Zr、Cr、Mn、Fe、Ru、Co、Rh、Ir、Ni、Pd、Pt、Cu、Ag、Au、Zn、Cd、Al、Ga、In、Tl、Si、Ge、Sn、Pb、Sb、B、F、P、S、Se、Br、Te、Ti、Nb、V、Mo、Ta及びReからなる群から選択される少なくとも1種の元素、Wはタングステン、Oは酸素を表し、x、y及びzは、0.001≦x/y≦1、及び2.0<z/y≦3.0を満たす。
上記第1の樹脂層は、紫外線遮蔽剤を含むことが好ましい。上記第2の樹脂層は、紫外線遮蔽剤を含むことが好ましい。上記第1の樹脂層と上記第2の樹脂層との双方が、紫外線遮蔽剤を含むことがより好ましい。紫外線遮蔽剤の使用により、中間膜及び合わせガラスが長期間使用されても、可視光線透過率がより一層低下し難くなる。該紫外線遮蔽剤は、1種のみが用いられてもよく、2種以上が併用されてもよい。
上記第1の樹脂層は、酸化防止剤を含むことが好ましい。上記第2の樹脂層は、酸化防止剤を含むことが好ましい。上記第1の樹脂層と上記第2の樹脂層との双方が酸化防止剤を含むことが好ましい。該酸化防止剤は、1種のみが用いられてもよく、2種以上が併用されてもよい。
上記合わせガラス用中間膜は、必要に応じて、光安定剤、難燃剤、帯電防止剤、顔料、染料、接着力調整剤、耐湿剤及び蛍光増白剤等の添加剤を含んでいてもよい。これらの添加剤は、1種のみが用いられてもよく、2種以上が併用されてもよい。
上記合わせガラス用中間膜は、第1の合わせガラス部材と第2の合わせガラス部材との間に配置されて用いられる。
本発明に係る合わせガラスは、第1の合わせガラス部材と、第2の合わせガラス部材と、該第1,第2の合わせガラス部材の間に配置された中間膜とを備える。該中間膜が、上述した合わせガラス用中間膜である。上記中間膜における上記第1の樹脂層の外側に、上記第1の合わせガラス部材が配置されている。上記中間膜における上記第2の樹脂層の外側に上記第2の合わせガラス部材が配置されている。上記第1の合わせガラス部材と上記第1の樹脂層との2つの層全体の波長780〜2100nmにおける赤外線透過率は、上記第2の合わせガラス部材と上記第2の樹脂層との2つの層全体の波長780〜2100nmにおける赤外線透過率よりも高い。
本発明に係る合わせガラスの取り付け方法は、上述した合わせガラスを、建築物又は車両において外部空間と該外部空間から熱線が入射される内部空間との間の開口部に取り付ける方法である。
下記の表1に示すポリビニルブチラール樹脂PVB1〜PVB7(いずれも、n−ブチルアルデヒドによりアセタール化されているポリビニルブチラール樹脂(PVB))を用意した。
3GO(トリエチレングリコールジ−2−エチルヘキサノエート)
BHT(酸化防止剤、2,6−ジ−t−ブチル−p−クレゾール)
T−460(2,4−ビス「2−ヒドロキシ−4−ブトキシフェニル]−6−(2,4−ジブトキシフェニル)−1,3−5−トリアジン、BASF社製「Tinuvin460」)
T−326(紫外線遮蔽剤、2−(2’−ヒドロキシ−3’−t−ブチル−5−メチルフェニル)−5−クロロベンゾトリアゾール、BASF社製「Tinuvin326」)
LAF70(紫外線遮蔽剤、トリアジン系紫外線遮蔽剤、ADEKA社製「LA−F70」)
VSU(紫外線遮蔽剤、2−エチル−2’−エトキシ−オキシアニリド、クラリアントジャパン社製「Sanduvor VSU」)
PR25(紫外線遮蔽剤、マロン酸[(4−メトキシフェニル)−メチレン]−ジメチルエステル、クラリアントジャパン社製「Hostavin PR−25」)
ITO(ITO粒子、錫ドープ酸化インジウム粒子)
CWO(CWO粒子、セシウムドープ酸化タングステン(Cs0.33WO3)粒子)
43V(成分X、フタロシアニン化合物、中心金属としてバナジウムを含有する、山田化学社製「NIR−43V」)
SG−5A1257(成分X、銅を含有するフタロシアニン化合物、住化カラー社製「BLUE SG−5A1257」)
多層フィルム(3M、多層樹脂フィルム、住友スリーエム社製「マルチレイヤー Nano 80S」)
グリーンガラス(JIS R3208に準拠した熱線吸収板ガラス、縦100cm×横100cm×厚み2mm)
ポリビニルブチラール樹脂(PVB1)100重量部に対し、可塑剤(3GO)40重量部と、紫外線遮蔽剤(T−326)0.8重量部と、酸化防止剤(BHT)0.2重量部とを添加し、ミキシングロールで充分に混練し、組成物を得た。
配合成分の種類及び配合量を下記の表2に示すように設定したこと以外は樹脂層A1と同様にして、厚み380μmの単層の樹脂層A2〜A7を得た。
可塑剤(3GO)40重量部と、ITOを得られる樹脂層B1中で0.39重量%となる量とを添加し、充分に混練し、可塑剤分散液を得た。ポリビニルブチラール樹脂(PVB1)100重量部に対し、可塑剤分散液全量と、酸化防止剤(BHT)0.2重量部とを添加し、ミキシングロールで充分に混練し、組成物を得た。
配合成分の種類及び含有量を下記の表3に示すように設定したこと以外は樹脂層B1と同様にして、厚み380μmの単層の樹脂層B2〜B17を作製した。
(1)合わせガラス用中間膜の作製
赤外線反射層として、XIR−75(金属箔付き樹脂フィルム、Southwall Technologies社製「XIR−75」)を用意した。
得られた中間膜を、縦30cm×横30cmの大きさに切断した。また、1枚のクリアガラス(縦30cm×横30cm×厚み2mm)と、1枚のグリーンガラス(JIS R3208に準拠した熱線吸収板ガラス、縦30cm×横30cm×厚み2mm)とを用意した。このクリアガラスとグリーンガラスとの間に、得られた中間膜を挟み込み、真空ラミネーターにて90℃で30分間保持し、真空プレスし、積層体を得た。積層体において、ガラス板からはみ出た中間膜部分を切り落とし、合わせガラスを得た。
第1,第2の樹脂層の種類、赤外線反射層の種類、並びに第1,第2の合わせガラス部材(ガラス)の種類を下記の表4〜6に示すように設定したこと以外は参考例1と同様にして、中間膜及び合わせガラスを作製した。
赤外線反射層を用いずに、得られた樹脂層A1と得られた樹脂層A1とを積層して、中間膜を得た。得られた中間膜を用いたこと以外は参考例1と同様にして、合わせガラスを得た。
参考例1と同じ赤外線反射層を、得られた樹脂層A1と得られた樹脂層A1との間に挟み込んで、中間膜を得た。得られた中間膜を用いたこと、並びに第2の合わせガラス部材としてクリアガラスを用いたこと以外は参考例1と同様にして、合わせガラスを得た。
赤外線反射層として、多層フィルム(3M、多層樹脂フィルム、住友スリーエム社製「マルチレイヤー Nano 80S」)を用意した。
赤外線反射層として、多層フィルム(3M、多層樹脂フィルム、住友スリーエム社製「マルチレイヤー Nano 80S」)を用意した。
(1)可視光線透過率(A光Y値、A−Y(380〜780nm))の測定
分光光度計(日立ハイテク社製「U−4100」)を用いて、JIS R3211(1998)に準拠して、得られた合わせガラスの波長380〜780nmにおける上記可視光線透過率を測定した。
分光光度計(日立ハイテク社製「U−4100」)を用いて、ISO 13837に準拠して、得られた合わせガラスの波長300〜2500nmでのTdsを測定した。
ISO 13837に準拠して、分光光度計(日立ハイテク社製「U−4100」)を用いて、波長300〜2500nmの透過率/反射率を測定して、Ttsを算出した。
1a…第1の表面
1b…第2の表面
2…赤外線反射層
2a…第1の表面
2b…第2の表面
3…第1の樹脂層
3a…外側の表面
4…第2の樹脂層
4a…外側の表面
11…合わせガラス
21…第1の合わせガラス部材
22…第2の合わせガラス部材
Claims (10)
- 第1の合わせガラス部材と、
第2の合わせガラス部材と、
前記第1の合わせガラス部材と前記第2の合わせガラス部材との間に配置された中間膜とを備え、
前記中間膜が、赤外線を反射する赤外線反射層と、前記赤外線反射層の第1の表面側に配置されており、かつポリビニルアセタール樹脂、可塑剤、紫外線遮蔽剤及び酸化防止剤を含む第1の樹脂層と、前記赤外線反射層の前記第1の表面とは反対の第2の表面側に配置されており、かつポリビニルアセタール樹脂、可塑剤、紫外線遮蔽剤、酸化防止剤及び遮熱粒子を含む第2の樹脂層とを備え、
前記第2の樹脂層が、フタロシアニン化合物、ナフタロシアニン化合物及びアントラシアニン化合物の内の少なくとも1種の成分をさらに含み、
前記第1の樹脂層に含まれる前記紫外線遮蔽剤が、ハロゲン原子を含むベンゾトリアゾール化合物であり、
前記第2の樹脂層に含まれる前記紫外線遮蔽剤が、ハロゲン原子を含むベンゾトリアゾール化合物であり、
前記第1の樹脂層に含まれる前記ポリビニルアセタール樹脂の水酸基の含有率が15モル%以上、40モル%以下であり、
前記第2の樹脂層に含まれる前記ポリビニルアセタール樹脂の水酸基の含有率が15モル%以上、40モル%以下であり、
前記第1の樹脂層100重量%中、前記第1の樹脂層に含まれる前記紫外線遮蔽剤の含有量が0.1重量%以上、0.8重量%以下であり、
前記第2の樹脂層100重量%中、前記第2の樹脂層に含まれる前記紫外線遮蔽剤の含有量が0.1重量%以上、0.8重量%以下であり、
前記第2の樹脂層100重量%中、前記第2の樹脂層に含まれる前記遮熱粒子の含有量が0.1重量%以上、3.0重量%以下であり、
前記第2の樹脂層100重量%中、前記第2の樹脂層に含まれる前記フタロシアニン化合物、ナフタロシアニン化合物及びアントラシアニン化合物の内の少なくとも1種である前記成分の含有量が、0.001重量%以上、0.2重量%以下であり、
前記中間膜における前記第1の樹脂層の外側に、前記第1の合わせガラス部材が配置されており、かつ前記中間膜における前記第2の樹脂層の外側に、前記第2の合わせガラス部材が配置されており、
前記第1の合わせガラス部材と前記第1の樹脂層との2つの層全体の波長780〜2100nmにおける赤外線透過率が、前記第2の合わせガラス部材と前記第2の樹脂層との2つの層全体の波長780〜2100nmにおける赤外線透過率よりも高い、合わせガラス。 - 前記第1の樹脂層の波長780〜2100nmにおける赤外線透過率が、前記第2の樹脂層の波長780〜2100nmにおける赤外線透過率よりも高いか、又は、
前記第1の合わせガラス部材の波長780〜2100nmにおける赤外線透過率が、前記第2の合わせガラス部材の波長780〜2100nmにおける赤外線透過率よりも高い、請求項1に記載の合わせガラス。 - 前記第1の樹脂層の波長780〜2100nmにおける赤外線透過率が、前記第2の樹脂層の波長780〜2100nmにおける赤外線透過率よりも高い、請求項1に記載の合わせガラス。
- 前記第1の合わせガラス部材の波長780〜2100nmにおける赤外線透過率が、前記第2の合わせガラス部材の波長780〜2100nmにおける赤外線透過率よりも高い、請求項1に記載の合わせガラス。
- 前記第1の樹脂層の波長780〜2100nmにおける赤外線透過率が、前記第2の樹脂層の波長780〜2100nmにおける赤外線透過率よりも高く、かつ、
前記第1の合わせガラス部材の波長780〜2100nmにおける赤外線透過率が、前記第2の合わせガラス部材の波長780〜2100nmにおける赤外線透過率よりも高い、請求項1に記載の合わせガラス。 - 前記赤外線反射層が、金属箔付き樹脂フィルム、樹脂層上に金属層及び誘電層が形成された多層積層フィルム、多層樹脂フィルム又は液晶フィルムである、請求項1〜5のいずれか1項に記載の合わせガラス。
- 前記第2の樹脂層が、前記遮熱粒子として金属酸化物粒子を含む、請求項1〜6のいずれか1項に記載の合わせガラス。
- 前記金属酸化物粒子が、錫ドープ酸化インジウム粒子又は酸化タングステン粒子である、請求項7に記載の合わせガラス。
- 前記第2の樹脂層100重量%中、前記第2の樹脂層に含まれる前記フタロシアニン化合物、ナフタロシアニン化合物及びアントラシアニン化合物の内の少なくとも1種である前記成分の含有量が、0.001重量%以上、0.05重量%以下である、請求項1〜8のいずれか1項に記載の合わせガラス。
- 請求項1〜9のいずれか1項に記載の合わせガラスを、建築物又は車両において、外部空間と前記外部空間から熱線が入射される内部空間との間の開口部に取り付ける方法であって、
前記第1の合わせガラス部材が、前記外部空間側に位置するように、かつ前記第2の合わせガラス部材が前記内部空間側に位置するように、前記合わせガラスを前記開口部に取り付ける、合わせガラスの取り付け方法。
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JPWO2014021406A1 (ja) | 2016-07-21 |
EP2883847A4 (en) | 2016-04-06 |
CN104470869B (zh) | 2018-06-22 |
US20150210043A1 (en) | 2015-07-30 |
US10414130B2 (en) | 2019-09-17 |
US20190255814A1 (en) | 2019-08-22 |
CN108724852B (zh) | 2021-03-16 |
JP6144202B2 (ja) | 2017-06-07 |
US20150168619A1 (en) | 2015-06-18 |
US10766230B2 (en) | 2020-09-08 |
CN104428267A (zh) | 2015-03-18 |
JP2017178781A (ja) | 2017-10-05 |
WO2014021407A1 (ja) | 2014-02-06 |
CN108724852A (zh) | 2018-11-02 |
WO2014021406A1 (ja) | 2014-02-06 |
EP2883847B1 (en) | 2018-03-07 |
JPWO2014021407A1 (ja) | 2016-07-21 |
CN108483949B (zh) | 2021-06-01 |
EP2883848A4 (en) | 2016-04-06 |
EP2883847A1 (en) | 2015-06-17 |
EP2883848A1 (en) | 2015-06-17 |
US10654250B2 (en) | 2020-05-19 |
CN108483949A (zh) | 2018-09-04 |
CN104428267B (zh) | 2019-02-15 |
JP2017171576A (ja) | 2017-09-28 |
EP2883848B1 (en) | 2018-05-23 |
CN104470869A (zh) | 2015-03-25 |
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