JPH107935A - Cement-base ceramic coating material - Google Patents

Cement-base ceramic coating material

Info

Publication number
JPH107935A
JPH107935A JP15962696A JP15962696A JPH107935A JP H107935 A JPH107935 A JP H107935A JP 15962696 A JP15962696 A JP 15962696A JP 15962696 A JP15962696 A JP 15962696A JP H107935 A JPH107935 A JP H107935A
Authority
JP
Japan
Prior art keywords
cement
coating material
pref
ceramic coating
coating film
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
JP15962696A
Other languages
Japanese (ja)
Inventor
Seigo Yoneyama
省悟 米山
Masaichi Mizumoto
政一 水元
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.)
Daiyuu Paint Kk
Original Assignee
Daiyuu Paint Kk
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 Daiyuu Paint Kk filed Critical Daiyuu Paint Kk
Priority to JP15962696A priority Critical patent/JPH107935A/en
Publication of JPH107935A publication Critical patent/JPH107935A/en
Pending legal-status Critical Current

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Abstract

PROBLEM TO BE SOLVED: To obtain a cement-base ceramic coating material which gives a coating film excellent in substrate protection and dryability by compounding a cement-base ceramic coating material with a specific metal powder. SOLUTION: A cement-base ceramic coating material, such as one comprising a binder resin (e.g. a chlorinated rubber), cement (e.g. white cement), a pigment, a vehicle, a solvent, etc., is compounded with a zinc powder pref. having a particle size of 2-8μm, still pref. 3-5μm, pref. in an amt. of 1-700 pts.wt. still pref. 5-500 pts.wt., based on 100 pts.wt. other nonvolatile components. The zinc powder effectively accelerates the oxidative polymn. of a strongly alkaline cement-base fine ceramic powder while using oxygen and water as media, thus enabling the short-time curing of the coating film.

Description

【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION

【0001】[0001]

【発明の属する技術分野】この発明は優れた乾燥性と保
護性を有する塗膜を形成するセメント系セラミックス塗
料に関する。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a cement-based ceramic paint which forms a coating film having excellent drying and protective properties.

【0002】[0002]

【従来の技術】セメント系セラミックス塗料は保護性、
特に耐塩水性、耐水性および耐候性等の点で優れた塗膜
を形成するので、主として防食防錆用等として使用され
ているが、塗膜の乾燥性が悪いために、その長所の割に
は利用分野が制限されている。即ち、従来のセメント系
セラミックス塗料には、バインダー樹脂がセメント系セ
ラミックスと酸素や水分等との効果的な接触を妨げるた
めに硬化反応が著しく遅延すると共に、多孔質セメント
系セラミックスの微孔内に侵入した溶剤の揮発が効率よ
くおこなわれないために塗膜の乾燥硬化に長時間を要
し、塗装品の積み上げおよび重ね塗りや上塗り等の観点
からの作業効率を著しく低下させるという問題があり、
当該分野においてはこのような問題の解決策が要請され
ている。
2. Description of the Related Art Cement-based ceramic paints have protective properties,
In particular, it is used mainly for corrosion and rust prevention because it forms a coating film that is excellent in terms of salt water resistance, water resistance, weather resistance, etc. Has a limited field of use. That is, in conventional cement-based ceramic paints, the binder resin prevents effective contact between the cement-based ceramics and oxygen, moisture, etc., so that the curing reaction is remarkably delayed, and the pores of the porous cement-based ceramics are reduced. It takes a long time to dry and cure the coating film because the invading solvent is not volatilized efficiently, and there is a problem that the working efficiency from the viewpoint of stacking and overcoating or overcoating of the coated product is significantly reduced,
There is a need in the art for a solution to this problem.

【0003】[0003]

【発明が解決しようとする課題】この発明は当該分野の
このような実情に鑑み、セメント系セラミックス塗膜の
優れた保護性を損なうことなく、該塗膜に優れた乾燥性
を付与し得るセメント系セラミックス塗料を提供するた
めになされたものである。
SUMMARY OF THE INVENTION In view of the above-mentioned circumstances in the art, the present invention relates to a cement which can impart excellent drying properties to a cement-based ceramic coating film without impairing the excellent protection of the coating. It was made to provide a ceramic paint.

【0004】[0004]

【課題を解決するための手段】即ちこの発明は、亜鉛粉
末を含有するセメント系セラミックス塗料に関する。
That is, the present invention relates to a cement ceramic paint containing zinc powder.

【0005】[0005]

【発明の実施の形態】本発明によるセメント系セラミッ
クス塗料は、市販のセメント系セラミックス塗料(例え
ば、ダイユーペイント社製「サビーズM」、カナエ塗料社
製「カナエサビーズR」、ダイムワカイ社製「パーフェク
トガード55」、トーアペイント社製「ファインサビーズ
SR」および「サビーズA」等)に亜鉛粉末を適宜配合する
ことによって調製してもよいが、一般的には以下の配合
処方に従って調製すればよい。
BEST MODE FOR CARRYING OUT THE INVENTION Cement-based ceramic paints according to the present invention are commercially available cement-based ceramic paints (for example, "Savies M" manufactured by Daiyu Paint Co., Ltd., "Kanaesa Beads R" manufactured by Kanae Paint Co., Ltd., "Perfect Guard 55" manufactured by Daimwakai Co., Ltd.). , "Fine Sabbie SR" and "Sabbie A" manufactured by Toa Paint Co., Ltd.) may be prepared by appropriately blending zinc powder, but generally, it may be prepared according to the following formulation.

【0006】本発明による塗料に配合するバインダー樹
脂としてはアルキド系樹脂、ポリエステル系樹脂、ポリ
エーテル系樹脂、ビニル系樹脂、アクリル系樹脂、ゴム
系樹脂、等が例示される。バインダー樹脂の配合量は、
通常、0.01〜70重量%、好ましくは10〜50重
量%である。
Examples of the binder resin to be added to the coating composition of the present invention include alkyd resins, polyester resins, polyether resins, vinyl resins, acrylic resins, rubber resins and the like. The amount of the binder resin
Usually, it is 0.01 to 70% by weight, preferably 10 to 50% by weight.

【0007】本発明による塗料に配合するセメントとし
ては、普通ポルトランドセメント、早強ポルトランドセ
メント、超早強ポルトランドセメント、中庸熱ポルトラ
ンドセメント、特殊ポルトランドセメント(例えば、低
熱セメント、耐硫酸塩セメント、白色セメントおよびコ
ロイドセメント等)、高炉セメント、シリカセメント、
フライアッシュセメント、膨張セメント、急硬性セメン
ト、耐酸セメント、アルミナセメント、超速硬性セメン
ト等が例示されるが、特に好適なものは、白色セメント
および高炉セメント等である。セメントの配合量は、通
常、1〜60重量%、好ましくは10〜50重量%であ
る。
[0007] Cement to be incorporated into the paint according to the present invention includes ordinary Portland cement, early-strength Portland cement, ultra-high-strength Portland cement, moderate heat Portland cement, special Portland cement (eg, low heat cement, sulfate resistant cement, white cement) And blast furnace cement, silica cement,
Examples thereof include fly ash cement, expanded cement, rapid-hardening cement, acid-resistant cement, alumina cement, and ultra-fast-hardening cement. Particularly preferred are white cement and blast furnace cement. The amount of cement is usually 1 to 60% by weight, preferably 10 to 50% by weight.

【0008】本発明による塗料に配合する顔料として
は、各種の着色顔料、例えば、白顔料(チタン白、亜鉛
華、リトボン鉛白等)、黒顔料(カーボンブラック、鉄
黒、グラファイト等)、赤顔料(カドミウムレッド、べん
がら、トルイジンレッド等)、黄顔料(黄鉛、鉄黄、チタ
ン黄、アントラキノンエロー等)、緑顔料(酸化クロム、
フタロシアニングリーン等)および青顔料(紺青、群青、
フタロシアニンブルー等)等のほか、金属粉顔料(アルミ
ニウム粉、ブロンズ粉等)、体質顔料(白亜、バライト
粉、タルク等)、艶消し顔料等が例示される。顔料の配
合量も特に限定的ではないが、通常、2〜60重量%、
好ましくは3〜50重量%である。
The pigments to be incorporated into the coating composition of the present invention include various color pigments, for example, white pigments (titanium white, zinc white, lithobon lead white, etc.), black pigments (carbon black, iron black, graphite, etc.), red Pigment (Cadmium Red, Bengal, Toluidine Red, etc.), Yellow Pigment (Graphite, Iron Yellow, Titanium Yellow, Anthraquinone Yellow, etc.), Green Pigment (Chromium Oxide,
Phthalocyanine green) and blue pigments (dark blue, ultramarine,
In addition to phthalocyanine blue, etc., metal powder pigments (aluminum powder, bronze powder, etc.), extender pigments (chalk, barite powder, talc, etc.), matting pigments and the like are exemplified. Although the amount of the pigment is not particularly limited, it is usually 2 to 60% by weight,
Preferably it is 3 to 50% by weight.

【0009】本発明による塗料のビヒクル用溶剤として
は、炭化水素(ミネラルスピリット、灯油、トルエン、
キシレン等)、アルコール(エチルアルコール、ブチルア
ルコール、イソプロピルアルコール等)、エステル(酢酸
エチル、酢酸ブチル等)、ケトン(アセトン、メチルエチ
ルケトン、メチルイソブチルケトン等)、エーテル(エチ
レングリコールモノエチルエーテル等)およびこれらの
任意の混合溶剤等が例示されるが、特に好適なものは、
芳香族炭化水素、ケトン、アルコールおよびこれらの任
意の混合溶剤等である。
The solvent for the vehicle of the paint according to the present invention includes hydrocarbons (mineral spirit, kerosene, toluene,
Xylene, etc.), alcohols (ethyl alcohol, butyl alcohol, isopropyl alcohol, etc.), esters (ethyl acetate, butyl acetate, etc.), ketones (acetone, methyl ethyl ketone, methyl isobutyl ketone, etc.), ethers (ethylene glycol monoethyl ether, etc.) and these Although an arbitrary mixed solvent of the like is exemplified, particularly preferred are:
Examples thereof include aromatic hydrocarbons, ketones, alcohols, and any mixed solvents thereof.

【0010】本発明の特徴は、上記のような成分を含有
するセメント系セラミックス塗料にさらに亜鉛粉末を配
合する点にある。亜鉛粉末の粒径は通常2〜8μm、好
ましくは3〜5μmであり、粒径が過度に大きくなる
と、セメント系セラミックスとの接触面積が小さ過ぎて
両者間の反応が十分に進行せず、また粒径が小さ過ぎる
と両者間の反応が速くなり過ぎて作業性が悪化する。亜
鉛粉末の配合量はその他の配合成分の種類や配合量等に
よって左右され、特に限定的ではないが、通常は塗料中
の他の不揮発分100重量部に対して1〜700重量
部、好ましくは5〜500重量部であり、1重量部より
も少なくなると、本発明の所期の目的を達成することが
できず、また、700重量部よりも多くなると、樹脂と
の均一な混合が困難となり、クラックが発生したり、素
地との接着性が低下する。
A feature of the present invention resides in that zinc powder is further added to a cement-based ceramic paint containing the above components. The particle size of the zinc powder is usually 2 to 8 μm, preferably 3 to 5 μm. If the particle size is excessively large, the contact area with the cement-based ceramic is too small and the reaction between the two does not proceed sufficiently. If the particle size is too small, the reaction between the two becomes too fast and the workability deteriorates. The amount of the zinc powder is dependent on the type and amount of the other components, and is not particularly limited, but is usually 1 to 700 parts by weight, preferably 100 parts by weight, based on the other nonvolatile components in the paint. When the amount is less than 1 part by weight, the intended purpose of the present invention cannot be achieved. When the amount is more than 700 parts by weight, uniform mixing with the resin becomes difficult. , Cracks occur, and the adhesion to the substrate is reduced.

【0011】本発明によるセメント系セラミックス塗料
から形成される塗膜が優れた乾燥性を発揮する理由は、
その理論的究明はなされていないが、次の様に考えられ
ている。即ち、亜鉛粉末が酸素と水分を媒体として強ア
ルカリ性セメント系セラミックス微粉末の酸化重合反応
を効果的に促進し、これによって塗膜が短時間で硬化す
ると考えられる。
The reason why the coating film formed from the cement-based ceramic paint according to the present invention exhibits excellent drying properties is as follows.
Although the theoretical investigation has not been made, it is considered as follows. That is, it is considered that the zinc powder effectively promotes the oxidative polymerization reaction of the strongly alkaline cement-based ceramic fine powder using oxygen and moisture as a medium, whereby the coating film is cured in a short time.

【0012】本発明による塗料には、上記成分のほかに
常套の添加剤、例えば顔料分散剤(ベントナイト、モン
モリロナイト、アマイドワックス等)、乾燥剤(ナフタリ
ン酸またはオクチル酸の金属塩等)、皮張防止剤(ヒドロ
キシアミン、MEKオキシム等)等を適宜配合してもよ
い。
In addition to the above-mentioned components, conventional additives such as pigment dispersants (bentonite, montmorillonite, amide wax, etc.), desiccants (metal salts of naphthalic acid or octylic acid, etc.), anti-skinning An agent (hydroxyamine, MEK oxime, etc.) may be appropriately compounded.

【0013】[0013]

【実施例】以下、本発明を実施例によって説明する。実施例1〜3 下記の組成を有する市販のセメント系セラミックス塗料
「サビーズM」(ダイーユーペイント社製)700g、「カ
ナエサビーズR」(カナエ塗料社製)700gおよび「パー
フェクトガード55」(ダイムワカイ社製)700gに亜鉛
粉末(白水化学社製亜鉛末「UF」(粒径:2〜3μm)30
0gをそれぞれ均一に配合することによって本発明によ
るセメント系セラミックス塗料1〜3を調製した。 1)「サビーズM」(不揮発分:66%) 成 分 配合量(重量%) 顔料 19.0 セメント系セラミックス 21.0 塩化ゴム系樹脂 20.0 可塑剤 3.0 固形助剤 3.0 溶剤 34.0 2)「カナエサビーズR」(不揮発分:66%) 成 分 配合量(重量%) 顔料 19.0 セメント系セラミックス 24.0 塩化ゴム系樹脂 19.0 可塑剤 3.0 固形添加剤 1.0 溶剤 34.0 3)パーフェクトガード55」(不揮発分:55%) 成 分 配合量(重量%) 顔料 19.0 セメント系セラミックス 24.0 塩化ゴム系樹脂 19.0 可塑剤 3.0 固形添加剤 1.0 溶剤 34.0
The present invention will be described below with reference to examples. Examples 1 to 3 700 g of commercially available cement-based ceramic paint "Savies M" (manufactured by DU Paint Co., Ltd.) having the following composition, 700 g of "Kanaesabeads R" (manufactured by Kanae Paint Co., Ltd.), and 700 g of "Perfect Guard 55" (Dimwakai Co., Ltd.) Zinc powder (Zinc powder “UF” (particle size: 2-3 μm) manufactured by Shirasu Chemical Co., Ltd.) in 700 g
The cement-based ceramic paints 1 to 3 according to the present invention were prepared by uniformly mixing 0 g each. 1) "Sabizu M" (nonvolatile content: 66%) Ingredient Amount (wt%) Pigment 19.0 cementitious ceramics 21.0 chlorinated rubber resin 20.0 plasticizer 3.0 solid aid 3.0 solvent 34.0 2) "Kanaesabizu R" (nonvolatile content: 66%) Ingredient amount (wt%) pigment 19.0 cementitious ceramics 24.0 chlorinated rubber resin 19.0 plasticizer 3.0 solid additive 1 3.0 Solvent 34.0 3) Perfect Guard 55 "(Nonvolatile content: 55%) Component blending amount (% by weight) Pigment 19.0 Cement-based ceramics 24.0 Chloride rubber-based resin 19.0 Plasticizer 3.0 Solid Additive 1.0 Solvent 34.0

【0014】上記のセメント系セラミックス塗料1〜3
を塩化ゴムシンナー(カナエ塗料社製)100mlを用いて
希釈した後、清浄な鉄板に塗布し(膜厚:40〜60
μ)、塗膜の硬度の20℃における経時的変化を調べ、
結果を表1に示す。
The above cement-based ceramic paints 1 to 3
Was diluted using 100 ml of chlorinated rubber thinner (manufactured by Kanae Paint Co., Ltd.), and then applied to a clean iron plate (film thickness: 40 to 60).
μ), examining the temporal change in the hardness of the coating film at 20 ° C.
Table 1 shows the results.

【表1】 [Table 1]

【0015】比較例1〜3 実施例1〜3において用いた市販のセメント系セラミッ
クス塗料「サビーズM」700g、「カナエサビーズR」7
00gおよび「パーフェクトガード55」700gをそれぞ
れ塩化ゴムシンナー100mlを用いて希釈した後、清浄
な鉄板に塗布し(膜厚:40〜60μ)、塗膜の硬度の2
0℃における経時的変化を調べ、結果を前記の表1に示
す。
Comparative Examples 1 to 3 700 g of commercially available cement-based ceramic paints "Savies M" and "Kanaesa Beads R" 7 used in Examples 1 to 3
After diluting 00 g and 700 g of "Perfect Guard 55" with 100 ml of chloride rubber thinner, respectively, the solution was applied to a clean iron plate (film thickness: 40 to 60 μm), and the hardness of the coating film was 2
The change with time at 0 ° C. was examined, and the results are shown in Table 1 above.

【0016】実施例4 下記の組成を有する市販のセメント系セラミックス塗料
「コン・コートVP」(ダイユーペイント社製)に亜鉛粉末
(粒径:3〜5μm)を20%(該塗料の不揮発分に対する
重量比率)配合した塗料4を使用し、実施例1〜3の手
順に準拠して形成させた塗布後、240時間経過後の塗
膜(乾燥膜厚:45μ)を碁盤目試験(1mm2×100個の
碁盤目についての粘着テープ剥がしに対する耐剥離性試
験)、塩水噴霧試験(JIS−Z−2371およびJIS
−K−5400 7.8)、耐水性試験(JIS−K−5
400 7.2)および耐衝撃性試験[JIS−K−54
00、6、13B法(デュポン式)]に供した。 4)「コン・コートVP」(不揮発分:64%) 成 分 配合量(重量%) 顔料 23.0 ビニル系樹脂 15.3 セメント系セラミックス 23.0 可塑剤 1.5 固形添加剤 1.2 溶剤 36.0 結果を以下の表2に示す。
Example 4 Zinc powder was added to a commercially available cement-based ceramic paint "Concoat VP" (manufactured by DAI PAINT Co.) having the following composition:
(Particle size: 3 to 5 μm) Using coating material 4 containing 20% (weight ratio to the nonvolatile content of the coating material), formed according to the procedures of Examples 1 to 3, and after 240 hours, (Dry film thickness: 45 μ) was subjected to a grid test (peeling resistance test against peeling of an adhesive tape for 1 mm 2 × 100 grids) and a salt spray test (JIS-Z-2371 and JIS
-K-5400 7.8), water resistance test (JIS-K-5)
400 7.2) and impact resistance test [JIS-K-54]
00, 6, 13B method (DuPont method)]. 4) "Con Coat VP" (non-volatile content: 64%) Component content (% by weight) Pigment 23.0 Vinyl-based resin 15.3 Cement-based ceramics 23.0 Plasticizer 1.5 Solid additive 1.2 Solvent 36.0 The results are shown in Table 2 below.

【表2】 なお、実施例1〜3の手順に準拠し、塗料4から得られ
た塗膜の硬度の20℃における経時的変化を表1に示
す。
[Table 2] Table 1 shows the time-dependent change at 20 ° C. of the hardness of the coating film obtained from the coating material 4 in accordance with the procedures of Examples 1 to 3.

【0017】比較例4「 コン・コートVP」を用いて実施例4と同様にして形成
させた塗膜を碁盤目試験、塩水噴霧試験、耐水性試験お
よび耐衝撃性試験に供した。結果を前記の表2に示す。
なお、実施例1〜3の手順に準拠し、「コン・コートV
P」から得られた塗膜の硬度の20℃における経時的変
化を表1に示す。
Comparative Example 4 A coating film formed in the same manner as in Example 4 using "CON COAT VP" was subjected to a grid test, a salt spray test, a water resistance test and an impact resistance test. The results are shown in Table 2 above.
In addition, according to the procedure of Examples 1 to 3, "CON COAT V
Table 1 shows the change over time in the hardness of the coating film obtained from “P” at 20 ° C.

【0018】[0018]

【発明の効果】本発明によれば、セメント系セラミック
ス塗膜の優れた保護性を損なうことなく、該塗膜の乾燥
時間を大幅に短縮させることができるので、塗装作業効
率や作業現場の運用効率が大幅に改善されるだけでな
く、重ね塗り時のブリード(下塗塗料の色の滲み上がり)
や上塗り時の下塗塗膜のリフティング等が効果的に防止
される。従って、本発明によれば、その長所の割には利
用が制限されていたセメント系セラミックス塗料の利用
分野を大幅に拡大することができる。
According to the present invention, the drying time of the cement-based ceramic coating film can be greatly reduced without impairing the excellent protection property of the coating film. Not only efficiency is greatly improved, but also bleed during overcoating (bleeding of undercoat paint color)
And the lifting of the undercoat film at the time of overcoating are effectively prevented. Therefore, according to the present invention, the field of use of the cement-based ceramic paint, whose use has been limited for its advantages, can be greatly expanded.

Claims (3)

【特許請求の範囲】[Claims] 【請求項1】 亜鉛粉末を含有するセメント系セラミッ
クス塗料。
1. A cement-based ceramic paint containing zinc powder.
【請求項2】 亜鉛粉末を他の不揮発分100重量部に
対して1〜700重量部含有する請求項1記載の塗料。
2. The paint according to claim 1, wherein the zinc powder is contained in an amount of 1 to 700 parts by weight based on 100 parts by weight of the other nonvolatile components.
【請求項3】 亜鉛粉末の粒径が2〜8μmである請求
項1または2記載の塗料。
3. The paint according to claim 1, wherein the particle size of the zinc powder is 2 to 8 μm.
JP15962696A 1996-06-20 1996-06-20 Cement-base ceramic coating material Pending JPH107935A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP15962696A JPH107935A (en) 1996-06-20 1996-06-20 Cement-base ceramic coating material

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP15962696A JPH107935A (en) 1996-06-20 1996-06-20 Cement-base ceramic coating material

Publications (1)

Publication Number Publication Date
JPH107935A true JPH107935A (en) 1998-01-13

Family

ID=15697838

Family Applications (1)

Application Number Title Priority Date Filing Date
JP15962696A Pending JPH107935A (en) 1996-06-20 1996-06-20 Cement-base ceramic coating material

Country Status (1)

Country Link
JP (1) JPH107935A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR100629858B1 (en) * 2004-10-28 2006-09-29 정태주 Wet and underwater concrete structures repair/reinforcement agent and repair/reinforcement method of construction
US7344588B2 (en) 2001-07-11 2008-03-18 Borchers Gmbh Anti-skinning agents having a mixture of organic compounds and coating compositions containing them

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7344588B2 (en) 2001-07-11 2008-03-18 Borchers Gmbh Anti-skinning agents having a mixture of organic compounds and coating compositions containing them
KR100629858B1 (en) * 2004-10-28 2006-09-29 정태주 Wet and underwater concrete structures repair/reinforcement agent and repair/reinforcement method of construction

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