JP2007083400A - Postforming processing material - Google Patents

Postforming processing material Download PDF

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JP2007083400A
JP2007083400A JP2005271312A JP2005271312A JP2007083400A JP 2007083400 A JP2007083400 A JP 2007083400A JP 2005271312 A JP2005271312 A JP 2005271312A JP 2005271312 A JP2005271312 A JP 2005271312A JP 2007083400 A JP2007083400 A JP 2007083400A
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thermosetting resin
curved surface
decorative board
resin decorative
post
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JP4603960B2 (en
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Takayuki Mano
隆之 真野
Takaaki Inoue
敬章 井上
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Aica Kogyo Co Ltd
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Aica Kogyo Co Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To enable small-R processing while holding the strength of an R-part. <P>SOLUTION: In this postforming processing material composed of a woody base material, an edge reinforcing material and a thermosetting resin decorative sheet, the edge reinforcing material is joined to the side surface of the woody base material while a curved surface is formed at least at the upper edge of the edge reinforcing material and a U groove is formed at the back of a part becoming the curved surface of the thermosetting resin decorative sheet to cover the woody base material and the edge reinforcing material so as to come into contact with the curved surface of the edge reinforcing material. At least at the upper end of the edge reinforcing material, when the curvature (radius) of the curved surface is set to R mm and the thickness of thermosetting resin decorative sheet is set to t mm, the maximum depth (d) of the U-groove d is set to 1/2-5/6 t mm, the opening width (w) is set to 6-15 mm, and the curvature (radius) (r) is set to 10-60 R mm. <P>COPYRIGHT: (C)2007,JPO&INPIT

Description

本発明はポストフォーム加工材に関する。   The present invention relates to a post-form processed material.

これまでより前垂れ部分を10R前後の曲率半径で曲面加工したポストフォーム加工材があり、近年では3〜6Rといった小さな曲率半径の曲面を有するものが知られている。一般に、メラミン化粧板等の熱硬化性樹脂板を小さい曲面に曲げ加工することは、樹脂の性質上非常に難しいため、曲げ部分のみ熱硬化性樹脂板の裏面を切削して厚みを小さくし、曲げ性を向上させる方法が考えられている。この際、熱硬化性樹脂板の裏面を切削することにより、芯材との間に空隙が生じるが、空隙には樹脂、接着剤等を充填する。充填しない場合は、薄くなった部分の強度の低下が問題となる。   There is a post-form processed material obtained by processing a curved surface of a front sagging portion with a curvature radius of about 10R, and in recent years, a material having a curved surface with a small curvature radius of 3 to 6R is known. In general, it is very difficult to bend a thermosetting resin plate such as a melamine decorative board into a small curved surface due to the nature of the resin, so the thickness of the bent portion is reduced by cutting the back side of the thermosetting resin plate, A method for improving the bendability is considered. At this time, a gap is formed between the thermosetting resin plate and the core material by cutting the back surface of the thermosetting resin plate, and the gap is filled with a resin, an adhesive, or the like. If not filled, a decrease in strength of the thinned portion becomes a problem.

具体的な先行技術を示せば、特開2002−337108号公報の「積層板及びその製造方法」には、基材の表面に補強材を貼着し、さらにその上に化粧材を貼着した後、端縁部において化粧材の裏面側を切削して、層厚みが小さい湾曲処理領域と、比較的層厚みが大きい貼着領域とからなる湾曲面形成部を形成すると共に、基材には前記湾曲面形成部の湾曲処理領域と面する位置に切欠を形成し、前記湾曲面形成部の湾曲処理領域に合成樹脂を塗布すると共に、前記湾曲面形成部の貼着領域に接着剤を塗布した後、前記湾曲処理領域を湾曲させて、前記貼着領域を切削後の基材に貼着させる方法が開示されている。   If a specific prior art is shown, in "Laminate and manufacturing method thereof" in JP-A-2002-337108, a reinforcing material is attached to the surface of a base material, and a decorative material is further attached thereon. Then, the back surface side of the decorative material is cut at the edge portion to form a curved surface forming portion composed of a curved treatment region with a small layer thickness and an adhesion region with a relatively large layer thickness, A notch is formed at a position facing the curved processing area of the curved surface forming section, and a synthetic resin is applied to the curved processing area of the curved surface forming section, and an adhesive is applied to the bonding area of the curved surface forming section. Then, a method is disclosed in which the bending treatment area is bent and the sticking area is stuck to the substrate after cutting.

また、特開2001−88104号公報の「化粧パネルの製造方法」には、芯材の表面に芯材の巾と略同巾の表面材を接着し、次いで芯材の両側の端部を削り取って切り欠きを形成すると共に切り欠きの部分で表面材の裏面も削り取って薄肉表面材部を形成し、次いで削り面と薄肉表面材部との間にホットメルト系樹脂のような充填材を充填すると共に芯材を切り欠くことで形成された削り面に沿って薄肉表面材部を折り曲げて熱硬化性樹脂系接着剤のような接着剤で接着する方法が開示されている。   Japanese Patent Laid-Open No. 2001-88104 discloses a method for manufacturing a decorative panel in which a surface material having a width substantially equal to the width of the core material is bonded to the surface of the core material, and then both ends of the core material are scraped off. The notch is cut and the back surface of the surface material is also scraped off to form a thin surface material part, and then a filler such as a hot melt resin is filled between the shaving surface and the thin surface material part. In addition, a method is disclosed in which a thin-walled surface material portion is bent along a shaved surface formed by cutting out a core material and bonded with an adhesive such as a thermosetting resin adhesive.

更に、特開2004−358873号公報の「積層板及びその製造方法」は、角部に面取り状切欠き部が設けられた基材と、上記面取り状切欠き部に対応する個所に薄肉部が設けられた熱硬化性樹脂化粧板と、からなる積層板であって、上記熱硬化性樹脂化粧板が上記薄肉部において曲げられて、上記面取り状切欠き部が被覆されている積層板であり、薄肉部5によって囲まれる空隙部には、ホットメルト性接着剤6が充填する技術が開示されている。
特開2002−337108号公報 特開2001−88104号公報 特開2004−358873号公報
Furthermore, “Laminated plate and manufacturing method thereof” of Japanese Patent Application Laid-Open No. 2004-358873 has a base material in which chamfered cutout portions are provided at corners, and a thin-walled portion at a position corresponding to the chamfered cutout portion. A laminated board comprising a thermosetting resin decorative board provided, wherein the thermosetting resin decorative board is bent at the thin-walled portion and the chamfered notch is covered. A technique is disclosed in which a hot melt adhesive 6 is filled in a gap surrounded by the thin portion 5.
JP 2002-337108 A JP 2001-88104 A JP 2004-358873 A

しかしながら、化粧材の裏面切削溝と芯材との間にできる空隙に接着剤などを充填し、硬化させたものは、耐衝撃強度が弱く、化粧表面に衝撃があった場合にクラックが生じることがあった。   However, when the gap formed between the back surface cutting groove of the decorative material and the core material is filled with an adhesive or the like and cured, the impact strength is weak, and a crack occurs when there is an impact on the decorative surface. was there.

本発明は前記の課題を解決するために検討されたもので、木質系基材と熱硬化性樹脂化粧板とからなるポストフォーム加工材であって、該木質系基材の側面の少なくとも上端部には曲面が形成され、該熱硬化性樹脂化粧板の曲面部となる部分の裏面には該曲面より緩やかなU溝が形成され、該熱硬化性樹脂化粧板のU溝が、該上端部の曲面に当接するように、該木質系基材を被覆してなることを特徴とするポストフォーム加工材を要旨とするものである。   The present invention has been studied to solve the above problems, and is a post-form processing material comprising a wood base material and a thermosetting resin decorative board, and at least the upper end portion of the side surface of the wood base material Has a curved surface, and a U-groove that is gentler than the curved surface is formed on the back surface of the portion that becomes the curved surface portion of the thermosetting resin decorative plate, and the U-groove of the thermosetting resin decorative plate has the upper end portion. The gist of the present invention is a post-form processed material characterized in that the wood-based base material is coated so as to abut on the curved surface.

本発明のポストフォーム加工材は、基材の曲率に対して緩やかなU溝を形成した化粧板を用いるため1.5Rといった更に小さい曲率でも曲げ加工できる上、充填剤を用いる必要がなく、耐衝撃強度に優れ、クラックが生じることがない。また、端部補強材を用いることでより耐衝撃強度が向上する。用途としてはカウンター材、天板、パネル材などに好適に用いることができる。   Since the post-form processed material of the present invention uses a decorative board having a U-groove that is gentle with respect to the curvature of the base material, it can be bent even with a smaller curvature such as 1.5R, and it is not necessary to use a filler. Excellent impact strength and no cracking. Moreover, the impact strength is further improved by using the end reinforcement. As applications, it can be suitably used for counter materials, top plates, panel materials and the like.

以下、本発明を図面に基づいて詳細に説明する。図1は曲面部となる部分の裏面を切削した熱硬化性樹脂化粧板1の断面図、図2は、木質系基材5の断面図である。木質系基材の側面の上端部、下端部には面取り加工されて曲率(半径)Rmmの曲面が形成されている。   Hereinafter, the present invention will be described in detail with reference to the drawings. FIG. 1 is a cross-sectional view of a thermosetting resin decorative board 1 obtained by cutting the back surface of a portion that becomes a curved surface portion, and FIG. 2 is a cross-sectional view of a wood-based substrate 5. The upper and lower ends of the side surface of the woody base material are chamfered to form a curved surface having a curvature (radius) Rmm.

熱硬化性樹脂化粧板としては、メタクリル樹脂、不飽和ポリエステル樹脂などの樹脂を注型成形した注型品や、不飽和ポリエステル樹脂を用いてフィルム成形して得られるポリエステル樹脂化粧板、メラミン樹脂化粧板、ジアリルフタレ−ト樹脂化粧板などの化粧板が適用できる。望ましくは、耐汚染性、耐摩耗性にも優れた性能を有し、傷がつきにくい注型品や、メラミン樹脂化粧板を用いるのが好ましい。   As thermosetting resin decorative boards, cast products in which a resin such as methacrylic resin or unsaturated polyester resin is cast molded, polyester resin decorative boards obtained by film forming using unsaturated polyester resin, melamine resin cosmetics A decorative plate such as a decorative plate such as a plate or diallyl phthalate resin is applicable. Desirably, it is preferable to use a cast or a melamine resin decorative board that has excellent performance in stain resistance and abrasion resistance and is not easily damaged.

木質系基材としては、合板、パーティクルボード、MDF(中密度繊維板)、集成材、あるいは、これらを複合化したものなどが適用できる。   As the woody base material, plywood, particle board, MDF (medium density fiber board), laminated material, or a composite of these can be applied.

図3は図1の、図4は図2の要部拡大図であり、熱硬化性樹脂化粧板の裏面には2つの緩やかなU溝3が形成されている。U溝3は熱硬化性樹脂化粧板厚みをtmm、木質系基材の曲面の曲率(半径)をRmmとした時、開口幅wが6〜15mm、曲率r(半径)が10〜60Rmm、最大深さdが1/2〜5/6tmm
となるように切削加工により形成されている。これにより、基材とU溝との間に空隙が生じることなく充填剤を用いる必要がなく、ポストフォーム加工材の曲面が1〜6Rであっても衝撃強度を有するものとなる。また、接着剤のみで基材と熱硬化性樹脂化粧板を接着することができる。
3 is an enlarged view of the main part of FIG. 1 and FIG. 4 is an enlarged view of FIG. 2. Two gentle U-grooves 3 are formed on the back surface of the thermosetting resin decorative board. The U groove 3 has an opening width w of 6 to 15 mm and a curvature r (radius) of 10 to 60 Rmm, where the thickness of the thermosetting resin decorative board is tmm and the curvature (radius) of the curved surface of the wooden base material is Rmm. Depth d is 1 / 2-5 / 6tmm
It is formed by cutting so as to become. Thereby, it is not necessary to use a filler without generating a space between the base material and the U groove, and the post-form processed material has impact strength even if the curved surface of the post-form processed material is 1 to 6R. Moreover, a base material and a thermosetting resin decorative board can be adhere | attached only with an adhesive agent.

開口幅w、曲率(半径)rが下限に満たないと空隙が生じて充填剤を必要とし、その結果耐衝撃強度が劣りやすくなる。上限を超えると、取り扱い中破損しやすくなる。最大深さdが下限に満たないと1.5〜3Rといった小R加工が困難で、上限を超えると、取り扱い中破損しやすくなる。   If the opening width w and the curvature (radius) r are less than the lower limit, voids are generated and a filler is required, and as a result, the impact resistance strength tends to be poor. If it exceeds the upper limit, it becomes easy to break during handling. If the maximum depth d is less than the lower limit, small R machining such as 1.5 to 3R is difficult, and if it exceeds the upper limit, breakage tends to occur during handling.

図5は、前記の熱硬化性樹脂化粧板と木質系基材を接着剤を用いて先ず平面部に接着した際の断面図を示す。接着剤としては、通常公知のものであればよく、例えば、
水性ビニールウレタン系の接着剤、ウレタン系の接着剤、酢酸ビニール系の接着剤、ユリア系の接着剤、エポキシ系の接着剤、合成ゴム系の接着剤を用いて貼り合わせればよい。
FIG. 5 shows a cross-sectional view when the thermosetting resin decorative board and the wood-based substrate are first bonded to a flat surface using an adhesive. The adhesive may be any generally known one, for example
A water-based vinyl urethane adhesive, urethane adhesive, vinyl acetate adhesive, urea adhesive, epoxy adhesive, and synthetic rubber adhesive may be used for bonding.

図6は、木質系基材の側面を熱硬化性樹脂化粧板を曲げ加工することにより被覆して得られる本発明のポストフォーム加工材の断面図である。   FIG. 6 is a cross-sectional view of the post-form processed material of the present invention obtained by coating the side surface of the wood-based substrate by bending a thermosetting resin decorative board.

曲率Rが小さければ小さい程、曲げ加工が困難となるためメラミン樹脂化粧板の中でもポストフォーム型メラミン樹脂化粧板を用いるのがとりわけ好ましく、この化粧板は、化粧層、コア層に用いる含浸用樹脂に変性剤を配合して可塑化を付与したものであり、厚みは0.5〜1.2mmで、ポストフォーム性はJIS K 6902に基づく曲げ成形性試験で、170〜210℃の加熱条件で6〜12R曲がるものが好適である。厚みが下限に満たないと取り扱い中破損しやすく、上限を超えると1.5〜3Rといった小R加工が困難となる。加熱温度が210℃を超えると曲げ加工中フクレ、パンクが発生しやすく、170℃未満で曲がるものは強度的に弱く好ましくない。   The smaller the curvature R, the more difficult it is to bend. Therefore, it is particularly preferable to use a post-form type melamine resin decorative board among the melamine resin decorative boards, and this decorative board is an impregnation resin used for a decorative layer and a core layer. A plasticizer is imparted by blending a modifier with a thickness of 0.5 to 1.2 mm, and post-formability is a bending formability test based on JIS K 6902 under heating conditions of 170 to 210 ° C. Those with 6-12R bends are preferred. If the thickness is less than the lower limit, it tends to break during handling, and if it exceeds the upper limit, small R processing such as 1.5-3R becomes difficult. When the heating temperature exceeds 210 ° C., blisters and punctures are likely to occur during bending, and bending at a temperature lower than 170 ° C. is not preferable because it is weak in strength.

図7は木質系基材5の側面に端部補強材6を接合した芯材7を用いて、前記と同様に製造する概略図である。端部補強材を接合することにより、更に耐衝撃強度が向上する。   FIG. 7 is a schematic view manufactured in the same manner as described above, using the core material 7 in which the end reinforcing material 6 is joined to the side surface of the wooden base material 5. By joining the end reinforcing material, the impact strength is further improved.

端部補強材6としては、曲面を形成するための切削加工が可能で、耐衝撃強度に優れり、曲げ加工時の加熱に耐えられる合成樹脂成形品、合成樹脂板などを用いる。具体例を示せば、MMA、不飽和ポリエステル樹脂などによる成形品、メラミン樹脂、フェノール樹脂、エポキシ樹脂などによる積層板が挙げられる。   As the end reinforcement 6, a synthetic resin molded product, a synthetic resin plate, or the like that can be cut to form a curved surface, has excellent impact strength, and can withstand heating during bending is used. Specific examples include molded products made of MMA, unsaturated polyester resin, etc., and laminates made of melamine resin, phenol resin, epoxy resin, and the like.

以下、本発明について実施例にて詳細に説明する。
実施例1
木質系基材
厚み18mmのパーチクルボードの側面上部及び側面下部にR(半径)1.5mmの曲面を形成した。
熱硬化性樹脂化粧板
厚み0.8mmで、170℃で9Rの曲げ加工用ポストフォーム型メラミン樹脂化粧板を用意し、曲面となる部分の裏面側に開口幅wが12mm r(半径)36.25mm、最大深さdが0.5mmのU溝を形成した。
ポストフォーム加工材
木質系基材に合成ゴム系の接着剤を塗布し、平面部に熱硬化性樹脂化粧板を接着し、180℃で加熱しながら側面を被覆して、実施例1のポストフォーム加工材を得た。
Hereinafter, the present invention will be described in detail with reference to examples.
Example 1
Wooden base material A curved surface having an R (radius) of 1.5 mm was formed on the upper and lower sides of a particle board having a thickness of 18 mm.
Thermosetting resin decorative board A thickness of 0.8 mm, a post-form melamine resin decorative board for bending at 170 ° C. and 9R is prepared, and the opening width w is 12 mm on the back surface side of the curved surface. A U-groove having a width of 25 mm and a maximum depth d of 0.5 mm was formed.
Post-form processed material A synthetic rubber-based adhesive is applied to a wooden base material, a thermosetting resin decorative board is adhered to a flat surface, and the side surface is coated while heating at 180 ° C. A processed material was obtained.

実施例2
芯材
厚み18mmのパーチクルボードの側面に厚み10mmのフェノール樹脂積層板を接合し、上部及び下部にR(半径)1.5mmの曲面を形成した。
次いで実施例1と同様に加工して、実施例2のポストフォーム加工材を得た。
Example 2
Core material A phenol resin laminate having a thickness of 10 mm was bonded to the side surface of a particle board having a thickness of 18 mm, and curved surfaces having an R (radius) of 1.5 mm were formed at the upper and lower portions.
Subsequently, it processed like Example 1, and obtained the post-form processed material of Example 2. FIG.

実施例3
芯材
厚み18mmのパーチクルボードの側面に厚み10mmのフェノール樹脂積層板を接合し、上部及び下部にR(半径)6mmの曲面を形成した。
熱硬化性樹脂化粧板
厚み1.0mmで、190℃で9Rの曲げ加工なメラミン樹脂化粧板を用意し、曲面となる部分の裏面側に開口幅wが15mm、r(半径)56.5mm 最大深さdが0.8mmのU溝を形成した。
次いで実施例2と同様に加工して、実施例3のポストフォーム加工材を得た。

評価結果を表1に示す。
Example 3
Core material A phenol resin laminate having a thickness of 10 mm was bonded to the side surface of a particle board having a thickness of 18 mm, and curved surfaces having an R (radius) of 6 mm were formed at the upper and lower portions.
Thermosetting resin decorative board A melamine resin decorative board having a thickness of 1.0 mm and a bending process of 9R at 190 ° C. is prepared, and the opening width w is 15 mm and r (radius) is 56.5 mm A U groove having a depth d of 0.8 mm was formed.
Subsequently, it processed like Example 2, and the post-form processed material of Example 3 was obtained.

The evaluation results are shown in Table 1.

試験方法は以下の通りとした。
耐衝撃性;ポストフォーム加工材の曲面部にJIS B 1501の直径19.05mm±0.0015mm、質量28.1gの鋼球を案内導管を使用して自由落下させ、落下点に割れや凹みがあらわれる落球高さを測定。
※案内導管;鋼球自由落下の軌道を一定に案内する為の管。
The test method was as follows.
Impact resistance: A steel ball with a diameter of 19.05mm ± 0.0015mm and a mass of 28.1g of JIS B 1501 is dropped freely on the curved surface of the post-form processed material using a guide conduit * , and a crack or dent is formed at the drop point. Measure the height of falling balls.
* Guiding conduit: A tube for guiding the trajectory of a free-falling steel ball.

U溝を形成した熱硬化性樹脂化粧板の断面図。Sectional drawing of the thermosetting resin decorative board which formed U groove. 木質系基材の断面図。Sectional drawing of a wood type base material. 図1の要部拡大図。The principal part enlarged view of FIG. 図3の要部拡大図。The principal part enlarged view of FIG. 熱硬化性樹脂化粧板と木質系基材を接着剤を用いて先ず平面部に接着した際の断面図。Sectional drawing at the time of adhere | attaching a thermosetting resin decorative board and a wood type base material to a plane part first using the adhesive agent. ポストフォーム加工材の断面図。Sectional drawing of a post-form processed material. 他の実施形態を示す製造概略図。The manufacturing schematic which shows other embodiment. 従来の製造概略図。FIG.

符号の説明Explanation of symbols

1 熱硬化性樹脂化粧板
2 熱硬化性樹脂化粧板
3 U溝
5 木質系基材
6 端部補強材
7 芯材
11 凹部
12 空隙
21 ポストフォーム加工材
22 ポストフォーム加工材
DESCRIPTION OF SYMBOLS 1 Thermosetting resin decorative board 2 Thermosetting resin decorative board 3 U groove 5 Wooden base material 6 End reinforcement 7 Core material 11 Recess 12 Cavity 21 Post-form processing material 22 Post-form processing material

Claims (3)

木質系基材5と熱硬化性樹脂化粧板1とからなるポストフォーム加工材21であって、該木質系基材5の側面の少なくとも上端部には曲面が形成され、該熱硬化性樹脂化粧板の曲面部となる部分の裏面には該曲面より緩やかなU溝3が形成され、該熱硬化性樹脂化粧板のU溝3が、該上端部の曲面に当接するように、該木質系基材5を被覆してなることを特徴とするポストフォーム加工材21。 A post-form processed material 21 comprising a wood-based substrate 5 and a thermosetting resin decorative board 1, wherein a curved surface is formed at least at the upper end of the side surface of the wooden substrate 5, and the thermosetting resin makeup A wooden groove is formed so that a U-groove 3 that is gentler than the curved surface is formed on the back surface of the curved surface portion of the board, and the U-groove 3 of the thermosetting resin decorative board is in contact with the curved surface of the upper end portion. A post-form processed material 21, which is formed by coating a base material 5. 木質系基材5と端部補強材6と熱硬化性樹脂化粧板1とからなるポストフォーム加工材22であって、該木質系基材5の側面には該端部補強材6が接合されるとともに該端部補強材6の少なくとも上端部には曲面が形成され、該熱硬化性樹脂化粧板1の曲面部となる部分の裏面には該曲面より緩やかなU溝3が形成され、該熱硬化性樹脂化粧板1のU溝3が、該端部補強材6の曲面に当接するように、該木質系基材5と該端部補強材6を被覆してなることを特徴とするポストフォーム加工材22。 A post-form processing material 22 comprising a wood-based substrate 5, an end reinforcing material 6, and a thermosetting resin decorative board 1, and the end reinforcing material 6 is bonded to the side surface of the wooden substrate 5. In addition, a curved surface is formed at least at the upper end portion of the end reinforcing member 6, and a U-groove 3 that is gentler than the curved surface is formed on the back surface of the portion that becomes the curved portion of the thermosetting resin decorative board 1, The U-shaped groove 3 of the thermosetting resin decorative board 1 is formed by covering the wooden base material 5 and the end portion reinforcing material 6 so as to contact the curved surface of the end portion reinforcing material 6. Post-form processing material 22. 該熱硬化性樹脂化粧板がポストフォーム型メラミン樹脂化粧板であることを特徴とする請求項1又は2記載のポストフォーム加工材。 3. The post-form processed material according to claim 1, wherein the thermosetting resin decorative board is a post-form melamine resin decorative board.
JP2005271312A 2005-09-20 2005-09-20 Post-form processed material Expired - Fee Related JP4603960B2 (en)

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Cited By (2)

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Publication number Priority date Publication date Assignee Title
JP2017210789A (en) * 2016-05-25 2017-11-30 大建工業株式会社 Fitting frame
EP3778162A4 (en) * 2018-03-30 2021-12-22 Katomokuzai Kogyo Co., Ltd. Coated product manufacturing method and manufacturing device

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JPS5746886A (en) * 1980-09-02 1982-03-17 Matsushita Electric Works Ltd Method of working curved surface of decorative board in melamine
JPS58193130A (en) * 1982-05-07 1983-11-10 Aica Kogyo Co Ltd Post form-working process for melamine-decorative board
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JP2001088104A (en) * 1999-09-27 2001-04-03 Matsushita Electric Works Ltd Manufacture of decorative panel
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JPS5732958A (en) * 1980-08-05 1982-02-22 Matsushita Electric Works Ltd Method of working curved surface of melamine decorative board
JPS5746886A (en) * 1980-09-02 1982-03-17 Matsushita Electric Works Ltd Method of working curved surface of decorative board in melamine
JPS58193130A (en) * 1982-05-07 1983-11-10 Aica Kogyo Co Ltd Post form-working process for melamine-decorative board
JPS63180228U (en) * 1987-05-12 1988-11-21
JPH0523944U (en) * 1991-09-13 1993-03-30 イビデン株式会社 Top plate with curved surface
JPH0760723A (en) * 1993-08-24 1995-03-07 Okura Ind Co Ltd Reinforcement of side end surface of lightweight particle board
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JP2005271489A (en) * 2004-03-26 2005-10-06 Zuyou Kogyo Kk Postformed plate and manufacturing method therefor

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2017210789A (en) * 2016-05-25 2017-11-30 大建工業株式会社 Fitting frame
EP3778162A4 (en) * 2018-03-30 2021-12-22 Katomokuzai Kogyo Co., Ltd. Coated product manufacturing method and manufacturing device

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