JP2006123216A - Manufacturing method of cementituous molded product - Google Patents

Manufacturing method of cementituous molded product Download PDF

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JP2006123216A
JP2006123216A JP2004311405A JP2004311405A JP2006123216A JP 2006123216 A JP2006123216 A JP 2006123216A JP 2004311405 A JP2004311405 A JP 2004311405A JP 2004311405 A JP2004311405 A JP 2004311405A JP 2006123216 A JP2006123216 A JP 2006123216A
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cement
mold
inorganic powder
cementituous
press
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JP4751050B2 (en
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Hiroshi Watanabe
宏 渡邉
Kazutaka Murozono
和孝 室園
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KMEW Co Ltd
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Kubota Matsushitadenko Exterior Works Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a manufacturing method of a cementituous molded product capable of obtaining excellent mold releasability at the time of mold opening after press molding in obtaining a cementituous molded product like a facing building material such as a roof tile or the like by the press molding of a cementituous molding material comprising a cement-containing inverse emulsion composition and capable of preventing the deterioration of moldability in a case using a mold release agent. <P>SOLUTION: The cementituous molding material 1 comprising the cement-containing inverse emulsion composition based on cement, water and an oily substance is used to manufacture the cementituous molded product by press molding. The cementituous molding material 1 is pressed and molded by a mold 3 in a state that an inorganic powder 2 is preliminarily bonded to the region of at least a part of the pressing surface 4 of the mold 3. By this method the mold releasability between the region to which the inorganic powder is bonded of the pressing surface and the molded product becomes extremely good at the time of mold opening. Further, the occurrence of cutting or wrinkles is also prevented. <P>COPYRIGHT: (C)2006,JPO&NCIPI

Description

本発明は、セメントと水と油性物質を主成分とするセメント含有逆エマルジョン組成物からなるセメント系成形材料を用いてセメント系成形品を製造する方法に関するものである。   The present invention relates to a method for producing a cement-based molded article using a cement-based molding material comprising a cement-containing inverse emulsion composition mainly composed of cement, water and an oily substance.

屋根瓦などの外装建材は耐透水性が必要とされるが、セメント系成形品は一般に耐透水性が十分に高いとはいえない。そこで従来からセメント系成形品の耐透水性を高めることが検討されており、セメントと水と油性物質を主成分とするセメント含有逆エマルジョン組成物からなるセメント系成形材料を成形することによって、耐透水性に優れたセメント系成形品を製造する方法が提案されている(例えば、特許文献1等参照)。   Although exterior building materials such as roof tiles are required to have water permeability, cement-based molded products generally cannot be said to have sufficiently high water resistance. Therefore, it has been studied to improve the water permeability of cement-based molded products, and by molding a cement-based molding material composed of a cement-containing inverse emulsion composition mainly composed of cement, water and oily substances, A method for producing a cement-based molded article having excellent water permeability has been proposed (see, for example, Patent Document 1).

そして下型と上型とからなる成形型を用いてこのセメント系成形材料をプレス成形するにあたっては、下型の上にセメント系成形材料を載せた後、下型と上型を型締めしてセメント系成形材料をプレス成形するようにしている。そしてこのようにして得られた成形体に対して養生硬化、塗装等行うことによりセメント系成形品を得るものである。   When press molding the cement-based molding material using a molding die composed of a lower die and an upper die, after placing the cement-based molding material on the lower die, the lower die and the upper die are clamped. Cement-based molding materials are press-molded. And a cement-type molded article is obtained by performing curing hardening, coating, etc. with respect to the molded object obtained in this way.

このようなプレス成形を行う場合には、成形体と下型や上型との離型性を確保するために、通常は予め下型や上型に離型剤を塗布しておく。ここで、セメント系成形材料は上記のようにセメントと水と油性物質を主成分とするセメント含有逆エマルジョン組成物からなるので、親油性であり、灯油などの一般的な離型剤を用いることができないので、このようなセメント系成形材料用の離型剤としては、ポリスチレン系の水系離型剤が使用されている。
特開平5−246747号公報
When such press molding is performed, a release agent is usually applied to the lower mold and the upper mold in advance in order to ensure the mold release property between the molded body and the lower mold and the upper mold. Here, since the cement-based molding material is composed of a cement-containing inverse emulsion composition mainly composed of cement, water, and an oily substance as described above, it is oleophilic and a general mold release agent such as kerosene should be used. Therefore, a polystyrene-based aqueous release agent is used as a release agent for such cement-based molding materials.
JP-A-5-246747

しかし、上記のような水系離型剤を用いる場合であっても、セメント含有逆エマルジョン組成物からなるセメント系成形材料は粘着性が高いことから、成形体と下型や上型との間に十分な離型性を確保することは難しい場合があり、型開きの際に成形体の一部が下型や上型の表面に付着するなどして外観性状が悪化するおそれがあった。また、プレス成形時に離型剤がいわゆる水走りという現象を起こしてセメント系成形材料の間に離型剤が介在し、成形体にキレやシワが生じてしまうこともある。ここで、通常のセメント系成形材料ではこのようなキレやシワが生じてもその後の養生硬化に特に影響を及ぼさないが、セメント含有逆エマルジョン組成物からなるセメント系成形材料ではキレやシワが発生した箇所は養生硬化時に十分に硬化せず、品質面で問題となるものである。   However, even when the above water-based mold release agent is used, the cement-based molding material composed of the cement-containing inverse emulsion composition has high adhesiveness, so that it is between the molded body and the lower mold or the upper mold. In some cases, it is difficult to ensure sufficient releasability. When the mold is opened, a part of the molded body may adhere to the surface of the lower mold or the upper mold, which may deteriorate the appearance. In addition, the release agent may cause a so-called water running phenomenon during press molding, and the release agent may be interposed between cement-based molding materials, which may cause cracks and wrinkles in the molded body. Here, even if such crevices and wrinkles occur in normal cement-based molding materials, there is no particular effect on the subsequent curing, but crevices and wrinkles occur in cement-based molding materials composed of a cement-containing inverse emulsion composition. The portion that has been cured does not cure sufficiently during curing and is problematic in terms of quality.

そのため、上記のようなセメント含有逆エマルジョン組成物からなるセメント系成形材料をプレス成形により得るにあたり、十分な離型性を確実に得ると共に離型剤がセメント系成形材料に介在することによる成形性の悪化を防止することができる方法が求められている。   Therefore, when obtaining a cement-based molding material composed of the above-mentioned cement-containing inverse emulsion composition by press molding, it is possible to reliably obtain sufficient mold release properties and moldability due to the presence of a release agent in the cement-based molding material. There is a need for a method that can prevent the deterioration of the above.

本発明は上記の点に鑑みて為されたものであり、セメント含有逆エマルジョン組成物からなるセメント系成形材料をプレス成形して屋根瓦等の外装建材といったセメント系成形品を得るにあたり、プレス成形後、型開き時に優れた離型性を得ることができ、且つ離型剤を用いる場合の成形性の悪化を防止することができるセメント系成形品の製造方法を提供することを目的とするものである。   The present invention has been made in view of the above points. In obtaining a cement-based molded article such as an exterior building material such as a roof tile by press-molding a cement-based molding material comprising a cement-containing inverse emulsion composition, press molding is performed. An object of the present invention is to provide a method for producing a cement-based molded article that can obtain excellent mold release properties when the mold is opened and can prevent deterioration of moldability when a mold release agent is used. It is.

本発明に係るセメント系成形品の製造方法は、セメントと水と油性物質を主成分とするセメント含有逆エマルジョン組成物からなるセメント系成形材料1を用い、プレス成形にてセメント系成形品を製造する方法において、成形型3におけるプレス面4の少なくとも一部の領域に予め無機粉体2を付着させた状態で前記成形型3にてセメント系成形材料1をプレスして成形することを特徴とするものである。   The method for producing a cement-based molded article according to the present invention uses a cement-based molding material 1 comprising a cement-containing inverse emulsion composition mainly composed of cement, water, and an oily substance, and produces a cement-based molded article by press molding. In the method, the cement-based molding material 1 is pressed and molded with the molding die 3 in a state where the inorganic powder 2 is previously attached to at least a part of the press surface 4 of the molding die 3. To do.

このセメント系成形品の製造方法においては、上記成形型3として上型3aと下型3bとから構成されるものを用い、上記プレス面4に予め無機粉体2を付着させるにあたっては、上型3aと下型3bのうち少なくとも一方におけるプレス面4に無機粉体2を付着させることができる。   In this method of manufacturing a cement-based molded article, a mold composed of an upper mold 3a and a lower mold 3b is used as the mold 3, and when the inorganic powder 2 is adhered to the press surface 4 in advance, the upper mold The inorganic powder 2 can be adhered to the press surface 4 of at least one of the 3a and the lower mold 3b.

また、上記プレス面4に予め無機粉体2を付着させるにあたり、前記プレス面4に無機粉体2を混合した離型剤を塗布し、或いは前記プレス面4に離型剤を塗布した後、無機粉体2を散布することも好ましい。   In addition, when the inorganic powder 2 is attached to the press surface 4 in advance, a release agent mixed with the inorganic powder 2 is applied to the press surface 4, or a release agent is applied to the press surface 4, It is also preferable to spray the inorganic powder 2.

本発明によれば、セメント系成形材料をプレス成形した後に型開きする際に、成形型のプレス面における無機粉体を付着した領域と、セメント系成形材料をプレス成形して得られる成形体との間の離型性が非常に良好なものとなって前記プレス面に成形体の一部が付着することが防止され、またキレやシワの発生も防止されて特に離型剤を用いている場合はいわゆる水走りの発生も防止されるものであり、このため成形性を向上して優れた外観を有するセメント系成形品を得ることができるものである。   According to the present invention, when the mold is opened after the cement-based molding material is press-molded, the region to which the inorganic powder is adhered on the pressing surface of the mold, and the molded body obtained by press-molding the cement-based molding material, In particular, the mold release property is very good and part of the molded product is prevented from adhering to the press surface, and the generation of cracks and wrinkles is also prevented. In this case, the occurrence of so-called water running is also prevented, so that it is possible to improve the moldability and obtain a cement-based molded article having an excellent appearance.

特に、成形型の上型と下型とのうち少なくとも一方のプレス面に無機粉体を付着させると、得られるセメント系成形品の所望の面の外観を向上させることが可能となるものである。   In particular, when an inorganic powder is adhered to at least one of the pressing surfaces of the upper die and the lower die, the appearance of the desired surface of the resulting cement-based molded product can be improved. .

更に、プレス面に無機粉体を付着させるにあたり、プレス面への無機粉体を混合した離型剤の塗布、或いはプレス面への離型剤を塗布した後の無機粉体の散布を行うことで、離型剤により更に離型性を向上すると共に離型剤を利用してプレス面に無機粉体を容易に付着させることができるものである。   Furthermore, when attaching the inorganic powder to the press surface, apply a release agent mixed with the inorganic powder to the press surface, or spray the inorganic powder after applying the release agent to the press surface. Thus, the mold release property is further improved by the mold release agent, and the inorganic powder can be easily adhered to the press surface using the mold release agent.

以下、本発明を実施するための最良の形態を説明する。   Hereinafter, the best mode for carrying out the present invention will be described.

本発明において使用されるセメント系成形材料1は、セメントと水と油性物質を主成分とするセメント含有逆エマルジョン組成物からなるものである。この組成物において、セメントと水の比率は任意に設定することができるが、重量比率で、セメント1に対して水0.3〜2の範囲が一般的に好ましい。   The cement-based molding material 1 used in the present invention is composed of a cement-containing inverse emulsion composition mainly composed of cement, water, and an oily substance. In this composition, the ratio of cement to water can be arbitrarily set, but the weight ratio is generally preferably in the range of 0.3 to 2 water with respect to cement 1.

セメントとしては、特に制限されるものではないが、ポルトランドセメント、フライアッシュセメント、高炉セメント、アルミナセメント、ハイアルミナセメント、シリカヒュームなどを挙げることができるものであり、これらを一種単独で用いたり、二種以上を併用したりすることができる。   The cement is not particularly limited, but can include Portland cement, fly ash cement, blast furnace cement, alumina cement, high alumina cement, silica fume, etc. Two or more types can be used in combination.

油性物質は水と逆エマルジョン(W/Oエマルジョン)を形成するためのものであり、特に制限されるものではないが、通常は疎水性の液状物質が利用され、例えばトルエン、キシレン、灯油、スチレン、ジビニルベンゼン、メチルメタクリレート、トリメチロールプロパントリメタクリレート、不飽和ポリエステル樹脂等を挙げることができ、これらを一種単独で用いたり、二種以上を併用したりすることができる。油性物質の配合量は、セメント含有逆エマルジョン組成物中の水と固形分の総量に対して5〜10体積%の範囲が好ましい。   The oily substance is for forming an inverse emulsion (W / O emulsion) with water, and is not particularly limited. Usually, a hydrophobic liquid substance is used, for example, toluene, xylene, kerosene, styrene. , Divinylbenzene, methyl methacrylate, trimethylolpropane trimethacrylate, unsaturated polyester resin, and the like. These can be used alone or in combination of two or more. The blending amount of the oily substance is preferably in the range of 5 to 10% by volume with respect to the total amount of water and solid content in the cement-containing inverse emulsion composition.

セメント含有逆エマルジョン組成物には上記の成分の他に、乳化剤を配合することが好ましい。乳化剤は逆エマルジョンに安定性を付与するために配合されるものであり、例えばソルビタンセスキオール、グリセロールモノステアレート、ソルビタンモノオレート、ジエチレングリコールモノステアレート、ソルビタンモノステアレート、ジグリセロールモノオレート等の非イオン界面活性剤、各種アニオン系界面活性剤、カチオン系界面活性剤等を用いることができる。乳化剤の配合量はセメント含有逆エマルジョン組成物中の水と固形分の総量に対して1〜3体積%の範囲が好ましい。   In addition to the above components, an emulsifier is preferably added to the cement-containing inverse emulsion composition. The emulsifier is blended to impart stability to the inverse emulsion. Ionic surfactants, various anionic surfactants, cationic surfactants, and the like can be used. The blending amount of the emulsifier is preferably in the range of 1 to 3% by volume with respect to the total amount of water and solid content in the cement-containing inverse emulsion composition.

セメント含有逆エマルジョン組成物中にはさらに、適宜量の補強材や各種添加剤を配合することができる。補強材としては、例えば砂利、パーライト、シラスバルーン、ガラス粉、アルミナシリケートなどの骨材、ポリプロピレン繊維、アクリル繊維、ビニロン繊維、アラミド繊維等の合成繊維や、炭素繊維、ガラス繊維、パルプなどの補強繊維を挙げることができる。   An appropriate amount of a reinforcing material and various additives can be further blended in the cement-containing inverse emulsion composition. Examples of reinforcing materials include aggregates such as gravel, perlite, shirasu balloon, glass powder, and alumina silicate, synthetic fibers such as polypropylene fiber, acrylic fiber, vinylon fiber, and aramid fiber, and reinforcement such as carbon fiber, glass fiber, and pulp. Mention may be made of fibers.

次に、セメント系成形品の製造について説明する。本発明では上記に例示したようなセメント系成形材料1を用い、プレス成形によりセメント系成形品を製造するものであるが、そのプレス成形時に、成形型3におけるプレス面4の少なくとも一部の領域に予め無機粉体2を付着させ、その状態で上型3aと下型3bとの間でセメント系成形材料1をプレスして成形するものである。   Next, production of a cement-based molded product will be described. In the present invention, a cement-based molding material 1 as exemplified above is used to produce a cement-based molded article by press molding. At the time of the press molding, at least a partial region of the press surface 4 of the molding die 3 is used. The inorganic powder 2 is previously attached to the substrate, and the cement-based molding material 1 is pressed and molded between the upper mold 3a and the lower mold 3b in that state.

上記無機粉体2としては適宜のものを用いることができるが、例えば珪砂等の鉱物質粉体、ガラス粉、酸化鉄粉等を用いることができる。またこの無機粉体2の粒径も特に制限されないが、0.1〜1mmの範囲が好ましい。   As the inorganic powder 2, an appropriate one can be used. For example, mineral powder such as silica sand, glass powder, iron oxide powder and the like can be used. The particle size of the inorganic powder 2 is not particularly limited, but is preferably in the range of 0.1 to 1 mm.

成形型3におけるプレス面4に無機粉体2を付着するにあたっては、上記のようにプレス面4の少なくとも一部の領域に無機粉体2を付着させることができるが、不連続な複数の領域に付着させても良く、勿論プレス面4の全領域に亘って無機粉体2を付着させても良い。例えば前記プレス面4における、良好な成形性が要求される領域にのみ、無機粉体2を付着させることができる。   In attaching the inorganic powder 2 to the press surface 4 in the mold 3, the inorganic powder 2 can be attached to at least a partial region of the press surface 4 as described above. Of course, the inorganic powder 2 may be adhered over the entire area of the press surface 4. For example, the inorganic powder 2 can be attached only to the area of the press surface 4 where good formability is required.

成形型3としては、例えば図1に示すように上型3aと下型3bとから構成されるものを用いることができ、無機粉体2は上型3aと下型3bのうち少なくとも一方におけるプレス面4に予め付着させることができる。勿論上型3aと下型3bの両方のプレス面4に無機粉体2を付着させても良い。例えばセメント系成形品として屋根瓦等の外装建材を製造する場合に、上型3a側に成形される面が製品の敷設時に外部に露出する場合は上型3aにおけるプレス面4aに無機粉体2を付着させ、また下型3b側に成形される面が製品の敷設時に外部に露出する場合は下型3bにおけるプレス面4bに無機粉体2を付着させることで、セメント系成形品の敷設時に外部に露出する面における成形性を向上することができる。   As the mold 3, for example, as shown in FIG. 1, a mold composed of an upper mold 3 a and a lower mold 3 b can be used, and the inorganic powder 2 is pressed by at least one of the upper mold 3 a and the lower mold 3 b. It can be pre-attached to the surface 4. Of course, the inorganic powder 2 may be adhered to the press surfaces 4 of both the upper die 3a and the lower die 3b. For example, when manufacturing exterior building materials such as roof tiles as cement-based molded products, if the surface molded on the upper mold 3a side is exposed to the outside when laying the product, the inorganic powder 2 is applied to the press surface 4a of the upper mold 3a. When the surface formed on the lower mold 3b side is exposed to the outside when laying the product, the inorganic powder 2 is adhered to the press surface 4b of the lower mold 3b so that the cement-based molded product is laid. Formability on the surface exposed to the outside can be improved.

プレス面4に無機粉体2を付着させるにあたっての付着量は特に制限されないが、本発明の目的、すなわち型開き時における離型性の向上と下記のような離型剤の使用時における水走りの発生防止による成形性の向上とを、十分に達成するためには、無機粉体2を付着させる領域におけるこの無機粉体2の付着量が10〜100g/m2の範囲となるようにすることが好ましい。 The amount of adhesion when the inorganic powder 2 is adhered to the press surface 4 is not particularly limited. However, the purpose of the present invention, that is, improvement of releasability at the time of mold opening and water running at the time of using a release agent as described below. In order to sufficiently improve the moldability by preventing the occurrence of the generation of the inorganic powder 2, the amount of the inorganic powder 2 adhered in the region where the inorganic powder 2 is adhered is in the range of 10 to 100 g / m 2. It is preferable.

また、プレス面4とセメント系成形材料1との間には、離型剤を介在させることにより更に離型性を向上させることが好ましい。ここで、上記のようなセメントと水と油性物質を主成分とするセメント含有逆エマルジョン組成物からなるセメント系成形材料1は親油性であり、このようなセメント系成形材料1用の離型剤としては、ポリスチレン系の水系離型剤を使用することが好ましい。このポリスチレン系の水系離型剤としては、株式会社日新化学研究所製の「NSH−955」を用いることができる。この「NSH−955」はポリスチレンを主成分とする水溶性離型剤であり、不揮発分20±1質量%、pH7.0〜9.0、比重1.00〜1.20(25℃)、粘度0.1Pa・s(100cps)の特性を有し、水に容易に分散する。従って、任意の割合で水で希釈して使用することができるものであり、本発明では0.1質量%以上の不揮発分濃度になるように希釈して使用するのが好ましい。   Further, it is preferable to further improve the releasability by interposing a release agent between the press surface 4 and the cement-based molding material 1. Here, the cement-based molding material 1 comprising the cement-containing inverse emulsion composition mainly composed of cement, water, and an oily substance as described above is oleophilic, and such a mold release agent for the cement-based molding material 1 is used. It is preferable to use a polystyrene-based aqueous release agent. As this polystyrene-based aqueous release agent, “NSH-955” manufactured by Nissin Chemical Laboratory Co., Ltd. can be used. This “NSH-955” is a water-soluble release agent mainly composed of polystyrene, and has a non-volatile content of 20 ± 1% by mass, a pH of 7.0 to 9.0, a specific gravity of 1.00 to 1.20 (25 ° C.), It has a viscosity of 0.1 Pa · s (100 cps) and is easily dispersed in water. Therefore, it can be used by diluting with water at an arbitrary ratio, and in the present invention, it is preferably used by diluting it so that the concentration of the nonvolatile content is 0.1% by mass or more.

図1は、成形型3の上型3aにおけるプレス面4にのみ無機粉体2を付着させる場合の例を示している。下型3bとしては、プレス面4bとなる上面に成形用の凹凸を設けたものなど、任意のものを用いることができ、また上型3aとしてもプレス面4aとなる下面に成形用の凹凸を設けたものなど、任意のものを用いることができる。   FIG. 1 shows an example in which the inorganic powder 2 is attached only to the press surface 4 of the upper mold 3 a of the mold 3. As the lower die 3b, an arbitrary one can be used, such as an upper surface provided with molding irregularities, and the upper die 3a also has molding irregularities on the lower surface serving as the pressing surface 4a. Arbitrary things, such as what was provided, can be used.

プレス成形にあたっては、図1(a)に示すように下型3bの上面のプレス面4bにセメント系成形材料1を載せる。   In press molding, as shown in FIG. 1A, the cement-based molding material 1 is placed on the press surface 4b on the upper surface of the lower mold 3b.

一方、上型3aの下面のプレス面4aには、図1(b)に示すように無機粉体2を付着させる。無機粉体2を付着させる手法は適宜選択できるが、例えば予め無機粉体2を上記のような水系離型剤に混合し、この無機粉体2を混合した離型剤をプレス面4(4a)に塗布することにより、プレス面4(4a)に無機粉体2を付着させると同時に成形時にプレス面4(4a)とセメント系成形材料1との間に離型剤を介在させることができる。また、プレス面4(4a)に離型剤を塗布した後に無機粉体2を散布しても良く、この場合もプレス面4(4a)に無機粉体2を付着させると同時に成形時にプレス面4(4a)とセメント系成形材料1との間に離型剤を介在させることができる。また、これらのように離型剤を利用して無機粉体2の付着を行うことにより、プレス面4(4a)へ無機粉体2を容易に付着させることができる。このような無機粉体2を付着させるための手法は、本実施形態のような上型3aのプレス面4aに無機粉体2を付着させる場合に限らず適用可能である。   On the other hand, the inorganic powder 2 is adhered to the press surface 4a on the lower surface of the upper mold 3a as shown in FIG. The method of attaching the inorganic powder 2 can be selected as appropriate. For example, the inorganic powder 2 is mixed in advance with the aqueous release agent as described above, and the release agent mixed with the inorganic powder 2 is used as the press surface 4 (4a). ) To apply the inorganic powder 2 to the press surface 4 (4a) and at the same time, a mold release agent can be interposed between the press surface 4 (4a) and the cement-based molding material 1 during molding. . Further, the inorganic powder 2 may be sprayed after the release agent is applied to the press surface 4 (4a). In this case, the inorganic powder 2 is adhered to the press surface 4 (4a) and at the same time the molding surface is pressed. A release agent may be interposed between 4 (4a) and the cement-based molding material 1. Moreover, the inorganic powder 2 can be easily attached to the press surface 4 (4a) by attaching the inorganic powder 2 using a release agent as described above. Such a method for attaching the inorganic powder 2 is not limited to the case where the inorganic powder 2 is attached to the press surface 4a of the upper mold 3a as in the present embodiment.

尚、成形型3のプレス面4に無機粉体2を付着させない領域が存在する場合、この領域にも必要に応じて離型剤を塗布することができる。   In addition, when the area | region which does not adhere the inorganic powder 2 to the press surface 4 of the shaping | molding die 3 exists, a mold release agent can be apply | coated also to this area | region as needed.

そして、図1(c)に示すように上型3aをそのプレス面4aが下型3bのプレス面4bと対向するようにして型締めすることによって、下型3bと上型3aの間でセメント系成形材料1をプレスして成形する。このように下型3bと上型3aの間でセメント系成形材料1をプレス成形することによって、所定形状の成形体5を成形することができる。   Then, as shown in FIG. 1 (c), the upper die 3a is clamped so that the press surface 4a of the upper die 3a faces the press surface 4b of the lower die 3b, whereby cement is formed between the lower die 3b and the upper die 3a. The system molding material 1 is pressed and molded. By pressing the cement-based molding material 1 between the lower mold 3b and the upper mold 3a in this way, a molded body 5 having a predetermined shape can be molded.

次いで、成形型3を型開きするが、このときプレス面4における無機粉体2を付着した面、本実施形態では上型3aにおけるプレス面4aと、成形体5との間の離型性が非常に良好なものとなり、前記プレス面4に成形体5の一部が付着することが防止され、またキレやシワの発生も防止されて離型剤を用いている場合の水走りの発生も防止されるものである。   Next, the mold 3 is opened. At this time, the surface of the press surface 4 to which the inorganic powder 2 is adhered, in this embodiment, the press surface 4a of the upper mold 3a and the mold body 5 have releasability. It becomes very good, and it is prevented that a part of the molded body 5 adheres to the press surface 4, and also generation of water running in the case of using a mold release agent is prevented since generation of cracks and wrinkles is also prevented. It is to be prevented.

また、プレス成形時にセメント系成形材料1の側に無機粉体2を付着させる場合は、プレス成形時におけるこのセメント系成形材料1の変形に伴って無機粉体2が付着されている位置が移動してしまって所望の位置に無機粉体2を付着させることができなくなり、また無機粉体2の付着量を制御することも困難となるが、プレス面4側に無機粉体2を付着させることでこのような無機粉体2の移動が生じにくくなり、所望の位置に所望の付着量で無機粉体2を配置することができるものである。   Further, when the inorganic powder 2 is attached to the cement-based molding material 1 side during press molding, the position where the inorganic powder 2 is adhered moves with the deformation of the cement-based molding material 1 during press molding. As a result, the inorganic powder 2 cannot be attached to a desired position, and it is difficult to control the amount of the inorganic powder 2 attached, but the inorganic powder 2 is attached to the press surface 4 side. Thus, the movement of the inorganic powder 2 is less likely to occur, and the inorganic powder 2 can be disposed at a desired position with a desired adhesion amount.

このようにして得られた成形体5は、後工程において養生硬化、塗装等が施されて、所望のセメント系成形品に仕上げられる。このようにして得られたセメント系成形品は、上記のようにプレス成形時における無機粉体2が付着されたプレス面4との離型性が良好であると共に水走りの発生が抑制されることから、その外観が非常に良好なものとなる。   The molded body 5 thus obtained is subjected to curing, coating, and the like in a subsequent process, and finished into a desired cement-based molded product. The cement-based molded article thus obtained has good releasability from the press surface 4 to which the inorganic powder 2 is adhered during press molding as described above, and the occurrence of water running is suppressed. Therefore, the appearance is very good.

また、セメント系成形体5における無機粉体2が付着されたプレス面4と接触していた面には、無機粉体2が転写されて付着されており、この無機粉体2によりこの面における耐滑り性が向上されている。このため、外部に露出する面に耐滑り性が必要とされるセメント系成形品を製造するためには本発明は特に有用なものであり、例えばセメント系成形品として屋根瓦を製造する場合には、屋根瓦の外部に露出する上面の外観を向上することができると共に、屋根上で作業する作業者が屋根瓦の上を移動する際などに滑り落ちるなどの事故の発生を防止することができるものである。   In addition, the inorganic powder 2 is transferred and adhered to the surface of the cement-based molded body 5 that has been in contact with the press surface 4 to which the inorganic powder 2 is adhered. Slip resistance is improved. For this reason, the present invention is particularly useful for manufacturing a cement-based molded product that requires slip resistance on the surface exposed to the outside. For example, when manufacturing roof tiles as a cement-based molded product. Can improve the appearance of the top surface exposed to the outside of the roof tile, and can prevent accidents such as slipping down when an operator working on the roof moves on the roof tile. Is.

ここで、従来においても屋根瓦等の表面の耐滑り性を向上するためにセメント系成形材料1のプレス成形後に得られた成形体5の表面に無機粉体2を付着させた後、更に成形することが行われていたが、本発明では、セメント系成形材料1のプレス成形時にプレス面4に無機粉体2を付着させることにより、この無機粉体2が離型性等の向上により外観を向上すると同時に得られるセメント系成形品の表面における耐滑り性を向上させるという複合的な作用をもたらすことができるものであり、且つ別工程において成形体5に無機粉体2を付着させる必要もなくなって工程の簡略化を図ることもできるものである。   Here, in order to improve the slip resistance of the surface of the roof tile or the like, the inorganic powder 2 is adhered to the surface of the molded body 5 obtained after the press molding of the cement-based molding material 1, and then further molded. However, in the present invention, the inorganic powder 2 is adhered to the press surface 4 during the press molding of the cement-based molding material 1 so that the appearance of the inorganic powder 2 is improved by improving the releasability and the like. In addition, it is possible to bring about a combined action of improving the slip resistance on the surface of the obtained cement-based molded article, and it is necessary to attach the inorganic powder 2 to the molded body 5 in a separate process. It is possible to simplify the process by eliminating the process.

本発明の実施の形態の一例を示すものであり、(a)乃至(c)は正面図である。An example of embodiment of this invention is shown and (a) thru | or (c) is a front view.

符号の説明Explanation of symbols

1 セメント系成形材料
2 無機粉体
3 成形型
3a 上型
3b 下型
4 プレス面
1 Cement-based molding material 2 Inorganic powder 3 Mold 3a Upper mold 3b Lower mold 4 Press surface

Claims (3)

セメントと水と油性物質を主成分とするセメント含有逆エマルジョン組成物からなるセメント系成形材料を用い、プレス成形にてセメント系成形品を製造する方法において、成形型におけるプレス面の少なくと一部の領域に予め無機粉体を付着させた状態で前記成形型にてセメント系成形材料をプレスして成形することを特徴とするセメント系成形品の製造方法。   In a method for producing a cement-based molded article by press molding using a cement-based molding material composed of a cement-containing inverse emulsion composition mainly composed of cement, water and an oily substance, at least a part of the press surface in the mold is used. A method for producing a cement-based molded article, comprising pressing a cement-based molding material with the molding die in a state where an inorganic powder is previously attached to the region. 上記成形型として上型と下型とから構成されるものを用い、上記プレス面に予め無機粉体を付着させるにあたっては、上型と下型のうち少なくとも一方におけるプレス面に無機粉体を付着させることを特徴とする請求項1に記載のセメント系成形品の製造方法。   When the mold is composed of an upper mold and a lower mold, and the inorganic powder is adhered to the press surface in advance, the inorganic powder is adhered to the press surface of at least one of the upper mold and the lower mold. The method for producing a cement-based molded article according to claim 1, wherein: 上記プレス面に予め無機粉体を付着させるにあたり、前記プレス面に無機粉体を混合した離型剤を塗布し、或いは前記プレス面に離型剤を塗布した後、無機粉体を散布することを特徴とする請求項1又は2に記載のセメント系成形品の製造方法。   When the inorganic powder is adhered to the press surface in advance, a release agent mixed with the inorganic powder is applied to the press surface, or the inorganic powder is sprayed after the release agent is applied to the press surface. The method for producing a cement-based molded article according to claim 1 or 2.
JP2004311405A 2004-10-26 2004-10-26 Method for producing cement-based molded product Expired - Fee Related JP4751050B2 (en)

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