JPH09158356A - Building panel - Google Patents

Building panel

Info

Publication number
JPH09158356A
JPH09158356A JP31871695A JP31871695A JPH09158356A JP H09158356 A JPH09158356 A JP H09158356A JP 31871695 A JP31871695 A JP 31871695A JP 31871695 A JP31871695 A JP 31871695A JP H09158356 A JPH09158356 A JP H09158356A
Authority
JP
Japan
Prior art keywords
building panel
surface material
core material
panel
sheet
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
JP31871695A
Other languages
Japanese (ja)
Inventor
Masahiko Suzuki
雅彦 鈴木
Hideki Takiguchi
英喜 滝口
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
IG Technical Research Inc
Original Assignee
IG Technical Research Inc
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by IG Technical Research Inc filed Critical IG Technical Research Inc
Priority to JP31871695A priority Critical patent/JPH09158356A/en
Publication of JPH09158356A publication Critical patent/JPH09158356A/en
Pending legal-status Critical Current

Links

Landscapes

  • Panels For Use In Building Construction (AREA)
  • Laminated Bodies (AREA)
  • Building Environments (AREA)
  • Finishing Walls (AREA)

Abstract

PROBLEM TO BE SOLVED: To prevent a surface material from being separated or a panel from being warped or being expanded after the manufacture by providing a breathable anchor material which is formed with a sheet-like or continuous length material which comprises a fiber-shaped substance forming an uneven ring on the rear surface of the surface material. SOLUTION: A core material 3 made of a synthetic resin expanded body which is mainly composed of a phenol resin or the like is sandwiched between a surface material/a rear surface material of a metal thin sheet, thereby constituting a building panel A. A sheet-like and continuous length breathable anchor material 5, which is made of a fiber-like material forming an uneven rib 6 is provided at least on the rear surface of the surface material 1 of this building panel A by way of a bonding agent 4. As a result, the bonding strength of the surface material 1 and the core material 3 are dramatically enhanced, thereby protecting the surface material and the core material from being separated after their manufacture. Furthermore, this construction prevents the panel A from being warped or swollen after their manufacture.

Description

【発明の詳細な説明】Detailed Description of the Invention

【0001】[0001]

【産業上の利用分野】本発明は建築、構築物の内壁材、
外壁材、屋根材、天井材、床材、間仕切り材、あるいは
防火戸、等として使用でき、かつ、製造後に膨れ、反り
等の変形がなく、しかも防火性、耐火性、機械強度に優
れた建築用パネルに関するものである。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to construction,
It can be used as an outer wall material, roof material, ceiling material, floor material, partition material, fire door, etc., and it is free from deformation such as swelling and warping after manufacturing, and has excellent fire resistance, fire resistance, and mechanical strength. It is related to the panel for use.

【0002】[0002]

【従来の技術】一般に、薄板状の表面材と裏面材にてフ
ェノール樹脂発泡体(フェノールフォーム)からなる芯
材をサンドイッチした建築用パネルは数多く発明、考案
されて上市されている。
2. Description of the Related Art In general, a large number of building panels in which a core material made of a phenol resin foam (phenol foam) is sandwiched between a thin plate-shaped surface material and a back surface material have been invented, devised and put on the market.

【0003】[0003]

【発明が解決しようとする課題】しかしながら、上記の
ような芯材としてフェノールフォームを使用した建築用
パネルでは、一般的にフェノールフォームの自己接着
性が弱く、表面材、裏面材と芯材との接着性に劣り、剥
離が生じ易いものであった。また、一般的に芯材を各
種合成樹脂発泡体とした際には、建築用パネル自体の機
械強度に劣り、しかも合成樹脂発泡体の経時変化によ
り、建築用パネル表面に凹凸が生じたり、反ったりする
不具合が生じることがある場合もあった。さらに、芯
材の形成時に反応ガスが発生して芯材内に残留したり、
フェノールフォーム中に、反応の際の縮合水が重量の数
10パーセント位が保持され、製品の養生期間、あるい
は建築用パネルの施工後に、外気温等の変化により、水
分が水蒸気化し、逃げ道が無いために、建築用パネルの
表面材もしくは裏面材と芯材間に残留し、建築用パネル
の表面材裏面や裏面材裏面にガス膨れが発生したり、反
ったりする等、経時的に建築用パネルに悪影響をおよぼ
す不具合を生じることもあった。
However, in the building panel using phenol foam as the core material as described above, the self-adhesiveness of the phenol foam is generally weak and the surface material, the back surface material and the core material are not easily bonded to each other. It was inferior in adhesiveness and easily peeled off. In general, when the synthetic resin foam is used as the core material, the mechanical strength of the building panel itself is inferior, and due to the aging of the synthetic resin foam, unevenness or warpage occurs on the building panel surface. In some cases, such problems may occur. Furthermore, when the core material is formed, a reaction gas is generated and remains in the core material,
Condensed water at the time of reaction is kept at about several tens percent of the weight in phenol foam, and there is no escape route due to moisture vaporization due to changes in the outside temperature, etc. during the curing period of the product or after construction of construction panels. For this reason, the residual between the surface material or the back surface material of the building panel and the core material causes gas swelling or warpage on the back surface material or the back surface material of the building panel. In some cases, there was a problem that adversely affected.

【0004】[0004]

【課題を解決するための手段】本発明はこのような欠点
を除去するために、表面材と裏面材にて合成樹脂発泡体
からなる芯材をサンドイッチした建築用パネルにおい
て、少なくとも前記表面材の裏面に接着剤を介して凹凸
リブを形成した繊維状物よりなるシート状で長尺状の通
気性アンカー材を配設したので、建築用パネル自体の機
械強度を向上させると共に、芯材との接着強度を向上さ
せ、通気性アンカー材の凹凸リブにより形成される空隙
から、芯材内の反応ガスや水蒸気を建築用パネル外部に
放出し、製造後の建築用パネルに反りやふくれ等の悪影
響をおよぼさない建築用パネルを提案するものである。
In order to eliminate such drawbacks, the present invention provides a construction panel in which a core material made of synthetic resin foam is sandwiched between a surface material and a back material, and at least the surface material is Since a long sheet-shaped breathable anchor material made of a fibrous material with uneven ribs formed on the back surface via an adhesive is arranged, the mechanical strength of the building panel itself is improved and at the same time as the core material. Improves the adhesive strength and releases the reaction gas and water vapor in the core material to the outside of the building panel from the voids formed by the uneven ribs of the breathable anchor material, which causes adverse effects such as warpage and blistering on the manufactured building panel. It proposes a construction panel that does not exceed the above.

【0005】[0005]

【実施例】以下に図面を用いて、本発明に係る建築用パ
ネルAの一実施例について詳細に説明する。すなわち、
建築用パネルAは断面図である図1(a)、および図1
(a)におけるイ部分の拡大図である図1(b)に示す
ように、表面材1と裏面材2で例えばフェノール樹脂を
主原料とする合成樹脂発泡体からなる芯材3を、サンド
イッチした建築用パネルAであり、少なくとも表面材1
の裏面側(芯材3側の面)に接着剤4を介して、波状の
通気性アンカー材5を配したものである。
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS An embodiment of a building panel A according to the present invention will be described in detail below with reference to the drawings. That is,
The building panel A is a cross-sectional view of FIG. 1A and FIG.
As shown in FIG. 1 (b), which is an enlarged view of a portion (a), a core material 3 made of a synthetic resin foam whose main material is, for example, a phenol resin is sandwiched between a front surface material 1 and a rear surface material 2. The building panel A, at least the surface material 1
The corrugated breathable anchor material 5 is arranged on the back surface side (the surface on the side of the core material 3) through the adhesive 4.

【0006】表面材1、裏面材2は金属薄板、例えば
鉄、アルミニウム、銅、ステンレス、チタン、アルミ・
亜鉛合金メッキ鋼板、ガルバリウム鋼板、ホーロー鋼
板、クラッド鋼板、ラミネート鋼板(塩ビ鋼板等)、サ
ンドイッチ鋼板(制振鋼板等)、塩化ビニル樹脂、ポリ
カーボネイト樹脂等(勿論、これらを各種色調に塗装し
たカラー板を含む)の一種をロール成形、プレス成形、
押出成形等によって各種形状に成形したもの、あるいは
無機質材を押出成形、プレス成形、オートクレーブ養生
成形等して各種任意形状に形成したもの、さらには、ア
ルミニウム蒸着紙、アスベスト紙、クラフト紙、アスフ
ァルトフェルト、金属箔(Al、Fe、Pb、Cu)、
合成樹脂シート、ゴムシート、布シート、石膏紙、水酸
化アルミ紙、ガラス繊維不織布等の1種、または2種以
上をラミネートしたもの、あるいは防水処理、難燃処理
されたシート状物からなるものである。
The surface material 1 and the back surface material 2 are thin metal plates such as iron, aluminum, copper, stainless steel, titanium and aluminum.
Zinc alloy plated steel plate, Galvalume steel plate, Enameled steel plate, Clad steel plate, Laminated steel plate (PVC steel plate, etc.), Sandwich steel plate (Vibration suppression steel plate, etc.), Vinyl chloride resin, Polycarbonate resin, etc. (Of course, color plates coated with these in various colors. Roll molding, press molding,
Various shapes such as extrusion molding, inorganic materials such as extrusion molding, press molding, autoclave aging, etc., and aluminum vapor-deposited paper, asbestos paper, kraft paper, asphalt felt , Metal foil (Al, Fe, Pb, Cu),
Synthetic resin sheet, rubber sheet, cloth sheet, gypsum paper, aluminum hydroxide paper, glass fiber non-woven fabric, etc., laminated with one or more kinds, or composed of waterproof and flame-retardant sheet-like material Is.

【0007】また、芯材3はポリウレタンフォーム、ポ
リイソシアヌレートフォーム、フェノールフォーム、塩
化ビニルフォーム、ポリエチレンフォーム、ポリスチレ
ンフォーム、ユリアフォーム等、の合成樹脂発泡体から
なるものであり、例えばレゾール型フェノールの原液
と、硬化剤、発泡剤を混合し、表面材1、もしくは裏面
材2の裏面側に吐出させ、加熱して反応・発泡・硬化さ
せて形成したものである。また、芯材3中には各種難燃
材として軽量骨材(パーライト粒、ガラスビーズ、石膏
スラグ、タルク石、シラスバルーン、水酸化アルミニウ
ム等)、繊維状物(グラスウール、ロックウール、カー
ボン繊維、グラファイト等)を混在させ、耐火性、防火
性を向上させることもできる。
The core material 3 is made of synthetic resin foam such as polyurethane foam, polyisocyanurate foam, phenol foam, vinyl chloride foam, polyethylene foam, polystyrene foam and urea foam. It is formed by mixing an undiluted solution, a curing agent, and a foaming agent, discharging the mixture on the back surface side of the surface material 1 or the back surface material 2, and heating to react, foam, and cure. Further, in the core material 3, as various flame-retardant materials, lightweight aggregates (perlite particles, glass beads, gypsum slag, talc stones, silas balloons, aluminum hydroxide, etc.), fibrous materials (glass wool, rock wool, carbon fiber, Graphite, etc.) can be mixed to improve fire resistance and fire resistance.

【0008】さらに、接着剤4の例としては、エラスト
マー型エポキシ樹脂、イソシアネート、例えばメチレン
ジイソシアネート(略称MDI)等のエマルジョンタイ
プ、ホットメルトタイプ、および、その変性イソシアネ
ート、例えばウレタン変性、ビュレット変性イソシアネ
ート、イソシアヌレート変性イソシアネート等の1種を
用いるものであり、例えば、図1(b)に示すように通
気性アンカー材5の凹凸リブ6の凸部分6bに接着剤4
を塗布するものである。
Further, examples of the adhesive 4 include elastomer type epoxy resin, emulsion type such as isocyanate such as methylene diisocyanate (abbreviation MDI), hot melt type, and its modified isocyanate such as urethane modified or buret modified isocyanate. One type of isocyanurate-modified isocyanate or the like is used. For example, as shown in FIG. 1B, the adhesive 4 is applied to the convex portion 6b of the concave-convex rib 6 of the breathable anchor material 5.
Is to be applied.

【0009】通気性アンカー材6は図2、および図3に
示すようなものであり、図2に示すようなシート材を図
3に示すように波状に形成したものであり、長繊維、短
繊維等をシート状に形成したもので、ネット状、塊状、
カール状、植毛状、等に任意密度で形成するものであ
る。また、植毛する際は、10〜200μの長さで、太
さが約5〜200μ位の繊維を使用するものである。
The breathable anchor material 6 is as shown in FIGS. 2 and 3, and is a sheet material as shown in FIG. 2 formed in a wave shape as shown in FIG. Sheets made of fibers, etc., nets, lumps,
It is formed into a curled shape, a flocked shape, or the like at an arbitrary density. Further, when the hair is transplanted, fibers having a length of 10 to 200 μ and a thickness of about 5 to 200 μ are used.

【0010】例えば、不織布を使用した通気性アンカー
材6としては、ポリエステル繊維、ナイロン繊維、ビニ
ロン繊維、ボロン繊維、炭素繊維、アルミナ繊維、炭化
ケイ素繊維、アラミド繊維、ガラス繊維等の1種からな
る連通のシート状物である。
For example, the breathable anchor material 6 using a non-woven fabric is made of one kind of polyester fiber, nylon fiber, vinylon fiber, boron fiber, carbon fiber, alumina fiber, silicon carbide fiber, aramid fiber, glass fiber and the like. It is a communication sheet.

【0011】なお、通気性アンカー材6に通気性を持た
せたのは、通気性部材5に芯材3内の余剰ガス成分(塩
素、二酸化炭素、塩化メチレン、ホルムアルデヒド、水
蒸気、水素、等)、あるいは反応時の縮合水等のガスが
通気できるようにするためである。また、繊維状物で通
気性アンカー材6を形成したために、表面材1と芯材3
の接着が強固であり、芯材3がフェノールフォームのよ
うに接着力の弱いものでも確実に接着することが可能で
ある。
The air permeable anchor material 6 is made to have air permeability because the gas permeable member 5 has excess gas components (chlorine, carbon dioxide, methylene chloride, formaldehyde, water vapor, hydrogen, etc.) in the core material 3. Or to allow a gas such as condensed water during the reaction to pass through. Further, since the breathable anchor material 6 is formed of a fibrous material, the surface material 1 and the core material 3 are
Is strong, and even if the core material 3 has a weak adhesive force such as phenol foam, it can be surely bonded.

【0012】また、少なくとも通気性アンカー材5には
凹部分6aと凸部分6bからなる凹凸リブ6を連続的に
形成するものである。この凹凸リブ6は表面材1の機械
的強度を向上すると共に、後記する通気性アンカー材5
と接着剤4を介して貼着される部分である。
In addition, at least the breathable anchor material 5 is formed with a concavo-convex rib 6 consisting of a concave portion 6a and a convex portion 6b continuously. The uneven ribs 6 improve the mechanical strength of the surface material 1, and the breathable anchor material 5 described later.
And a portion which is attached via the adhesive 4.

【0013】さらに、通気性アンカー材5には、通気性
アンカー材5と表面材1間に凹凸リブ6により断面略三
角形状の空隙αが形成されるものである。
Further, in the air permeable anchor material 5, a void α having a substantially triangular cross section is formed between the air permeable anchor material 5 and the surface material 1 by the uneven ribs 6.

【0014】この空隙αには図1(b)に拡大して示す
ように、芯材3の製造後に芯材3内から発生する反応ガ
スや水蒸気が通気性アンカー材5を介して放出される部
分であり、さらに放出されたガスは空隙αを介して建築
用パネルAの木口部分から外部に放出され、製造後の建
築用パネルAに反り、ふくれ等の悪影響をおよぼさない
ようにするものである。
As shown in an enlarged view in FIG. 1 (b), reaction gas and water vapor generated from inside the core material 3 after the core material 3 is produced are released through the air permeable anchor material 5 into the void α. Further, the released gas is released to the outside from the ostium of the building panel A through the void α so that the manufactured building panel A is not warped or swelled. It is a thing.

【0015】また、建築用パネルAの全体形状の例とし
ては図4に示すように、金属製長尺状の薄板からなる表
面材1、裏面材2と幅方向の一端に形成した雄型連結部
7、他端に形成した雌型連結部8、および化粧面9とか
ら形成したものであり、凹凸リブ6が建築用パネルAの
長手方向に沿って設けられているものである。また、図
では特に建築用パネルA同士の連結で生じる目地部に無
機ボード10、無機系パッキング材11を介在して、さ
らに防火性、耐火性の向上を図った建築用パネルAとし
たものである。
As an example of the overall shape of the building panel A, as shown in FIG. 4, a front surface member 1 and a rear surface member 2 made of a long metal thin plate and a male type connection formed at one end in the width direction. It is formed from the portion 7, the female connecting portion 8 formed at the other end, and the decorative surface 9, and the uneven ribs 6 are provided along the longitudinal direction of the building panel A. In addition, in the figure, in particular, the building board A is further improved in fire resistance and fire resistance by interposing the inorganic board 10 and the inorganic packing material 11 in the joint portion generated by the connection of the building panels A to each other. is there.

【0016】[0016]

【その他の実施例】以上説明したのは、本発明に係る建
築用パネルAの一実施例であり、図5〜図11に示すよ
うな建築用パネルAとすることもできる。すなわち、図
5(a)〜(c)において、(a)図は裏面材2にも通
気性アンカー材5を形成した建築用パネルA、(b)、
(c)図は表面材1の裏面、裏面材2の裏面に接着剤4
を全面に形成して通気性アンカー材5を形成した建築用
パネルAである。
[Other Embodiments] The embodiment described above is one embodiment of the building panel A according to the present invention, and a building panel A as shown in FIGS. That is, in FIGS. 5A to 5C, FIG. 5A shows a construction panel A in which the breathable anchor material 5 is formed on the back material 2 as well, FIG.
(C) The figure shows an adhesive 4 on the back surface of the front material 1 and on the back surface of the back material 2.
Is a building panel A in which the breathable anchor material 5 is formed on the entire surface.

【0017】また、図6(a)〜(e)は通気性アンカ
ー材5の凹凸リブ6のその他の実施例を示す部分拡大断
面図であり、円弧状、3角形状、4角形状、等任意であ
る。
6 (a) to 6 (e) are partially enlarged sectional views showing other embodiments of the uneven ribs 6 of the breathable anchor material 5, which are arcuate, triangular, quadrangular, etc. It is optional.

【0018】さらに、図7〜図10は建築用パネルAの
全体形状の例を示す断面図であり、図7(a)〜(c)
〜図9(a)〜(c)は表面材1として金属薄板を、裏
面材2としてアルミニウム蒸着紙等を用いた金属系サイ
ディングの例を示すものである。また、図10(a)〜
(e)は表面材1および裏面材2として金属薄板を用い
た大型金属パネルであり、耐火1時間構造試験に合格す
る建築用パネルAの例である。
7 to 10 are sectional views showing examples of the overall shape of the building panel A, and FIGS. 7 (a) to 7 (c).
9 (a) to 9 (c) show examples of metal-based siding using a thin metal plate as the surface material 1 and aluminum vapor-deposited paper as the back surface material 2. In addition, FIG.
(E) is a large-sized metal panel using a thin metal plate as the front surface material 1 and the back surface material 2, and is an example of the building panel A that passes the fireproof 1-hour structural test.

【0019】また、図11は表面材1に凹凸9aを形成
し意匠性を向上したものである。また、図10、および
図11において、12は柔軟性を有するパッキング材で
ある。なお、図1(a)、図4、図5(a)、および図
11においては接着剤4、図7〜図10においては接着
剤4と通気性アンカー材5は省略して示してある。
In addition, FIG. 11 shows the surface material 1 having irregularities 9a to improve the design. Further, in FIGS. 10 and 11, reference numeral 12 denotes a flexible packing material. The adhesive 4 is shown in FIGS. 1 (a), 4, 5 (a), and 11, and the adhesive 4 and the air-permeable anchor material 5 are omitted in FIGS.

【0020】[0020]

【発明の効果】以上説明したように本発明に係る建築用
パネルによれば、表面材と芯材の接着強度が大幅に向
上し、製造後に表面材と芯材が剥離することがない。
表面材と通気性アンカー材の凹凸リブにより形成される
空隙から、芯材内の反応ガスや水蒸気を建築用パネル外
部に放出でき、製造後の建築用パネルの反りやふくれ等
を防止できる。等の特徴、効果がある。
As described above, according to the building panel of the present invention, the adhesive strength between the surface material and the core material is significantly improved, and the surface material and the core material are not separated after manufacturing.
The reaction gas and water vapor in the core material can be released to the outside of the building panel from the voids formed by the uneven ribs of the surface material and the air-permeable anchor material, and the warp and blistering of the manufactured building panel can be prevented. There are features and effects such as.

【図面の簡単な説明】[Brief description of the drawings]

【図1】本発明に係る建築用パネルの代表例を示す説明
図である。
FIG. 1 is an explanatory view showing a typical example of a building panel according to the present invention.

【図2】本発明に係る建築用パネルに使用する通気性ア
ンカー材の一例を示す説明図である。
FIG. 2 is an explanatory view showing an example of a breathable anchor material used in the building panel according to the present invention.

【図3】本発明に係る建築用パネルに使用する通気性ア
ンカー材の一例を示す説明図である。
FIG. 3 is an explanatory view showing an example of a breathable anchor material used in the building panel according to the present invention.

【図4】本発明に係る建築用パネルの全体形状の一例を
示す説明図である。
FIG. 4 is an explanatory view showing an example of the overall shape of the building panel according to the present invention.

【図5】本発明に係る建築用パネルのその他の例を示す
説明図である。
FIG. 5 is an explanatory view showing another example of the building panel according to the present invention.

【図6】本発明に係る建築用パネルのその他の例を示す
説明図である。
FIG. 6 is an explanatory view showing another example of the building panel according to the present invention.

【図7】本発明に係る建築用パネルのその他の例を示す
説明図である。
FIG. 7 is an explanatory view showing another example of the building panel according to the present invention.

【図8】本発明に係る建築用パネルのその他の例を示す
説明図である。
FIG. 8 is an explanatory view showing another example of the building panel according to the present invention.

【図9】本発明に係る建築用パネルのその他の例を示す
説明図である。
FIG. 9 is an explanatory view showing another example of the building panel according to the present invention.

【図10】本発明に係る建築用パネルのその他の例を示
す説明図である。
FIG. 10 is an explanatory view showing another example of the building panel according to the present invention.

【図11】本発明に係る建築用パネルのその他の例を示
す説明図である。
FIG. 11 is an explanatory view showing another example of the building panel according to the present invention.

【符号の説明】[Explanation of symbols]

α 空隙 A 建築用パネル 1 表面材 2 裏面材 3 芯材 4 接着剤 5 通気性アンカー材 6 凹凸リブ 6a 凹部分 6b 凸部分 7 雄型連結部 8 雌型連結部 9 化粧面 9a 凹凸 10 無機ボード 11 無機系パッキング材 12 パッキング材 α Void A Construction panel 1 Surface material 2 Back material 3 Core material 4 Adhesive 5 Breathable anchor material 6 Concavo-convex rib 6a Recessed portion 6b Convex portion 7 Male connection portion 8 Female connection portion 9 Decorative surface 9a Concavity and convexity 10 Inorganic board 11 Inorganic packing material 12 Packing material

フロントページの続き (51)Int.Cl.6 識別記号 庁内整理番号 FI 技術表示箇所 E04F 13/18 8913−2E E04F 13/18 B Continuation of the front page (51) Int.Cl. 6 Identification code Office reference number FI Technical display area E04F 13/18 8913-2E E04F 13/18 B

Claims (1)

【特許請求の範囲】[Claims] 【請求項1】 表面材と裏面材にて合成樹脂発泡体から
なる芯材をサンドイッチした建築用パネルにおいて、少
なくとも前記表面材の裏面に接着剤を介して凹凸リブを
形成した繊維状物よりなるシート状で長尺状の通気性ア
ンカー材を配設したことを特徴とする建築用パネル。
1. A building panel in which a core material made of synthetic resin foam is sandwiched between a surface material and a back surface material, and is made of a fibrous material in which uneven ribs are formed on at least the back surface of the surface material through an adhesive. A construction panel comprising a sheet-shaped and long air-permeable anchor material.
JP31871695A 1995-12-07 1995-12-07 Building panel Pending JPH09158356A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP31871695A JPH09158356A (en) 1995-12-07 1995-12-07 Building panel

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP31871695A JPH09158356A (en) 1995-12-07 1995-12-07 Building panel

Publications (1)

Publication Number Publication Date
JPH09158356A true JPH09158356A (en) 1997-06-17

Family

ID=18102180

Family Applications (1)

Application Number Title Priority Date Filing Date
JP31871695A Pending JPH09158356A (en) 1995-12-07 1995-12-07 Building panel

Country Status (1)

Country Link
JP (1) JPH09158356A (en)

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR100901079B1 (en) * 2009-02-10 2009-06-03 조정태 Assembling buildings for panels
KR100913603B1 (en) * 2009-04-08 2009-08-26 조정태 Assembling buildings for panel
WO2010080003A3 (en) * 2009-01-12 2010-10-21 Cho Jeong Tae Assembly type panel for building construction
WO2011136401A1 (en) * 2010-04-26 2011-11-03 Cho Jeong-Tae Sectional building panel and wall block
JP2015527226A (en) * 2012-07-10 2015-09-17 ティッセンクルップ スチール ヨーロッパ アーゲーThyssenkrupp Steel Europe Ag Sandwich sheet metal and manufacturing method thereof
CN113389342A (en) * 2021-07-01 2021-09-14 黄振深 High-strength aluminum veneer for building outer wall

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2010080003A3 (en) * 2009-01-12 2010-10-21 Cho Jeong Tae Assembly type panel for building construction
KR100901079B1 (en) * 2009-02-10 2009-06-03 조정태 Assembling buildings for panels
KR100913603B1 (en) * 2009-04-08 2009-08-26 조정태 Assembling buildings for panel
WO2011136401A1 (en) * 2010-04-26 2011-11-03 Cho Jeong-Tae Sectional building panel and wall block
JP2015527226A (en) * 2012-07-10 2015-09-17 ティッセンクルップ スチール ヨーロッパ アーゲーThyssenkrupp Steel Europe Ag Sandwich sheet metal and manufacturing method thereof
CN113389342A (en) * 2021-07-01 2021-09-14 黄振深 High-strength aluminum veneer for building outer wall
CN113389342B (en) * 2021-07-01 2022-09-16 山东掘金铝业有限公司 High-strength aluminum veneer for building outer wall

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