JP2006137147A - Manufacturing method of wooden board - Google Patents

Manufacturing method of wooden board Download PDF

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JP2006137147A
JP2006137147A JP2004330777A JP2004330777A JP2006137147A JP 2006137147 A JP2006137147 A JP 2006137147A JP 2004330777 A JP2004330777 A JP 2004330777A JP 2004330777 A JP2004330777 A JP 2004330777A JP 2006137147 A JP2006137147 A JP 2006137147A
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wooden board
board
polyethylene glycol
heat
wooden
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Kiyomasa Nakamura
清誠 中村
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Eidai Co Ltd
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Eidai Co Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a manufacturing method of a more improved wooden board capable of conducting a dimensional stabilization treatment of the wooden board using polyethylene glycol in high efficiency without an additional apparatus such as a heater. <P>SOLUTION: A raw material 10 of the wooden board is sprinkled on a forming base 2 to be of a mat-like shape 11, and the formed mat 11 is heat-compressed by a hot press 3. The polyethylene glycol or polyethylene glycol mono-methacrylate 5 is applied on the wooden board 12 which still keeps the heat of the hot-pressing immediately after the heat pressing, and the coated wooden board 12a is cooled to the ambient temperature by natural radiation of heat. <P>COPYRIGHT: (C)2006,JPO&NCIPI

Description

本発明は木質ボードの製造方法に関し、特に、寸法安定性に優れた木質ボードの製造方法に関に関する。   The present invention relates to a method for manufacturing a wooden board, and more particularly to a method for manufacturing a wooden board having excellent dimensional stability.

加工木質材として、木削片または破砕片を接着剤とともに熱圧プレスして一体化したパーティクルボードと、パルプ状に解繊した植物繊維をやはり接着剤とともに熱圧プレスして一体化した木質繊維板(ファイバーボード)などが知られており、これらは総称して木質ボードと呼ばれている。木質繊維板は、その密度によって、軟質繊維板、中質繊維板(MDF)、硬質繊維板(ハードボード)に大別される。接着剤としては、フェノール樹脂、ユリア樹脂、イソシアネート樹脂、エポキシ樹脂などの熱硬化性樹脂が用いられる。このような木質ボードは、表面に突板や化粧紙などの化粧表面層を接着剤により積層した木質化粧板として、広い分野で用いられている。   As processed wood material, particle board in which wood chips or crushed pieces are hot-pressed and integrated with an adhesive, and wood fiber in which plant fibers that have been pulverized into pulp are also hot-pressed together with an adhesive A board (fiber board) and the like are known, and these are collectively called a wooden board. Wood fiber boards are roughly classified into soft fiber boards, medium fiber boards (MDF), and hard fiber boards (hard boards) according to their density. As the adhesive, thermosetting resins such as phenol resin, urea resin, isocyanate resin, and epoxy resin are used. Such a wooden board is used in a wide field as a wooden decorative board in which a decorative surface layer such as a veneer or a decorative paper is laminated on the surface with an adhesive.

しかし、従来の木質ボードは、水分を吸湿したときの寸法安定性に乏しく、床材の基材として木質ボードを使用したときに、ふくれ、伸び縮みによる目隙、突きあげ等の問題が生じる場合がある。木質ボードの寸法安定性を向上させるために、従来から木質ボードを化学的に処理することが行われており、その中のひとつに、PEG処理が知られている。PEG処理は、木質ボード中の水分を代表的な寸法安定化剤であるPEG(ポリエチレングリコール)に置き換え、充填されたその分子によって、木質ボードの伸び縮みを抑えようとするものであり、大きな成果を挙げている。   However, conventional wooden boards have poor dimensional stability when moisture is absorbed, and when wooden boards are used as the base material for flooring, problems such as blistering, gaps due to expansion and contraction, and lifting may occur. There is. In order to improve the dimensional stability of the wood board, the wood board has been conventionally chemically treated, and PEG treatment is known as one of them. PEG treatment replaces the moisture in the wooden board with PEG (polyethylene glycol), which is a typical dimensional stabilizer, and attempts to suppress the expansion and contraction of the wooden board by the filled molecules. Cite.

特許文献1には、その一例が示されており、木片に熱硬化性樹脂を噴霧処理してフォーミングした後、板状に熱圧締成形し、続いて冷却した後に、必要寸法に裁断し、木口からスプレーノズルを用いて寸法安定化剤として機能する液状非吸湿剤(例えば、ポリエチレングリコールまたはポリエチレングリコールメタアクリル酸)を噴霧して浸透含浸させ、その後、養生することにより、寸法安定化したパーティクルボードを製造するようしている。   One example is shown in Patent Document 1, and after thermoforming resin is sprayed and formed on a piece of wood, it is hot pressed into a plate shape, subsequently cooled, and then cut to the required dimensions. Particles that have been dimensionally stabilized by spraying and impregnating a liquid non-humidifier (such as polyethylene glycol or polyethylene glycol methacrylic acid) that functions as a dimension stabilizer using a spray nozzle from the mouth, followed by curing. I am trying to manufacture a board.

特開平08−300320号公報JP-A-08-300320

ところで、ポリエチレングリコールの変成物質にポリエチレングリコールモノメタクリレートがある。これは、重合することで水分による溶脱がなくなる性質を有しており、樹脂の可使期間に制限がある。硬化剤を使用することにより可使期間を調整することができ、強力な硬化剤を使用すれば樹脂の硬化が早くなり、木質ボードに浸透含浸させて寸法安定化する場合の処理効率をあげることができる。しかし、樹脂の可使期間が短くなり、特許文献1に記載の方法のようにスプレーノズルで噴霧する場合での作業効率が悪くなる。   By the way, there is polyethylene glycol monomethacrylate as a modified substance of polyethylene glycol. This has a property that leaching due to moisture is eliminated by polymerization, and the usable life of the resin is limited. Use time can be adjusted by using a hardener, the use of a strong hardener will accelerate the curing of the resin, increase the processing efficiency when osmotically impregnated into a wooden board to stabilize dimensions Can do. However, the pot life of the resin is shortened, and the working efficiency in the case of spraying with a spray nozzle as in the method described in Patent Document 1 is deteriorated.

硬化剤を少なくするあるいは弱い硬化剤を用いることにより、作業効率の低下を抑えることができるが、寸法安定化の処理効率が低下する。ポリエチレングリコールモノメタクリレートを浸透含浸させた後に、パーティクルボードを加熱することによって、処理効率を向上することができるが、特許文献1に記載の方法のようにフォーミングしたマット(パーティクルボード)を冷却した後に、ポリエチレングリコールモノメタクリレートを浸透含浸させる方法の場合、そのための加熱装置が別途必要となる。   By reducing the curing agent or using a weak curing agent, it is possible to suppress a decrease in work efficiency, but the processing efficiency for dimensional stabilization decreases. The treatment efficiency can be improved by heating the particle board after impregnating and impregnating the polyethylene glycol monomethacrylate, but after cooling the mat (particle board) formed as in the method described in Patent Document 1, In the case of the method of impregnating and impregnating polyethylene glycol monomethacrylate, a heating device for this is separately required.

本発明は上記のような事情に鑑みてなされたものであり、木質ボードの製造過程において、例えばポリエチレングリコールモノメタクリレートのような寸法安定化剤を使用した木質ボードの寸法安定化処理を、加熱装置のような付加的装置を用いることなく高い作業効率で行い得るようにした、より改良された木質ボードの製造方法を提供することを目的とする。   The present invention has been made in view of the circumstances as described above, and in the manufacturing process of a wooden board, for example, a heating device that performs a dimensional stabilization process of a wooden board using a dimensional stabilizer such as polyethylene glycol monomethacrylate. It is an object of the present invention to provide a more improved method for producing a wood board that can be performed with high work efficiency without using an additional device such as the above.

本発明による木質ボードの製造方法は、木質ボードの原料をフォーミング用基台の上に散布してマット状とする工程、フォーミングされたマットを熱圧プレスで熱圧締して木質ボードとする工程とを少なくとも含む木質ボードの製造方法であって、熱圧プレス後であって熱圧時の熱が残っている状態の木質ボードに寸法安定化剤を塗布する工程と、塗布後の木質ボードを自然放熱により常温まで冷却する工程とをさらに含むことを特徴とする。   The method for producing a wooden board according to the present invention includes a step of spreading a raw material of a wooden board on a forming base to form a mat, and a step of heat-pressing the formed mat with a hot press to form a wooden board A process for applying a dimensional stabilizer to a wooden board that has been subjected to hot-pressing and in which heat remains during hot pressing, and a wooden board after application. And a step of cooling to room temperature by natural heat dissipation.

本発明において「木質ボード」の語は、前記したようにパーティクルボードと木質繊維板の双方を含むものとして使用しており、従って「木質ボードの原料」も、具体的な対象物がパーティクルボードであるか木質繊維板であるかによってそれぞれ選択される。「フォーミング用基台」に付いても同様である。いずれにしても、木質ボードの原料をフォーミング用基台の上に散布してマット状とする工程と、フォーミングしたマットを熱圧プレスにより熱圧締して木質ボードとする工程は、従来の木質ボードの製造工程におけると同じであってよい。   In the present invention, the term “wood board” is used to include both particle board and wood fiber board as described above. Therefore, “wood board raw material” is also a specific object of particle board. It is selected depending on whether it is wood fiberboard or not. The same applies to the “forming base”. In any case, the process of spreading the raw material of the wooden board on the forming base and making it into a mat shape, and the process of hot pressing the formed mat with a hot press to form a wooden board are the conventional wooden It may be the same as in the board manufacturing process.

本発明において、寸法安定化剤に特に制限はなく、従来から使用されてきたものを適宜用いることができる。例えば、尿素樹脂やメラミン樹脂のようなアミノ樹脂、グリオキザール樹脂、MDI(ジフェニルメタン・ジイソシアネート)あるいはポリエチレングリコールモノメタクリレートのように、硬化剤と共に木質ボード内に含浸し重合して高分子化することにより木質安定化剤としての機能を果たすものであってもよく、尿素、グリオキザール、ポリエチレングリコールのように硬化剤を使用しなくても木質ボード内に含浸することにより木質安定化剤としての機能を果たすことができるものであってもよい。なかでも、ポリエチレングリコールおよびポリエチレングリコールモノメタクリレートは高い寸法安定性が得られることから特に好ましい。   In the present invention, the dimensional stabilizer is not particularly limited, and those conventionally used can be appropriately used. For example, an amino resin such as urea resin or melamine resin, glyoxal resin, MDI (diphenylmethane diisocyanate) or polyethylene glycol monomethacrylate is impregnated into a wooden board together with a curing agent and polymerized to polymerize it. It may function as a stabilizer, and it functions as a wood stabilizer by impregnating the wood board without using a curing agent such as urea, glyoxal, and polyethylene glycol. It may be possible. Among these, polyethylene glycol and polyethylene glycol monomethacrylate are particularly preferable since high dimensional stability can be obtained.

本発明においては、熱圧プレス後であって熱圧時の熱が残っている状態の木質ボードに上記した寸法安定化剤のいずれかを塗布するようにする。寸法安定化剤が前記したアミノ樹脂、グリオキザール樹脂、MDI、ポリエチレングリコールモノメタクリレートのように、硬化剤と共に用いることが望ましいタイプの寸法安定化剤の場合には、塗布されて内部に含浸した寸法安定化剤は、木質ボード内部に蓄積された熱によって迅速に硬化するので、別途硬化促進のための加熱装置を必要としない利点がある。また、添加する硬化剤を少なくすることができ、寸法安定化剤の可使期間を長くすることができる。さらに、木質ボードの温度が高い状態で寸法安定化剤を塗布することにより、寸法安定化剤の粘度が低下するので、木質ボード内部への浸透も容易となる。   In the present invention, any of the above-described dimensional stabilizers is applied to a wooden board after hot pressing and in which heat at the time of hot pressing remains. If the dimension stabilizer is a type of dimension stabilizer that is desirably used together with a curing agent, such as the amino resin, glyoxal resin, MDI, and polyethylene glycol monomethacrylate described above, the dimension stability is applied and impregnated inside. Since the agent hardens quickly by the heat accumulated in the wood board, there is an advantage that a heating device for promoting hardening is not required separately. Moreover, the hardening agent to add can be decreased and the useful life of a dimension stabilizer can be lengthened. Furthermore, since the viscosity of a dimension stabilizer falls by apply | coating a dimension stabilizer in the state where the temperature of a wooden board is high, the osmosis | permeation to the inside of a wooden board also becomes easy.

また、寸法安定化剤が、尿素、グリオキザール、ポリエチレングリコールのように硬化剤を必要としないタイプのものの場合、常温では粘度が高くそのままでは木質ボード内に含浸することはないが、本発明の方法によれば、木質ボード内部に蓄積された熱によって加熱されて粘度が低下し、木質ボード内に容易に浸透することができるようになる。そのために、別途、粘度を低くするための加熱装置が不要となる利点がある。   In addition, when the dimensional stabilizer is of a type that does not require a curing agent such as urea, glyoxal, and polyethylene glycol, the viscosity is high at room temperature and the wood board is not impregnated as it is, but the method of the present invention According to the above, the viscosity is lowered by being heated by the heat accumulated in the wood board, and the wood board can easily penetrate into the wood board. Therefore, there is an advantage that a heating device for lowering the viscosity is not necessary.

いずれ場合も、寸法安定化剤を塗布した木質ボードは自然放熱により常温まで冷却される。冷却された木質ボードは、必要に応じてサンディングされ、所定厚みに整えた製品とされる。   In either case, the wooden board coated with the dimension stabilizer is cooled to room temperature by natural heat dissipation. The cooled wood board is sanded as necessary to obtain a product adjusted to a predetermined thickness.

以下、図面を参照しながら、本発明による木質ボードの製造方法をより具体的に説明する。図1は、本発明による木質ボード(例えば、MDF)を製造する方法を概略的に示している。   Hereinafter, the manufacturing method of the wooden board by this invention is demonstrated more concretely, referring drawings. FIG. 1 schematically illustrates a method of manufacturing a wood board (eg, MDF) according to the present invention.

通常の方法により古材等をパルプ状に解繊して植物繊維(ファイバー)化したものに、熱硬化性樹脂(尿素樹脂、メラミン樹脂、フェノール樹脂、水溶性イソシアレート樹脂等)を接着剤としてスプレー等で塗布した原料を用意し、それをホッパー1から、フォーミング用基台(この例では、ベルトコンベアとして示している)2の上に、適宜の厚さに散布してマット状11にフォーミングする(図1a)。フォーミングされたマット11は熱圧プレス装置3に送られ熱圧締されて木質ボード12となる(図1b)。   Using a thermosetting resin (urea resin, melamine resin, phenolic resin, water-soluble isocyanate resin, etc.) as an adhesive to what has been defibrated into pulp-like fiber from old materials by ordinary methods Prepare a raw material applied by spraying, etc., and form it into a mat 11 by spreading it from the hopper 1 onto a forming base 2 (shown as a belt conveyor in this example) to an appropriate thickness. (FIG. 1a). The formed mat 11 is sent to the hot press machine 3 and hot pressed to form a wood board 12 (FIG. 1b).

解圧直後の木質ボード12に対して、すなわち、まだ圧締時の熱が残存している熱い状態の木質ボード12の表面に、スプレー塗布装置4などの手段によって、寸法安定化剤であるポリエチレングリコールモノメタクリレートの水溶液(硬化剤をわずかに含む)5を塗布する(図1c)。なお、図示の例では、一方の面に水溶液をスプレー塗布し、他方の面から適宜のポンプPにより吸引している、塗布したポリエチレングリコールモノメタクリレートの内部含浸を容易にしているが、吸引は省略することもできる。また、両面からポリエチレングリコールモノメタクリレートの水溶液5を塗布するようにしてもよい。   Polyethylene, which is a dimensional stabilizer, is applied to the wood board 12 immediately after decompression, that is, on the surface of the wood board 12 in a hot state in which heat at the time of pressing still remains by means of a spray coating device 4 or the like. An aqueous solution of glycol monomethacrylate (with a slight amount of curing agent) 5 is applied (FIG. 1c). In the example shown in the figure, an aqueous solution is spray-coated on one surface and sucked by an appropriate pump P from the other surface to facilitate internal impregnation of the applied polyethylene glycol monomethacrylate, but suction is omitted. You can also Further, an aqueous solution 5 of polyethylene glycol monomethacrylate may be applied from both sides.

ポリエチレングリコールモノメタクリレートを塗布した木質ボード12aは、そのまま堆積され、自然放熱により常温までゆっくりと(例えば、数日間程度)冷却する。それにより、寸法安定性が大きく向上した木質ボードが製造される(図1d)。   The wood board 12a coated with polyethylene glycol monomethacrylate is deposited as it is and slowly cooled to room temperature by natural heat dissipation (for example, for several days). As a result, a wooden board with greatly improved dimensional stability is produced (FIG. 1d).

本発明の製造方法によれば、塗布されたポリエチレングリコールモノメタクリレートは木質ボード自身が持つ熱により粘度が低下するので、内部に容易に浸透していくとともに、浸透したポリエチレングリコールモノメタクリレートは、やはり木質ボードが持つ熱により硬化が促進される。そのために、別途、粘度を低下させるための加熱装置や熱硬化用の加熱装置は不要であり、また、添加する硬化剤もきわめて少量(例えば、0.05重量%程度)でもって所要の硬化を得られるので、ポリエチレングリコールモノメタクリレートの可使期間を長くすることも可能となる。   According to the production method of the present invention, the viscosity of the applied polyethylene glycol monomethacrylate is reduced by the heat of the wooden board itself, so that it easily penetrates into the interior, and the penetrated polyethylene glycol monomethacrylate is still woody. Curing is accelerated by the heat of the board. Therefore, there is no need for a separate heating device for reducing the viscosity or a heating device for thermosetting, and the curing agent to be added can be cured with a very small amount (for example, about 0.05% by weight). Since it is obtained, it becomes possible to lengthen the pot life of polyethylene glycol monomethacrylate.

熱圧プレスを用いて定法によりMDFを製造した。プレス直後のMDFが熱い状態で、ポリエチレングリコールモノメタクリレートの水溶液(日本油脂製:ブレンマーPE350G:有効成分60%)に硬化剤KPSを0.05重量%混入した薬剤を35g/尺でスプレー塗布した。薬剤を塗布したMDFを冷却工程を通すことなくそのまま堆積し、数日間放置して常温までゆっくりと冷却することによって、ブレンマーPE350Gを硬化させた。冷却されたMDFをサンディングし、所定の厚みに整えて製品としたところ、高い寸法安定性を備えたMDF製品を得ることができた。 MDF was produced by a conventional method using a hot press. In a state where the MDF immediately after pressing was hot, an aqueous solution of polyethylene glycol monomethacrylate (Nippon Yushi Co., Ltd .: Bremer PE350G: active ingredient 60%) mixed with 0.05% by weight of the curing agent KPS was spray-coated at 35 g / scale 2 . . The MDF coated with the drug was deposited as it was without passing through the cooling step, and was allowed to stand for several days and slowly cooled to room temperature, thereby curing the Bremer PE350G. When the cooled MDF was sanded and adjusted to a predetermined thickness to obtain a product, an MDF product having high dimensional stability could be obtained.

本発明による木質ボード(例えば、MDF)を製造する方法を概略的に説明する図。The figure which illustrates schematically the method to manufacture the wooden board (for example, MDF) by this invention.

符号の説明Explanation of symbols

1…ホッパー、2…フォーミング用基台、3…熱圧プレス装置、4…スプレー塗布装置、5…寸法安定化剤であるポリエチレングリコールモノメタクリレートの水溶液、11…フォーミングされたマット、12…木質ボード、12a…ポリエチレングリコールモノメタクリレートを塗布した木質ボード、P…ポンプ   DESCRIPTION OF SYMBOLS 1 ... Hopper, 2 ... Forming base, 3 ... Hot press apparatus, 4 ... Spray coating apparatus, 5 ... Aqueous solution of polyethylene glycol monomethacrylate which is a dimensional stabilizer, 11 ... Formed mat, 12 ... Wood board , 12a ... Wood board coated with polyethylene glycol monomethacrylate, P ... Pump

Claims (5)

木質ボードの原料をフォーミング用基台の上に散布してマット状とする工程、フォーミングされたマットを熱圧プレスで熱圧締して木質ボードとする工程とを少なくとも含む木質ボードの製造方法であって、熱圧プレス後であって熱圧時の熱が残っている状態の木質ボードに寸法安定化剤を塗布する工程と、塗布後の木質ボードを自然放熱により常温まで冷却する工程とをさらに含むことを特徴とする木質ボードの製造方法。   A method of manufacturing a wooden board comprising at least a step of spreading a raw material of a wooden board on a forming base to form a mat, and a step of heat-pressing the formed mat with a hot press to form a wooden board In addition, a process of applying a dimensional stabilizer to a wooden board after heat-pressing and heat remaining at the time of hot pressing, and a process of cooling the wooden board after application to room temperature by natural heat dissipation Furthermore, the manufacturing method of the wooden board characterized by the above-mentioned. 木質ボードに寸法安定化剤を塗布する工程において、木質ボードの他面から吸引を行うことを特徴とする請求項1に記載の木質ボードの製造方法。   The method for producing a wooden board according to claim 1, wherein suction is performed from the other surface of the wooden board in the step of applying the dimension stabilizing agent to the wooden board. 木質ボードが木質繊維板である請求項1または2に記載の木質ボードの製造方法。   The method for producing a wood board according to claim 1 or 2, wherein the wood board is a wood fiber board. 木質ボードがパーティクルボードである請求項1または2に記載の木質ボードの製造方法。   The method for producing a wooden board according to claim 1 or 2, wherein the wooden board is a particle board. 寸法安定化剤が、ポリエチレングリコールまたはポリエチレングリコールモノメタクリレートである請求項1〜4のいずれかに記載の木質ボードの製造方法。   The method for producing a wooden board according to any one of claims 1 to 4, wherein the dimensional stabilizer is polyethylene glycol or polyethylene glycol monomethacrylate.
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