JPS583987B2 - Mineral coating composition - Google Patents
Mineral coating compositionInfo
- Publication number
- JPS583987B2 JPS583987B2 JP8041078A JP8041078A JPS583987B2 JP S583987 B2 JPS583987 B2 JP S583987B2 JP 8041078 A JP8041078 A JP 8041078A JP 8041078 A JP8041078 A JP 8041078A JP S583987 B2 JPS583987 B2 JP S583987B2
- Authority
- JP
- Japan
- Prior art keywords
- cement
- coating composition
- silicate
- phosphate
- slate
- 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.)
- Expired
Links
Landscapes
- Curing Cements, Concrete, And Artificial Stone (AREA)
Description
【発明の詳細な説明】
本発明はスレートのような外装材の表面を被覆するため
の無機質被覆組成物の改良に関する。DETAILED DESCRIPTION OF THE INVENTION The present invention relates to improvements in inorganic coating compositions for coating the surfaces of exterior materials such as slate.
従来、珪酸アルカリにセメントを加える実例は防水セメ
ントとして古くから知られていたが、両者の反応が早く
、発熱を伴うために薬剤の変質をきたし、防水力や接着
力の低下を招く結果となり、このままでは無機質被覆組
成物として使用し得ないという欠点があった。Conventionally, adding cement to alkali silicate has been known for a long time as waterproof cement, but the reaction between the two is rapid and generates heat, leading to deterioration of the chemical and resulting in a decrease in waterproofing and adhesive strength. There was a drawback that it could not be used as an inorganic coating composition as it was.
本発明はかかる従来例の欠点に鑑みてなされたもので、
本発明の目的とするところは、珪酸アルカリとセメント
との反応速度を抑え、低温又は常温で硬化し、薬剤の変
質をきたさず、防水力や接着力の低下を招くことがない
無機質被覆組成物を提供するにある。The present invention was made in view of the drawbacks of the conventional example, and
The object of the present invention is to provide an inorganic coating composition that suppresses the reaction rate between alkali silicate and cement, cures at low or room temperature, does not cause deterioration of the agent, and does not cause a decrease in waterproofing power or adhesive strength. is to provide.
以下本発明を詳述する。The present invention will be explained in detail below.
珪酸アルカリはM20・XSiO2(ここでMはアルカ
リ金属、
一N(CH20H)4、−N(C2H40H)4又はN
(CH3)2C6Hl5であり、Xは0.2から9.0
の正数を表わす。Alkali silicate is M20・XSiO2 (where M is an alkali metal, -N(CH20H)4, -N(C2H40H)4 or N
(CH3)2C6Hl5, and X is 0.2 to 9.0
represents a positive number.
)で示され、アルカリ金属塩としては例えば珪酸リチウ
ム、珪酸ナ}リウム、珪酸カリウムなどがある。), and examples of alkali metal salts include lithium silicate, sodium silicate, and potassium silicate.
無機質被覆組成物のバインダーとなる水溶性の珪酸アル
カリ中のシリカ成分の量を表わすXが0.2より小さい
と外装材の表面に被膜を形成しないか、たとえ被膜を形
成しても耐水性の極めて悪い被膜しか得られず、一方X
が9.0より太きいと珪酸アルカリは水に難溶性又は不
溶性になり、かつ得られた被膜はもろくなるのでXを0
.2乃至9,0にすることが望ましい。If X, which represents the amount of silica in the water-soluble alkali silicate that serves as the binder for the inorganic coating composition, is less than 0.2, a film will not be formed on the surface of the exterior material, or even if a film is formed, the water resistance will be poor. Only an extremely poor film was obtained, while X
If X is thicker than 9.0, the alkali silicate becomes poorly soluble or insoluble in water, and the resulting film becomes brittle, so X is set to 0.
.. It is desirable to set it to 2 to 9.0.
燐酸塩はCa,Zn,A6,Feのうちの少なくとも一
種類の金属を含有する第1燐酸塩、第2燐酸塩、第3燐
酸塩、セスキ燐酸塩、メク燐酸塩などである。The phosphates include primary phosphates, secondary phosphates, tertiary phosphates, sesquiphosphates, mechphosphates, etc., containing at least one metal selected from Ca, Zn, A6, and Fe.
セメントとしては、ボルトラントセメント、白セメント
、アルカリセメント、マグネシャセメントなどを使用す
る。As the cement, voltant cement, white cement, alkali cement, magnesia cement, etc. are used.
しかしてバインダーとして使用する一種類又は二種類以
上の珪酸アルカリとCa,Zn,Al,Feのうち少な
くとも一種類の燐酸塩及びセメントを配合して無機質被
覆組成物となし、このような無機質被覆組成物をスレー
トのような外装材の表面に塗布して常温又は比較的低い
温度で硬化する無機質塗料として使用するものであるが
、無機質被覆組成物中にCa,Zn,Al,Feのうち
少なくとも一種類の燐酸塩が存在するために、珪酸アル
カリとセメントはゆるやかに反応して硬化し、硬化熱の
発生が少なくて接着力や防水能力が低下することがない
。Therefore, an inorganic coating composition is prepared by blending one or more alkali silicate used as a binder with at least one phosphate of Ca, Zn, Al, and Fe and cement. The inorganic coating composition is used as an inorganic coating that is applied to the surface of an exterior material such as slate and cured at room temperature or a relatively low temperature. Because of the presence of different types of phosphates, the alkali silicate and cement slowly react and harden, generating little curing heat and preventing a decline in adhesive strength and waterproofing ability.
また上記の無機質被覆組成物の配合比としては珪酸アル
カリ100部に燐酸塩10乃至50部、セメント10乃
至80部を配合することが望ましく、更にシリカ、炭酸
カルシウムなどの体質顔料や有機無機の繊維を配合して
も良い。In addition, as for the blending ratio of the above-mentioned inorganic coating composition, it is desirable to mix 100 parts of alkali silicate, 10 to 50 parts of phosphate, and 10 to 80 parts of cement, and further add extender pigments such as silica and calcium carbonate, and organic and inorganic fibers. may also be blended.
本発明は上述したように珪酸アルカリにCa,Zn,A
6,Feのうちの少なくとも一種類の燐酸塩及びセメン
トを配合して無機質被覆組成物となしたので、燐酸塩は
珪酸アルカリとセメントとの反応速度を抑えることがで
き、燐酸塩にて反応熱の発生を少なくすることができる
から、組成物は常温又は比較的低い温度で硬化すること
ができ、組成物で形成した被膜は防水能力や接着力が反
応熱により低下することがないものである。As mentioned above, the present invention uses alkali silicate with Ca, Zn, and A.
6. Since the inorganic coating composition is made by blending at least one type of phosphate of Fe and cement, the phosphate can suppress the reaction rate between the alkali silicate and cement, and the phosphate can reduce the reaction heat. The composition can be cured at room temperature or relatively low temperature, and the waterproofing ability and adhesive strength of the film formed from the composition will not decrease due to reaction heat. .
以下本発明を実施例により詳述する。The present invention will be explained in detail below with reference to Examples.
実施例1
珪酸リチウム 50重量部珪酸カリ
ウム 50〃第1燐酸亜鉛
10〃ボルトラントセメント
50〃シリカ 40〃
水 2o〃上記配合
物を混練した後、スレート上に塗布して50℃で30分
間焼付け硬化させた。Example 1 Lithium silicate 50 parts by weight Potassium silicate 50 Monozinc phosphate
10〃Voltland cement
50〃Silica〃〃Water 2o〃After kneading the above mixture, it was applied onto a slate and baked and hardened at 50°C for 30 minutes.
スレート上に形成された被膜は表1から明らかなように
硬度、難燃性、耐水性共に良好であった。As is clear from Table 1, the coating formed on the slate had good hardness, flame retardancy, and water resistance.
実施例2
珪酸ナトリウム 50重量部珪酸リチ
ウム 50〃メタ燐酸アルミニウム
40〃マグネシャセメント
10〃炭酸カルシウム 40〃水
30〃上記混合物を混
練した後、スレート上に塗装して120℃で10分間焼
付乾燥を行なった。Example 2 Sodium silicate 50 parts by weight Lithium silicate 50 Aluminum metaphosphate
40 Magnesia cement
10〃Calcium carbonate 40〃Water
30 After kneading the above mixture, it was coated on a slate and baked and dried at 120°C for 10 minutes.
スレート上の被膜は表1から明らかなように硬度、難燃
性、耐水性共に良好であった。As is clear from Table 1, the coating on the slate had good hardness, flame retardancy, and water resistance.
実施例3
珪酸カリウム 50重量部コロイダ
ルシリカ 50〃第3燐酸カルシウム
30〃セスキ燐酸アルミニウム
20〃アルミナセメント 20重量部
ボルトラントセメント 50〃シリカ
60〃
水 60〃上記配
合物を混練した後、木材に塗布して常温,RH 80%
の養生箱にて24時間養生した。Example 3 Potassium silicate 50 parts by weight Colloidal silica 50 Tertiary calcium phosphate
30 Aluminum sesquiphosphate
20〃Alumina cement 20 parts by weight Boltland cement 50〃Silica
60〃 Water 60〃 After kneading the above mixture, apply it to wood and leave at room temperature, RH 80%
The samples were cured for 24 hours in a curing box.
木材上の被膜は表1から明らかなように硬度、酢燃性、
耐水性共に良好であった。As is clear from Table 1, the coating on wood has hardness, vinegar flammability,
Both water resistance was good.
実施例4
コロイダルシリ力 70重量部珪酸リチ
ウム 20〃第1燐酸鉄
50〃アルミナセメント
20〃シリカ 30〃
水 50〃上記配合
物を混練後、スレート上にスプレー塗布した。Example 4 Colloidal silicate strength 70 parts by weight Lithium silicate 20〃Iron phosphate
50〃Alumina cement
20〃Silica 30〃Water 50〃After kneading the above mixture, it was spray coated onto a slate.
焼付は50℃RH100%で3時間行ない、その後24
時間室内に放置した。Baking was carried out at 50℃RH100% for 3 hours, then 24 hours.
It was left indoors for an hour.
スレート上の被膜は表1から明らかなように硬度、難燃
性、耐水性共に良好であった。As is clear from Table 1, the coating on the slate had good hardness, flame retardancy, and water resistance.
Claims (1)
くとも一種類の燐酸塩及びセメントを配合して成ること
を特徴とする無機質被覆組成物。1. An inorganic coating composition comprising an alkali silicate, a phosphate of at least one of Ca, Zn, Al, and Fe, and cement.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP8041078A JPS583987B2 (en) | 1978-06-30 | 1978-06-30 | Mineral coating composition |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP8041078A JPS583987B2 (en) | 1978-06-30 | 1978-06-30 | Mineral coating composition |
Publications (2)
Publication Number | Publication Date |
---|---|
JPS557569A JPS557569A (en) | 1980-01-19 |
JPS583987B2 true JPS583987B2 (en) | 1983-01-24 |
Family
ID=13717513
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP8041078A Expired JPS583987B2 (en) | 1978-06-30 | 1978-06-30 | Mineral coating composition |
Country Status (1)
Country | Link |
---|---|
JP (1) | JPS583987B2 (en) |
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US8833199B2 (en) | 2006-02-23 | 2014-09-16 | Campagnolo S.R.L. | Bicycle brake control device |
US9027433B2 (en) | 2007-03-01 | 2015-05-12 | Campagnolo S.R.L. | Control device for a bicycle and bicycle comprising such a device |
US9045193B2 (en) | 2007-02-09 | 2015-06-02 | Campagnolo S.R.L. | Command device for a derailleur of a bicycle |
US9126650B2 (en) | 2007-11-23 | 2015-09-08 | Campagnolo S.R.L. | Control device for a bicycle with curved handlebars |
-
1978
- 1978-06-30 JP JP8041078A patent/JPS583987B2/en not_active Expired
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US8833199B2 (en) | 2006-02-23 | 2014-09-16 | Campagnolo S.R.L. | Bicycle brake control device |
US9045193B2 (en) | 2007-02-09 | 2015-06-02 | Campagnolo S.R.L. | Command device for a derailleur of a bicycle |
US9027433B2 (en) | 2007-03-01 | 2015-05-12 | Campagnolo S.R.L. | Control device for a bicycle and bicycle comprising such a device |
US10589817B2 (en) | 2007-03-01 | 2020-03-17 | Campagnolo S.R.L. | Control device for a bicycle and bicycle comprising such a device |
US9126650B2 (en) | 2007-11-23 | 2015-09-08 | Campagnolo S.R.L. | Control device for a bicycle with curved handlebars |
Also Published As
Publication number | Publication date |
---|---|
JPS557569A (en) | 1980-01-19 |
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