JPH0739141B2 - Dry laminated film and laminating method - Google Patents

Dry laminated film and laminating method

Info

Publication number
JPH0739141B2
JPH0739141B2 JP2106384A JP10638490A JPH0739141B2 JP H0739141 B2 JPH0739141 B2 JP H0739141B2 JP 2106384 A JP2106384 A JP 2106384A JP 10638490 A JP10638490 A JP 10638490A JP H0739141 B2 JPH0739141 B2 JP H0739141B2
Authority
JP
Japan
Prior art keywords
adhesive
film
laminated film
films
laminating method
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 - Fee Related
Application number
JP2106384A
Other languages
Japanese (ja)
Other versions
JPH045023A (en
Inventor
勝義 木本
Original Assignee
旭化成ポリフレックス株式会社
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 旭化成ポリフレックス株式会社 filed Critical 旭化成ポリフレックス株式会社
Priority to JP2106384A priority Critical patent/JPH0739141B2/en
Publication of JPH045023A publication Critical patent/JPH045023A/en
Publication of JPH0739141B2 publication Critical patent/JPH0739141B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

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  • Laminated Bodies (AREA)
  • Lining Or Joining Of Plastics Or The Like (AREA)

Description

【発明の詳細な説明】 〔産業上の利用分野〕 本発明は既成のフィルム同士の積層体及び積層方法に関
し、少量の接着剤を用いて接着強度を損なうことなく、
引裂強度や耐ピンホール性などの改良された諸物性を得
ることができる積層フィルム及び積層方法に関する。
DETAILED DESCRIPTION OF THE INVENTION [Industrial field of application] The present invention relates to a laminated body and a laminating method for ready-made films, which use a small amount of an adhesive without impairing the adhesive strength.
The present invention relates to a laminated film and a laminating method capable of obtaining various physical properties such as tear strength and pinhole resistance.

〔従来の技術〕[Conventional technology]

近時、フィルムに関する諸物性の要請は次第に厳しくな
り、これら要請に応えるために2種以上のフィルムから
なる積層フィルムが多く使用されている。積層方法とし
ては、2種以上の樹脂を接着剤の存在下或いは非存在下
に共押出しする方法もあるが、すでにフィルムとなった
ものを接着剤を用いて貼合する、一般にドライラミネー
トと呼ばれる方法がある。この方法は一方のフィルムの
接着面全面に接着剤を塗布し、この上から他方のフィル
ムを押圧して貼合する方法である。接着剤塗布にあたっ
ては、例えば140メッシュ、深さ75μ程度の網目状セル
を有するロールにより接着剤を一方のフィルムに全面に
塗布していた。
Recently, demands for various physical properties of films have become increasingly strict, and in order to meet these demands, a laminated film composed of two or more kinds of films is often used. As a laminating method, there is a method of co-extruding two or more kinds of resins in the presence or absence of an adhesive, but the already formed film is pasted with the adhesive, generally called dry lamination. There is a way. This method is a method in which an adhesive is applied to the entire adhesive surface of one film, and the other film is pressed from above and bonded. When applying the adhesive, for example, the adhesive was applied to the entire surface of one film by a roll having a mesh cell with a mesh of 140 mesh and a depth of about 75 μm.

〔発明が解決しようとする課題〕[Problems to be Solved by the Invention]

従来のドライラミネートの方法は全面に接着剤を施すた
め、例えば不織布と通気性を付与するために多数の微小
な孔を設けたフィルムとを積層する場合に通気性が失わ
れる。そこで、各フィルムの通気性を残したまま積層す
る技術が求められていた。更に、接着剤を大量に消費す
るため製品に占める接着剤のコストが嵩み、少量の接着
剤を用いて好ましい接着強度を有する積層フィルムを得
る技術が求められていた。
Since the conventional dry laminating method applies an adhesive to the entire surface, the air permeability is lost when, for example, a nonwoven fabric and a film provided with a large number of minute holes for imparting air permeability are laminated. Therefore, there has been a demand for a technique of laminating each film while keeping the air permeability. Further, since a large amount of the adhesive is consumed, the cost of the adhesive in the product is high, and there has been a demand for a technique for obtaining a laminated film having a preferable adhesive strength by using a small amount of the adhesive.

〔課題解決の手段〕[Means for solving problems]

本発明は上記課題を解決することを目的とし、その構成
は、2種以上のフィルムが接着剤により貼合されている
積層フィルムにおいて、上記接着剤が微細な点状に施さ
れ、各点状の接着剤が押圧されて広がり、微細な点状或
いは網目状に接着剤非塗布部位が存在することを特徴と
する。
An object of the present invention is to solve the above-mentioned problems, and the constitution is such that in a laminated film in which two or more kinds of films are bonded by an adhesive, the adhesive is applied in the form of fine dots, The adhesive agent is pressed and spreads, and there are fine adhesive spots or mesh-like portions where the adhesive agent is not applied.

本発明に用いるフィルムは、ポリエステル、リニアロー
デンシティポリエチレン(LLDPE)、延伸ポリプロピレ
ン、ポリ塩化ビニリデン、ポリスチレンなどの合成樹脂
フィルムに限らず、アルミ箔、紙、不織布などフィルム
状のものはすべて包含する。積層するフィルムは単層フ
ィルムに限らず、すでに積層したフィルムにも適用で
き、本発明の方法を2回以上繰返して3層以上のフィル
ムを得ることもできる。また、接着剤はこれらを接着し
うるものであれば特に限定はない。
The film used in the present invention is not limited to synthetic resin films such as polyester, linear rhodity polyethylene (LLDPE), stretched polypropylene, polyvinylidene chloride, polystyrene, and the like, and all film-like films such as aluminum foil, paper, and non-woven fabric are included. The film to be laminated is not limited to a single layer film, but can be applied to already laminated films, and the method of the present invention can be repeated twice or more to obtain a film having three or more layers. The adhesive is not particularly limited as long as it can bond them.

接着剤を施す方法は、凹版印刷機に使用されるような微
小な窪み(セル)を全面に有するロールが好ましい。こ
のロールが接着剤層に浸漬したときセル内に接着剤が充
填される。次いでドクターブレードなどでセル以外の部
位の接着剤を除去し、フィルムに転写する。セルの径は
0.05〜1mm、好ましくは0.1〜0.5mmである。セルの径が1
mmを越えると積層したフィルムにムラが生じ透明感が阻
害される。ロール面上にセルの占める面積は1/2〜1/5
0、好ましくは1/6〜1/20程度である。1/2以上では他方
のフィルムを貼着したとき接着剤が全面に広がり、接着
剤非塗布部位が残らない。しかしこのような場合でも接
着剤塗布量を半減する効果を有する。1/50以下では接着
強度が低下する。
The method of applying the adhesive is preferably a roll having fine dents (cells) on the entire surface as used in an intaglio printing machine. The cell is filled with the adhesive when the roll is dipped in the adhesive layer. Then, the doctor blade or the like is used to remove the adhesive from the area other than the cells, and the image is transferred to a film. The cell diameter is
It is 0.05 to 1 mm, preferably 0.1 to 0.5 mm. Cell diameter is 1
If it exceeds mm, unevenness occurs in the laminated film and the transparency is impaired. The area occupied by cells on the roll surface is 1/2 to 1/5
It is 0, preferably about 1/6 to 1/20. If it is 1/2 or more, the adhesive spreads over the entire surface when the other film is attached, leaving no area where no adhesive is applied. However, even in such a case, it has an effect of halving the adhesive coating amount. If it is less than 1/50, the adhesive strength will decrease.

このように接着剤を点状に塗布したフィルムに他のフィ
ルムを貼合したものは、貼合の際の押圧により接着剤塗
布面積が3〜4倍に広がり、且つ、接着剤使用量は従来
技術の1/5〜1/20であり、接着剤非塗布部位が残存して
いるにも関わらず、従来技術による貼合と同等な接着強
度を示す。
In the case where the other film is laminated to the film in which the adhesive is applied in a dot shape in this way, the adhesive application area is expanded 3 to 4 times by the pressure at the time of attachment, and the amount of the adhesive used is conventionally. This is 1/5 to 1/20 of that of the technology, and shows the same adhesive strength as that of the bonding by the conventional technology, despite the fact that the non-adhesive application site remains.

〔作用〕[Action]

本発明は微細な窪み(セル)を有するロールにより点状
に接着剤を施すことにより、接着剤が現実のセルの大き
さより面積にして3〜4倍に広がり、実質的接着面積を
増加している。従来の方法に比してより少量の接着剤塗
布量であっても、充分な厚みに塗布された部位が均一に
分散されているなら充分な接着強度を有することが判明
した。更に、接着剤が施されていない部位が存在しても
それが均等かつ微細に分断されて或いは微細な網目状に
なって存在しているならば、従来と変わらぬ接着強度を
有することが判明した。
According to the present invention, the adhesive is applied in a dot shape by a roll having fine depressions (cells), so that the adhesive spreads 3 to 4 times in area than the actual size of the cell, and the substantial adhesive area is increased. There is. It was found that even with a smaller amount of adhesive applied as compared with the conventional method, it has sufficient adhesive strength if the sites applied with a sufficient thickness are uniformly dispersed. Furthermore, even if there is a portion where no adhesive is applied, if it is evenly and finely divided or has a fine mesh-like shape, it has been found that the adhesive strength is the same as before. did.

〔実施例〕〔Example〕

(実施例1及び比較例1) 第1図は本発明により得られた積層フィルムの模式図、
第2図はロールの孔の大きさと間隔との関係を示す拡大
図、第3図は得られた積層フィルムの接着剤部位と接着
剤非塗布部位を示す拡大図である。
(Example 1 and Comparative Example 1) FIG. 1 is a schematic view of a laminated film obtained by the present invention,
FIG. 2 is an enlarged view showing the relationship between the size of the roll holes and the interval, and FIG. 3 is an enlarged view showing the adhesive portion and the adhesive non-application portion of the obtained laminated film.

第1フィルム1として、厚さ15μの延伸ナイロンと第2
フィルム2として、厚さ30μのLLDPEフィルムをポリウ
レタン系接着剤(商標名:アドコート、東洋モートン
(株)製)3を用いて貼合した。
The first film 1 has a thickness of 15μ of stretched nylon and a second film
As the film 2, an LLDPE film having a thickness of 30 μ was laminated using a polyurethane adhesive (trade name: ADCOAT, manufactured by Toyo Morton Co., Ltd.) 3.

第2図に示すような、径0.2mm、深さ95μのセル4を0.3
8mmの間隔を保って配列したロールを用いて接着剤3を
第1フィルム1に点状に塗布した。次いで常法に従っ
て、第2フィルム2を貼合した。得られた積層フィルム
は第3図に示すように押圧により接着剤3部位が拡大し
た。5は接着剤非塗布部位である。接着剤3の使用量は
0.8g/m2であった。
As shown in Fig. 2, 0.3 mm of cell 4 with a diameter of 0.2 mm and a depth of 95μ is used.
The adhesive 3 was applied to the first film 1 in spots using a roll arranged with an interval of 8 mm. Then, the second film 2 was attached according to a conventional method. In the obtained laminated film, as shown in FIG. 3, the adhesive 3 site was enlarged by pressing. Reference numeral 5 is a part where no adhesive is applied. How much adhesive 3 is used
It was 0.8 g / m 2 .

比較例1として、従来の140メッシュ、深さ75μの網目
状セルを有するロールを用いる接着剤塗布方法により、
実施例1と同一のフィルム及び接着剤を用いて積層フィ
ルムを製造した。この場合には3.3〜3.5g/m2の接着剤を
消費した。
As Comparative Example 1, by the conventional adhesive coating method using a roll having 140 mesh and a mesh cell having a depth of 75μ,
A laminated film was manufactured using the same film and adhesive as in Example 1. In this case 3.3-3.5 g / m 2 of adhesive was consumed.

得られた積層フィルムについて諸物性を試験し、その結
果を第1表に示した。なお、10回試験を行い、それぞれ
の平均値を記載した。
Various properties of the obtained laminated film were tested, and the results are shown in Table 1. The test was conducted 10 times, and the average value of each was shown.

第1表で明らかなように、本実施例においては従来技術
の約1/4の接着剤使用量でほぼ同等の接着効果を得るこ
とができた。
As is clear from Table 1, in this example, an approximately equivalent adhesive effect could be obtained with an adhesive usage amount of about 1/4 of the conventional technique.

(実施例2及び比較例2) 第1フィルム1として、目付20g/m2のポリオレフィン系
不織布(旭化成工業(株)製)を、第2フィルム2とし
て、目付20g/m2の純白紙を用いた以外は実施例1と同様
にして接着剤を点状に塗布して両フィルムを接着した。
得られた積層フィルム及び積層前の各フィルムの透気度
をJIS P8117にしたがって測定し、その結果を第2表に
示した。各データは10回試験後の平均である。
(Example 2 and Comparative Example 2) Polyolefin non-woven fabric having a basis weight of 20 g / m 2 (manufactured by Asahi Kasei Co., Ltd.) was used as the first film 1, and pure white paper having a basis weight of 20 g / m 2 was used as the second film 2. An adhesive was applied in spots in the same manner as in Example 1 except that the two films were adhered.
The air permeability of the obtained laminated film and each film before lamination were measured according to JIS P8117, and the results are shown in Table 2. Each data is an average after 10 tests.

別に、実施例2のフィルムを用い、比較例1と同様にし
て全面に接着剤を3g/m2の割りで施し、実施例2と同様
にして透気度を測定し第2表に併記した。第2表から明
らかなように、本実施例によれば通気性フィルムを通気
性を残した状態で積層することができた。
Separately, using the film of Example 2, the adhesive was applied to the entire surface at a rate of 3 g / m 2 in the same manner as in Comparative Example 1, and the air permeability was measured in the same manner as in Example 2 and is also shown in Table 2. . As is clear from Table 2, according to this example, the breathable film could be laminated while leaving the breathability.

〔発明の効果〕 本発明により、オーダーの異なる程少量の接着剤を使用
して、従来技術と同等の効果を得ることができる。しか
も、2層以上の通気性フィルムの通気性を保持したまま
強固に貼合することができる。
[Advantages of the Invention] According to the present invention, it is possible to obtain the same effects as those of the prior art by using a smaller amount of adhesive in different orders. Moreover, it is possible to firmly bond the two or more layers of breathable film while maintaining the breathability.

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

図面は本発明の実施例を示し、第1図は得られた積層フ
ィルムの模式図、第2図はロールの孔の大きさと間隔と
の関係を示す拡大図、第3図は第2図のロールを用いて
得られた積層フィルムの接着剤塗布部位と接着剤非塗布
部位の関係を示す拡大図である。 図面中、符号 1は第1フィルム、2は第2フィルム、3は接着剤、4
はセル、5は接着剤非塗布部位である。
The drawings show the examples of the present invention, FIG. 1 is a schematic view of the obtained laminated film, FIG. 2 is an enlarged view showing the relationship between the size and interval of the holes of the roll, and FIG. It is an enlarged view which shows the relationship of the adhesive application site and adhesive non-application site of the laminated film obtained using the roll. In the drawings, reference numeral 1 is a first film, 2 is a second film, 3 is an adhesive, 4
Is a cell, and 5 is a part to which no adhesive is applied.

Claims (3)

【特許請求の範囲】[Claims] 【請求項1】2種以上のフィルムが乾式積層法によって
積層されたフィルムにおいて、 微細な独立した点状に施された接着剤が押圧されて、接
着剤が存在しない部位が微細に分断されて存在している
と共に、一層のフィルムであるような外観を呈すること
を特徴とする乾式積層フィルム。
1. A film obtained by laminating two or more kinds of films by a dry laminating method, wherein the adhesive applied in the form of fine independent dots is pressed, and the portion where no adhesive is present is finely divided. A dry laminated film, which is present and has the appearance of a single-layer film.
【請求項2】2種以上のフィルムが乾式積層法によって
積層されたフィルムにおいて、 微細な独立した点状に施された接着剤が押圧されて、接
着剤が存在しない部位が微細な網目状となって存在して
いると共に、一層のフィルムであるような外観を呈する
ことを特徴とする乾式積層フィルム。
2. A film obtained by laminating two or more kinds of films by a dry laminating method, wherein the adhesive applied in the form of fine independent dots is pressed to form a fine mesh-like region where the adhesive does not exist. The dry laminated film is characterized in that it has the appearance of a single layer film.
【請求項3】2種以上のフィルムを接着剤により貼合わ
せる乾式積層法において、 一方のフィルムに径が0.05〜1mmの多数の窪みを有する
ロールを用いて接着剤を点状に施し、他方のフィルムを
貼合、押圧すると共に、接着剤が存在する部位の面積が
20〜68%であることを特徴とする乾式積層フィルムの製
法。
3. A dry laminating method in which two or more kinds of films are stuck together with an adhesive, and one of the films is applied with dots of the adhesive using a roll having a large number of depressions with a diameter of 0.05 to 1 mm, and the other film is applied. While sticking and pressing the film, the area of the part where the adhesive is present
A method for producing a dry laminated film, which is 20 to 68%.
JP2106384A 1990-04-24 1990-04-24 Dry laminated film and laminating method Expired - Fee Related JPH0739141B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2106384A JPH0739141B2 (en) 1990-04-24 1990-04-24 Dry laminated film and laminating method

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2106384A JPH0739141B2 (en) 1990-04-24 1990-04-24 Dry laminated film and laminating method

Publications (2)

Publication Number Publication Date
JPH045023A JPH045023A (en) 1992-01-09
JPH0739141B2 true JPH0739141B2 (en) 1995-05-01

Family

ID=14432213

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2106384A Expired - Fee Related JPH0739141B2 (en) 1990-04-24 1990-04-24 Dry laminated film and laminating method

Country Status (1)

Country Link
JP (1) JPH0739141B2 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2008514453A (en) * 2004-09-23 2008-05-08 サン−ゴバン・イソベール Laminated building materials

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO1996041721A1 (en) 1995-06-12 1996-12-27 Citizen Watch Co., Ltd. Ink jet head method of production thereof, and jig for producing ink jet head

Family Cites Families (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS51116843A (en) * 1975-04-04 1976-10-14 Matsushita Electric Works Ltd Applicator of adhesives for laying plastic tiles
JPS557377Y2 (en) * 1975-08-04 1980-02-19
JPS557374Y2 (en) * 1975-08-04 1980-02-19
JPS557373Y2 (en) * 1975-08-04 1980-02-19
JPS5316836A (en) * 1976-07-30 1978-02-16 Shin Kobe Electric Machinery Method of producing battery separator
JPS58208048A (en) * 1982-05-31 1983-12-03 株式会社日立製作所 Manufacture of polyester film laminate
JPH031166Y2 (en) * 1985-07-13 1991-01-16
JPS62202730A (en) * 1986-03-04 1987-09-07 旭化成株式会社 Waterproof and moisture permeable cloth-shaped article

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2008514453A (en) * 2004-09-23 2008-05-08 サン−ゴバン・イソベール Laminated building materials

Also Published As

Publication number Publication date
JPH045023A (en) 1992-01-09

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