JPH05331442A - Adhesive sealing material - Google Patents

Adhesive sealing material

Info

Publication number
JPH05331442A
JPH05331442A JP4163978A JP16397892A JPH05331442A JP H05331442 A JPH05331442 A JP H05331442A JP 4163978 A JP4163978 A JP 4163978A JP 16397892 A JP16397892 A JP 16397892A JP H05331442 A JPH05331442 A JP H05331442A
Authority
JP
Japan
Prior art keywords
sealing material
adhesive sealing
aluminum oxide
resin component
artificial marble
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.)
Withdrawn
Application number
JP4163978A
Other languages
Japanese (ja)
Inventor
Eriko Yamada
絵里子 山田
Michihiko Suzuki
道彦 鈴木
Kiyotaka Arai
清隆 新井
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.)
AGC Inc
Original Assignee
Asahi Glass Co Ltd
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 Asahi Glass Co Ltd filed Critical Asahi Glass Co Ltd
Priority to JP4163978A priority Critical patent/JPH05331442A/en
Publication of JPH05331442A publication Critical patent/JPH05331442A/en
Withdrawn legal-status Critical Current

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  • Compounds Of Alkaline-Earth Elements, Aluminum Or Rare-Earth Metals (AREA)
  • Sealing Material Composition (AREA)
  • Adhesives Or Adhesive Processes (AREA)

Abstract

PURPOSE:To obtain an adhesive sealing material, comprising prescribed amounts of a specific curable resin component, an inorganic filler and aluminum oxide prepared by the vapor synthetic method, excellent in thixotropic properties and appearance and suitable as artificial marble, etc. CONSTITUTION:The adhesive sealing material 2 comprises (A) preferably 30-70wt.% (based on the bonding sealing material) curable resin component consisting essentially of methyl methacrylate and its polymer, (B) preferably 20-50wt.% inorganic filler such as aluminum hydroxide and (C) 1-10wt.% aluminum oxide, obtained by the vapor synthetic method and having, e.g. 10-15nm grain diameter and 80-120m<2>/g specific surface area. This adhesive sealing material is two-pack type and has 5-20 thixotropic index.

Description

【発明の詳細な説明】Detailed Description of the Invention

【0001】[0001]

【産業上の利用分野】本発明は、接着シール材、特に人
工大理石用に好適な接着シール材に関するものである。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to an adhesive sealing material, particularly an adhesive sealing material suitable for artificial marble.

【0002】[0002]

【従来の技術】従来、人工大理石の加工において、コー
ナー部を直角でなく丸みのある形にする方法として、図
2(a)に示すように、人工大理石板3を端部で接合す
るときにコーナー部のための人工大理石部材4を別に設
けて、これを削って丸くする方法、あるいは、図2
(b)に示すような専用の接着シール材5でコーナー部
を埋める方法が採用されていた。
2. Description of the Related Art Conventionally, in the processing of artificial marble, as a method of forming a corner portion with a rounded shape instead of a right angle, as shown in FIG. The artificial marble member 4 for the corner portion is separately provided, and the artificial marble member 4 is shaved and rounded, or FIG.
A method of filling a corner portion with a dedicated adhesive sealing material 5 as shown in (b) has been adopted.

【0003】しかしながら、前者の場合は、人工大理石
部材4の切削工程に手間がかかりコストアップにつなが
るという問題点があり、後者の場合、従来の接着シール
材ではシール材のタレが生じるため丸みの半径を大きく
することができないという問題点があった。また、従来
の接着シール材は、気泡を巻き込みやすいので、仕上げ
の前に気泡を埋め直す作業が必要になるという問題点も
あった。
However, in the case of the former, there is a problem that the cutting process of the artificial marble member 4 is troublesome and leads to an increase in cost, and in the case of the latter, the conventional adhesive sealing material causes sagging of the sealing material, which causes rounding. There is a problem that the radius cannot be increased. In addition, the conventional adhesive sealing material has a problem that air bubbles are apt to be trapped therein, so that it is necessary to refill the air bubbles before finishing.

【0004】[0004]

【発明が解決しようとする課題】本発明は、人工大理石
の加工において、切削工程あるいは気泡の埋め直し工程
のようなコストアップにつながる複雑な工程を必要とせ
ず、コーナー部の丸みを大きくするような材料を提供す
ることを目的とする。
DISCLOSURE OF THE INVENTION The present invention is intended to increase the roundness of a corner portion without requiring a complicated process such as a cutting process or a bubble refilling process which leads to an increase in cost in processing an artificial marble. The purpose is to provide various materials.

【0005】[0005]

【課題を解決するための手段】本発明は、メチルメタク
リレートおよびその重合体を主とする硬化性樹脂成分と
無機充填剤の混合物であって、気相合成法で得られた酸
化アルミニウムを1〜10重量%含有する接着シール材
を提供するものである。
DISCLOSURE OF THE INVENTION The present invention is a mixture of a curable resin component mainly composed of methyl methacrylate and its polymer and an inorganic filler. An adhesive sealing material containing 10% by weight is provided.

【0006】本発明の接着シール材は、樹脂マトリック
ス成分としてメチルメタクリレートおよびその重合体
(以下PMMAという)を主とする硬化性樹脂成分を含
む。硬化性樹脂成分は、接着シール材の30〜70重量
%であることが好ましい。
The adhesive sealing material of the present invention contains a curable resin component mainly containing methyl methacrylate and its polymer (hereinafter referred to as PMMA) as a resin matrix component. The curable resin component is preferably 30 to 70% by weight of the adhesive sealing material.

【0007】硬化性樹脂成分中のメチルメタクリレート
の含有量は、硬化性樹脂成分全体に対し40〜70重量
%が好ましい。含有量が40重量%に満たない場合は、
粘度が高くなり気泡を巻き込みやすくなるのでので好ま
しくない。含有量が70重量%を超える場合は、硬化反
応中にメチルメタクリレートが揮発し、シール部分に亀
裂等の欠陥が生じるおそれがあるので好ましくない。
The content of methyl methacrylate in the curable resin component is preferably 40 to 70% by weight based on the whole curable resin component. If the content is less than 40% by weight,
This is not preferable because it increases the viscosity and makes it easier for air bubbles to become involved. If the content exceeds 70% by weight, methyl methacrylate may volatilize during the curing reaction, which may cause defects such as cracks in the seal portion, which is not preferable.

【0008】硬化性樹脂成分中のPMMAの含有量は、
樹脂成分に対して30〜60重量%であることが好まし
い。PMMAは、分子量が30000〜70000の範
囲にあることが好ましい。分子量が30000未満の場
合は、シール材として必要な粘度が得られず、作業中に
シール材がたれるなどのおそれがあるので好ましくな
い。分子量が70000を超える場合は、粘度が高くな
りすぎて、気泡を巻き込みやすくなるなどのおそれがあ
るので好ましくない。
The content of PMMA in the curable resin component is
It is preferably 30 to 60% by weight based on the resin component. PMMA preferably has a molecular weight in the range of 30,000 to 70,000. If the molecular weight is less than 30,000, the viscosity required for the sealing material cannot be obtained, and the sealing material may sag during the work, which is not preferable. If the molecular weight exceeds 70,000, the viscosity becomes too high and air bubbles may be easily trapped, which is not preferable.

【0009】硬化樹脂成分中には、適宜他の成分を添加
することができる。例えば、メタクリル酸を含む場合
は、硬化時間が短縮できるので好ましい。メタクリル酸
の好ましい使用量は、硬化性樹脂成分の1〜5重量%で
ある。メチルメタクリレートおよびその重合体は、硬化
性樹脂成分の95重量%以上あることが好ましい。
Other components can be appropriately added to the cured resin component. For example, it is preferable to contain methacrylic acid because the curing time can be shortened. The preferred amount of methacrylic acid used is 1 to 5% by weight of the curable resin component. Methyl methacrylate and the polymer thereof are preferably 95% by weight or more of the curable resin component.

【0010】本発明において無機充填剤は、接着シール
材の20〜50重量%使用するのが好ましい。無機充填
剤の材質としては、特に限定されず種々のものを使用す
ることができるが、水酸化アルミニウムを用いる場合
は、硬化した後の色調や他の物性が人工大理石に近く、
耐薬品性の高いも得られるので好ましい。他に、水酸化
マグネシウム、炭酸カルシウム、ガラス粉等を適宜使用
することができる。
In the present invention, the inorganic filler is preferably used in an amount of 20 to 50% by weight of the adhesive sealing material. The material of the inorganic filler is not particularly limited and various materials can be used, but when aluminum hydroxide is used, the color tone and other physical properties after curing are similar to artificial marble,
It is preferable because high chemical resistance can be obtained. In addition, magnesium hydroxide, calcium carbonate, glass powder and the like can be used as appropriate.

【0011】本発明の接着シール材においては、気相合
成法で得られた酸化アルミニウム(以下、気相法酸化ア
ルミニウムという)を接着シール材全体に対して、1〜
10重量%含有する。気相法酸化アルミニウムは、他の
方法で合成されたものに比較して、特に微粒子であると
いう特徴を有する。本発明の接着シール材に使用するも
のとしては、粒子径が10〜15nmの範囲にあるもの
が好ましい。比表面積としては、80〜120m2 /g
のものが好ましい。
In the adhesive seal material of the present invention, aluminum oxide obtained by the vapor phase synthesis method (hereinafter referred to as vapor phase aluminum oxide) is used in an amount of 1 to 1 with respect to the entire adhesive seal material.
Contains 10% by weight. The vapor-phase aluminum oxide has a feature that it is particularly fine particles as compared with those synthesized by other methods. What is used for the adhesive sealing material of the present invention preferably has a particle diameter in the range of 10 to 15 nm. As the specific surface area, 80 to 120 m 2 / g
Are preferred.

【0012】気相法酸化アルミニウムの使用量が、1重
量%に満たない場合は、チクソトロピック性が十分付与
できないおそれがあるので好ましくない。使用量が10
重量%を超える場合は、逆にチクソトロピック性が大き
くなりすぎて作業性が悪化するおそれがあるので好まし
くない。気相法酸化アルミニウムのより好ましい含有量
は、4〜7重量%である。
If the amount of vapor phase aluminum oxide used is less than 1% by weight, thixotropic properties may not be sufficiently imparted, which is not preferable. Usage is 10
On the other hand, when the content exceeds the weight%, the thixotropic property becomes excessively large and the workability may be deteriorated, which is not preferable. A more preferable content of vapor phase aluminum oxide is 4 to 7% by weight.

【0013】本発明の接着シール材は、気相法酸化アル
ミニウムを含むことにより、高いチクソトロピック性を
示す。チクソトロピック指数で、5〜20の範囲にある
のが好ましい。チクソトロピック指数は、B型粘度計で
測定したときに、2rpmのときの粘度と20rpmの
ときの粘度の比で表される。
The adhesive sealing material of the present invention exhibits high thixotropic properties by containing vapor-phase process aluminum oxide. The thixotropic index is preferably in the range of 5 to 20. The thixotropic index is represented by the ratio of the viscosity at 2 rpm and the viscosity at 20 rpm as measured by a B-type viscometer.

【0014】本発明において、接着シール材は、重合開
始剤を添加する場合は、常温でも短時間で硬化させるこ
とができる。重合開始剤は、過酸化ベンゾイル等のジア
シルパーオキサイド類、クメンハイドロパーオキサイド
等のハイドロパーオキサイド類、メチルエチルケトンパ
ーオキサイド等のケトンパーオキサイド類などが好まし
く用いられる。使用量は、0.01〜10重量%程度が
好ましい。
In the present invention, the adhesive sealing material can be cured at room temperature in a short time when a polymerization initiator is added. As the polymerization initiator, diacyl peroxides such as benzoyl peroxide, hydroperoxides such as cumene hydroperoxide, ketone peroxides such as methyl ethyl ketone peroxide are preferably used. The amount used is preferably about 0.01 to 10% by weight.

【0015】重合開始剤は、実際に接着シール作業を行
う直前に添加するのが好ましく、このために接着シール
材は、硬化性成分と重合開始剤を含む成分との2液型に
しておくのが好ましい。
The polymerization initiator is preferably added immediately before actually performing the adhesive sealing operation. For this reason, the adhesive sealing material is made into a two-component type containing a curable component and a component containing the polymerization initiator. Is preferred.

【0016】[0016]

【作用】本発明において、気相法酸化アルミニウムは樹
脂中で水素架橋結合をし、チクソトロピック性を向上さ
せる作用を有するものと思われる。
In the present invention, vapor-phase process aluminum oxide is considered to have a function of forming a hydrogen bridge bond in the resin and improving the thixotropic property.

【0017】[0017]

【実施例】【Example】

実施例1 次の材料を混合して、組成物Aとした。 PMMA 15.4重量% メチルメタクリレート 30.0 〃 メタクリル酸 1.0 〃 水酸化アルミニウム 46.5 〃 気相法酸化アルミニウム 7.0 〃 ジメチルパラトルイジン 0.1 〃 この組成物Aの100gに、重合開始剤として過酸化ベ
ンゾイル0.2gを混合して、接着シール材を作製し
た。
Example 1 The following materials were mixed to form a composition A. PMMA 15.4 wt% Methyl methacrylate 30.0 〃 Methacrylic acid 1.0 〃 Aluminum hydroxide 46.5 〃 Gas phase method aluminum oxide 7.0 〃 Dimethyl paratoluidine 0.1 〃 Polymerization to 100 g of this composition A 0.2 g of benzoyl peroxide was mixed as an initiator to prepare an adhesive sealing material.

【0018】この接着シール材について、B型粘度計で
2rpmのときの粘度と、20rpmのときの粘度を測
定し、チクソトロピック指数を求めた。JIS−K68
49に準拠し、被着材としてアクリル系人工大理石を用
いて引っ張り剥離強度を求めた。それぞれの測定結果を
表1に示す。
With respect to this adhesive sealing material, the viscosity at 2 rpm and the viscosity at 20 rpm were measured with a B type viscometer to determine the thixotropic index. JIS-K68
According to No. 49, the tensile peel strength was determined using acrylic artificial marble as the adherend. Table 1 shows each measurement result.

【0019】この接着シール材を、図1に示すように2
枚を垂直に張り合わせた人工大理石板1のコーナー部に
塗布し、ポリエチレン製のへらで約5mmRの丸みをつ
けながら余分なシール材を取り除き、接着シール材コー
ナー部2を形成した。このまま室温空気中に放置してお
いたら、1時間後にほぼ硬化が完了した。硬化した接着
シール材は、人工大理石と同じ質感を持っていた。
As shown in FIG.
The sheets were applied to the corners of the artificial marble plate 1 which was laminated vertically, and the excess sealing material was removed while rounding about 5 mmR with a polyethylene spatula to form the adhesive sealing material corners 2. If left as it was in room temperature air, the curing was almost completed after 1 hour. The cured adhesive seal had the same texture as artificial marble.

【0020】実施例2 次の材料を混合して、組成物Bとした。 PMMA 21.85重量% メチルメタクリレート 44.5 〃 酸化チタン 2.0 〃 水酸化アルミニウム 25.5 〃 気相法酸化アルミニウム 4.5 〃 バナジウムアセチルアセトネート 0.02 〃 (化薬アクゾ製;アクセレレターVN2) アルミニウムアセチルアセトネート 0.33 〃 ジブチルチオ尿素 1.3 〃 この組成物Bの100gに、重合開始剤としてクメンハ
イドロパーオキサイド3.7gを混合して、接着シール
材を作製した。
Example 2 Composition B was prepared by mixing the following materials. PMMA 21.85% by weight Methyl methacrylate 44.5〃 Titanium oxide 2.0〃 Aluminum hydroxide 25.5〃 Gas phase method aluminum oxide 4.5〃Vanadium acetylacetonate 0.02〃 (Kakuyaku Akzo; Acceleleter VN2 ) Aluminum acetylacetonate 0.33 〃 dibutylthiourea 1.3 〃 100 g of this composition B was mixed with 3.7 g of cumene hydroperoxide as a polymerization initiator to prepare an adhesive sealant.

【0021】この接着シール材を実施例1と同様にして
評価した結果を表1に示す。また、実施例1と同様に、
2枚を垂直に張り合わせた人工大理石板のコーナー部に
塗布したところ、同様の効果が得られた。
The results of evaluation of this adhesive seal material in the same manner as in Example 1 are shown in Table 1. Further, as in the first embodiment,
The same effect was obtained when the two pieces were applied to the corners of the artificial marble plates that were vertically stuck together.

【0022】比較例1、2 気相法酸化アルミニウムを用いない以外は、それぞれす
べて実施例1、2と同様にして接着シール材を作成し
た。その特性を表1に示す。実施例1と同様に、2枚を
垂直に張り合わせた人工大理石板のコーナー部に塗布し
たが、粘性が十分でなく5mmRの丸みは形成できなか
った。
Comparative Examples 1 and 2 Adhesive sealing materials were prepared in the same manner as in Examples 1 and 2, except that vapor phase aluminum oxide was not used. The characteristics are shown in Table 1. Similar to Example 1, two pieces were applied vertically to the corners of an artificial marble plate, but the viscosity was not sufficient and a roundness of 5 mmR could not be formed.

【0023】[0023]

【表1】 [Table 1]

【0024】[0024]

【発明の効果】本発明の接着シール材は、高いチクソト
ロピック性を有するので、容易に曲率半径の大きなコー
ナー部を形成することができる。また、糸引や硬化物の
外観を損なう気泡の巻き込みがすくないという利点も有
する。
Since the adhesive sealing material of the present invention has a high thixotropic property, it is possible to easily form a corner portion having a large radius of curvature. In addition, there is also an advantage that the entrainment of air bubbles that impair the appearance of the string and the cured product is small.

【図面の簡単な説明】[Brief description of drawings]

【図1】実施例1の人工大理石のコーナー部の説明図FIG. 1 is an explanatory view of a corner portion of the artificial marble of Example 1.

【図2】従来の人工大理石のコーナー部の説明図FIG. 2 is an explanatory view of a corner portion of a conventional artificial marble.

【符号の説明】[Explanation of symbols]

1:人工大理石板 2:接着シール材コーナー部 3:人工大理石板 4:人工大理石部材 5:接着シール材コーナー部 1: Artificial marble board 2: Adhesive sealing material corner section 3: Artificial marble board 4: Artificial marble member 5: Adhesive sealing material corner section

Claims (3)

【特許請求の範囲】[Claims] 【請求項1】メチルメタクリレートおよびその重合体を
主とする硬化性樹脂成分と無機充填剤の混合物であっ
て、気相合成法で得られた酸化アルミニウムを1〜10
重量%含有する接着シール材。
1. A mixture of a curable resin component mainly composed of methyl methacrylate and a polymer thereof and an inorganic filler, wherein 1 to 10 of aluminum oxide obtained by a gas phase synthesis method is used.
Adhesive sealing material containing wt%.
【請求項2】チクソトロピック指数が5〜20である請
求項1の接着シール材。
2. The adhesive sealing material according to claim 1, which has a thixotropic index of 5 to 20.
【請求項3】2液型である請求項1または請求項2の接
着シール材。
3. The adhesive sealing material according to claim 1, which is a two-liquid type.
JP4163978A 1992-05-29 1992-05-29 Adhesive sealing material Withdrawn JPH05331442A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP4163978A JPH05331442A (en) 1992-05-29 1992-05-29 Adhesive sealing material

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP4163978A JPH05331442A (en) 1992-05-29 1992-05-29 Adhesive sealing material

Publications (1)

Publication Number Publication Date
JPH05331442A true JPH05331442A (en) 1993-12-14

Family

ID=15784433

Family Applications (1)

Application Number Title Priority Date Filing Date
JP4163978A Withdrawn JPH05331442A (en) 1992-05-29 1992-05-29 Adhesive sealing material

Country Status (1)

Country Link
JP (1) JPH05331442A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5674337A (en) * 1995-11-08 1997-10-07 Align-Rite Tool Company Decorative adhesive coving process for matching synthetic surfaces
JP2019167509A (en) * 2018-03-26 2019-10-03 株式会社クラレ Adhesive composition for methacrylic artificial marble and adhesion method of artificial marble

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5674337A (en) * 1995-11-08 1997-10-07 Align-Rite Tool Company Decorative adhesive coving process for matching synthetic surfaces
JP2019167509A (en) * 2018-03-26 2019-10-03 株式会社クラレ Adhesive composition for methacrylic artificial marble and adhesion method of artificial marble

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Effective date: 19990803