JP2000334835A - Film-stuck printed matter and its production - Google Patents

Film-stuck printed matter and its production

Info

Publication number
JP2000334835A
JP2000334835A JP15227999A JP15227999A JP2000334835A JP 2000334835 A JP2000334835 A JP 2000334835A JP 15227999 A JP15227999 A JP 15227999A JP 15227999 A JP15227999 A JP 15227999A JP 2000334835 A JP2000334835 A JP 2000334835A
Authority
JP
Japan
Prior art keywords
film
printed matter
adhesive
embossed
printed
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.)
Granted
Application number
JP15227999A
Other languages
Japanese (ja)
Other versions
JP3248168B2 (en
Inventor
Kyoichi Asai
経一 浅井
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.)
TOKYOTO KOTAKU KAKOSHI KYODO K
TOKYOTO KOTAKU KAKOSHI KYODO KUMIAI
Original Assignee
TOKYOTO KOTAKU KAKOSHI KYODO K
TOKYOTO KOTAKU KAKOSHI KYODO KUMIAI
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 TOKYOTO KOTAKU KAKOSHI KYODO K, TOKYOTO KOTAKU KAKOSHI KYODO KUMIAI filed Critical TOKYOTO KOTAKU KAKOSHI KYODO K
Priority to JP15227999A priority Critical patent/JP3248168B2/en
Publication of JP2000334835A publication Critical patent/JP2000334835A/en
Application granted granted Critical
Publication of JP3248168B2 publication Critical patent/JP3248168B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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  • Printing Methods (AREA)
  • Shaping Of Tube Ends By Bending Or Straightening (AREA)
  • Lining Or Joining Of Plastics Or The Like (AREA)

Abstract

PROBLEM TO BE SOLVED: To provide a film-stuck printed matter having an uneven mesh pattern surface and an even surface in which the adhesion between the film and the printed matter is good and which is produced in a curtailed time in production process. SOLUTION: A biaxially oriented synthetic resin film 15-50 μm in thickness is supplied between a mesh roll and a paper roll, which are heated at 40-120 deg.C, to be embossed, and an embossed film 8 in which the distance (d) between projected and recessed parts 10, 9 in an uneven mesh pattern is 50 ×m or below is obtained. After an adhesive 7 of 3.0-4.0 g/m2 printed matter surface area standard is applied on the film 8, the film is stuck on the printed surface of printed matter 6 under a prescribed pressure, and film-stuck printed matter having a surface with an uneven mesh pattern and a good felling of embossment and an even surface is obtained.

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】本発明は、フィルム貼着印刷
物及びその製造方法に関し、特に表面のみに凹凸形状の
メッシュ模様を有し、裏面には凹凸形状がないフィルム
貼着印刷物及びその製造方法に関する。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a film-adhered printed matter and a method for producing the same, and more particularly to a film-adhered printed matter having an uneven mesh pattern only on its surface and no irregularities on its back surface. .

【0002】[0002]

【従来の技術】従来、紙、高分子材料からなるフィル
ム、皮革などのシートに凹凸形状のメッシュ模様を形成
せしめて得られるエンボスシートは、印刷物、包装紙、
便せん、カレンダー、壁紙材、化粧合板の表面層などの
分野で使用されている。例えば、印刷物の場合、印刷物
にフィルム等を貼着し、このラミネート加工後に接着剤
が乾燥・固化するまで所定の時間放置し、次いでこのラ
ミネート加工した印刷物に対して凹凸形状のメッシュ模
様などの表面模様を施すためにエンボス加工して、印刷
物表面の光沢及び装幀効果を増すことが行われていた。
2. Description of the Related Art Conventionally, embossed sheets obtained by forming an uneven mesh pattern on a sheet of paper, a film made of a polymer material, a leather, etc. have been used for printing, wrapping paper,
It is used in the fields such as stationery, calendar, wallpaper material, and surface layer of decorative plywood. For example, in the case of a printed matter, a film or the like is stuck to the printed matter, and after the lamination, the adhesive is left for a predetermined time until the adhesive is dried and solidified, and then the surface of the laminated printed matter such as an uneven mesh pattern is formed. Embossing has been used to apply a pattern to increase the gloss and binding effect of the printed matter surface.

【0003】[0003]

【発明が解決しようとする課題】しかしながら、上記従
来の加工法により得られた印刷物は、印刷物の右下側部
分を折り返して表裏の外観状態が観察できるようにして
示す図1から明らかなように、その表面Aに凹凸形状
(図中の梨地模様)が発生しかつ裏面Bにこの形状に対
応する凸凹形状(図中の梨地模様)が発生している。こ
のため、書籍、雑誌等の表紙、裏表紙に対して上記のよ
うな従来の表面加工・エンボス加工を行う場合、特に両
面印刷された印刷物に対して該表面加工・エンボス加工
を行う場合には、裏面の印刷面を損ない、美感の上から
好ましくないという問題があった。すなわち、このよう
な印刷物の加工は、印刷物表面に、予め合成樹脂等の接
着剤を塗布したフィルムをラミネート加工法で圧着処理
した後、この印刷物を彫刻ロール(メッシュロール)と
受けロール(ゴムロール又はペーパーロール等)との間
を通過させて、印刷物に凹凸模様を施すことによって行
われていたため、印刷物の裏面にも表面の凹凸形状に対
応する凸凹形状が出現するという問題があった。
However, the printed matter obtained by the above-mentioned conventional processing method is, as is apparent from FIG. 1, in which the lower right portion of the printed matter is turned over so that the appearance of the front and back sides can be observed. An uneven shape (pattern pattern in the figure) is generated on the front surface A, and an uneven shape (pattern pattern in the figure) corresponding to this shape is generated on the back surface B. For this reason, when performing the above-mentioned conventional surface processing and embossing on the front cover and back cover of books, magazines, etc., particularly when performing the surface processing and embossing on double-sided printed matter However, there is a problem that the printed surface of the back surface is damaged, which is not preferable from the viewpoint of aesthetics. That is, in processing such a printed material, a film in which an adhesive such as a synthetic resin is previously applied to the surface of the printed material is subjected to pressure bonding by a laminating method, and then the printed material is subjected to an engraving roll (mesh roll) and a receiving roll (rubber roll or (A paper roll or the like) to give the printed matter an uneven pattern. Therefore, there is a problem that an uneven shape corresponding to the uneven shape of the surface appears on the back surface of the printed matter.

【0004】さらに、上記従来の表面加工法では、該フ
ィルムと印刷物との密着不良が生じやすいという問題点
があるとともに、ラミネート加工後、合成樹脂接着剤が
完全に硬化するまで、時間を置く必要があった。
Further, the above-mentioned conventional surface processing method has a problem that poor adhesion between the film and the printed matter is liable to occur, and it is necessary to allow time for the synthetic resin adhesive to be completely cured after laminating. was there.

【0005】本発明は、かかる従来の問題点を解消する
ものであり、凹凸形状のメッシュ模様の施された面と凸
凹形状のない面とを有するフィルム貼着印刷物であっ
て、フィルムと印刷物との密着性が良好であり、また、
製造プロセスの時間が短縮された、フィルム貼着印刷物
及びその製造方法を提供することを課題とする。
The present invention has been made to solve the above-mentioned conventional problems, and is directed to a film-adhered printed material having a surface provided with an uneven mesh pattern and a surface having no unevenness, wherein Has good adhesion,
It is an object of the present invention to provide a film-adhered printed material and a method for manufacturing the same, in which the time of the manufacturing process is reduced.

【0006】[0006]

【課題を解決するための手段】本発明のフィルム貼着印
刷物の製造方法は、二軸延伸合成樹脂フィルムを、常温
から該フィルムがカールしてしまわない温度までの温度
に加熱された彫刻ロールと受けロール(ゴムロール又は
ペーパーロール等)との間に送入してエンボス加工し、
エンボスフィルムを得、得られたエンボスフィルムと印
刷物とを接着剤を用いて所定の圧着力で貼着せしめ、凹
凸形状のメッシュ模様の施された面(好ましくは、光沢
のある面)と凹凸形状のない面とを有するフィルム貼着
印刷物を得るものである。原材料として用いる二軸延伸
合成樹脂フィルムの厚さは、15〜50μmであること
が好ましく、該エンボス加工を常温(約20℃)〜15
0℃の温度で行うことが好ましく、該エンボスフィルム
のメッシュ模様の凹凸形状の凸部と凹部との距離が50
μm以下であることが好ましく、該エンボスフィルム及
び印刷物のいずれか一方又は両方に(好ましくは、該エ
ンボスフィルムに)、接着剤を印刷物表面積基準で1.
5〜5.0g/m2 の量で塗布せしめた後、このフィル
ムを印刷物の印刷面に貼着せしめることが好ましい。ま
た、該エンボス加工を40〜120℃で行い、接着剤の
塗布量を印刷物表面積基準で3.0〜4.0g/m2
することがさらに好ましい。
According to the present invention, there is provided a method for producing a film-adhered printed material, comprising the steps of: forming a biaxially stretched synthetic resin film on an engraving roll heated to a temperature from room temperature to a temperature at which the film does not curl. Embossed by feeding between a receiving roll (rubber roll or paper roll, etc.)
An embossed film is obtained, and the obtained embossed film and printed matter are adhered to each other with a predetermined pressure using an adhesive, and a surface (preferably a glossy surface) provided with an uneven mesh pattern and an uneven shape are formed. And to obtain a film-adhered printed matter having a surface having no surface. The thickness of the biaxially stretched synthetic resin film used as a raw material is preferably 15 to 50 μm, and the embossing is performed at room temperature (about 20 ° C.) to 15 μm.
It is preferably performed at a temperature of 0 ° C., and the distance between the convex portion and the concave portion of the concave and convex shape of the mesh pattern of the embossed film is 50.
μm or less, and an adhesive is applied to one or both of the embossed film and the printed matter (preferably to the embossed film) based on the surface area of the printed matter.
After coating in an amount of 5 to 5.0 g / m 2, the film is preferably stuck to the printed surface of a printed material. More preferably, the embossing is performed at 40 to 120 ° C., and the amount of the adhesive applied is 3.0 to 4.0 g / m 2 based on the surface area of the printed material.

【0007】また、本発明のフィルム貼着印刷物は、常
温〜150℃に加熱された彫刻ロールと受けロールとを
用いてエンボス加工された二軸延伸合成樹脂フィルムと
印刷物とを接着剤を用いて貼着せしめてなる凹凸形状の
メッシュ模様の施され面(好ましくは、光沢のある面)
と凹凸形状のない面とを有するものである。
[0007] Further, the film-attached printed material of the present invention is obtained by embossing a biaxially stretched synthetic resin film using an engraving roll and a receiving roll heated to room temperature to 150 ° C, and a printed material using an adhesive. The surface on which the irregular mesh pattern is applied (preferably a glossy surface)
And a surface without irregularities.

【0008】[0008]

【発明の実施の形態】本発明で用いる二軸延伸合成樹脂
フィルムとしては、例えばポリプロピレン、ポリエチレ
ンテレフタレート等のポリエステル、塩化ビニル等から
得られた二軸延伸フィルムを挙げることができる。具体
的には、例えばトレファン.BO又はルミラー(商品
名、東レ株式会社製)として市販されているフィルムが
ある。フィルム厚さが15μm未満であるとエンボス加
工しても所望の凹凸模様が出ず、また、50μmを超え
た場合、所望の凹凸模様は出るがフィルムの価格の面か
ら経済的に引き合わない。
DESCRIPTION OF THE PREFERRED EMBODIMENTS Examples of the biaxially stretched synthetic resin film used in the present invention include biaxially stretched films obtained from polyesters such as polypropylene and polyethylene terephthalate, and vinyl chloride. Specifically, for example, Trefan. There are films commercially available as BO or Lumirror (trade name, manufactured by Toray Industries, Inc.). If the film thickness is less than 15 μm, the desired concavo-convex pattern will not appear even when embossing, and if it exceeds 50 μm, the desired concavo-convex pattern will appear, but it will not be economically attractive in terms of the cost of the film.

【0009】このようなフィルムをエンボス加工する際
のフィルムの加熱温度が常温より低いと美麗なエンボス
が得られず、また、150℃を超えるとフィルム幅の収
縮(縮み)又はシワ等が生じるという問題がある。
If the heating temperature of the film when embossing such a film is lower than room temperature, a beautiful emboss cannot be obtained, and if the temperature exceeds 150 ° C., shrinkage (shrinkage) or wrinkles of the film width occurs. There's a problem.

【0010】また、上記エンボスフィルムのメッシュ模
様の凹凸形状の凸部と凹部との距離が50μmを超える
とフィルム強度が低下する。その下限は特に制限はな
く、メッシュ模様の凹凸形状が観察される範囲であれば
よい。
When the distance between the convex and concave portions of the embossed film of the embossed film exceeds 50 μm, the film strength is reduced. The lower limit is not particularly limited, and may be any range as long as the unevenness of the mesh pattern is observed.

【0011】本発明で使用され得る接着剤としては、特
に制限されるわけではなく、フィルムと印刷物とが良好
に接着できるものであればよい。例えば、アクリル系、
アクリル−ウレタン系、塩化ビニル系、酢酸ビニル系、
エポキシ系などの接着剤を使用することができる。本発
明におけるフィルムと印刷物との貼着は、フィルム自体
に凹凸形状のメッシュ模様があるため、面接着ではな
く、線接着で行われる。すなわち、図4(B)に示すよう
に、接着剤7は、エンボスフィルム8の凹凸形状の印刷
物6と接する側である凹部9と、印刷物から離れて位置
する凸部10のエッジ部分(凸部の内壁部分の少なくと
も一部)とだけに適切に塗布されるようにする。このた
めに、接着剤の量は上記した範囲であることが好まし
い。接着剤の量が表面加工される印刷物表面積基準で
1.5g/m2 未満であるとエンボスフィルムと印刷物
との密着不良が生じるという不都合があり、5.0g/
2 を超えると接着剤がエンボスフィルムの凹部9へ多
量入り込んで過飽和に付着し、その結果、メッシュ模
様、特にそのエッジ部分がシャープに出にくいという問
題がある。
The adhesive that can be used in the present invention is not particularly limited, and any adhesive can be used as long as the film and the printed matter can be satisfactorily bonded. For example, acrylic,
Acrylic-urethane, vinyl chloride, vinyl acetate,
An adhesive such as an epoxy-based adhesive can be used. In the present invention, since the film itself has an uneven mesh pattern, the film and the printed matter are bonded by line bonding instead of surface bonding. That is, as shown in FIG. 4B, the adhesive 7 is applied to the concave portion 9 on the side of the embossed film 8 which is in contact with the uneven printed material 6 and the edge portion (convex portion) of the convex portion 10 located away from the printed material. And at least a portion of the inner wall portion). For this reason, the amount of the adhesive is preferably in the above range. If the amount of the adhesive is less than 1.5 g / m 2 on the basis of the surface area of the printed material to be surface-processed, there is a disadvantage that poor adhesion between the embossed film and the printed material occurs, and 5.0 g / m 2.
If it exceeds m 2 , a large amount of the adhesive will penetrate into the concave portions 9 of the embossed film and adhere to it in a supersaturated manner. As a result, there is a problem that the mesh pattern, particularly the edge portion thereof, is difficult to come out sharply.

【0012】[0012]

【実施例】以下、本発明の実施例を図面を参照してより
具体的に説明するが、これらの例は単なる例示であり、
本発明を制限するものではない。 (実施例1)図2に示すように、雄型の彫刻ロール(メ
ッシュロール)1と雌型となるペーパーロール2とを用
い、まずエンボス加工をするための前処理としてペーパ
ーロールを水で濡らして彫刻ロールのエンボス形状を転
写した。この彫刻ロールのエンボスの深さdは最大50
μmであった。次いで、厚さ30μm、幅1500m/
mの二軸延伸ポリプロピレンフィルム(商品名:トレフ
ァン.BO、東レ株式会社製)3を、送り速度最大50
mで、所定の圧力下、温度120℃に加熱された彫刻ロ
ール1及びペーパーロール2の間に矢印方向から供給
し、彫刻ロールの回転とペーパーロールの追従回転とに
よりエンボス加工を実施した(図3)。送出されたエン
ボスフィルム8の凹凸形状のメッシュ模様はその高さd
が50μm以下であった。得られたエンボスフィルムを
ロールに巻き取った。次いで、このエンボスフィルムを
印刷物の印刷面上に貼着せしめた。すなわち、図4に示
すように、熱ロール4と圧胴5との間に、印刷物6とア
クリル系接着剤(商品名:Dタイト6920、大日本イ
ンキ化学工業株式会社製)7を3−4g/m2 塗布せし
めたエンボスフィルム8とをそれぞれ矢印方向から供給
し、これらのロールとドラムとの回転により所定の圧力
下(例えば、150kg/m2 以上)、貼着工程を実施
し、フィルム貼着印刷物を得た。得られたフィルム貼着
印刷物は、図5に示すように、そのフィルム側の面Xに
は美麗なメッシュ模様が発現しており、図1の場合と異
なって印刷物の裏面Yには凸凹形状のメッシュ模様は出
現していなかった。また、表面のエンボス感は良好であ
り、特にメッシュ模様のエンボス感がシャープであっ
た。
DESCRIPTION OF THE PREFERRED EMBODIMENTS Embodiments of the present invention will be described below in more detail with reference to the drawings, but these examples are merely illustrative.
It does not limit the invention. (Example 1) As shown in FIG. 2, a male type engraving roll (mesh roll) 1 and a female type paper roll 2 were used, and the paper roll was wetted with water as a pretreatment for embossing. The embossed shape of the engraving roll was transferred. The embossing depth d of this engraving roll is up to 50
μm. Next, a thickness of 30 μm and a width of 1500 m /
m of biaxially stretched polypropylene film (trade name: Trefan. BO, manufactured by Toray Industries, Inc.) 3 at a feed rate of 50
m, the paper was supplied from the direction of the arrow between the engraving roll 1 and the paper roll 2 heated to a temperature of 120 ° C. under a predetermined pressure, and embossing was performed by the rotation of the engraving roll and the following rotation of the paper roll (FIG. 3). The uneven mesh pattern of the embossed film 8 sent out has a height d.
Was 50 μm or less. The obtained embossed film was wound up on a roll. Next, this embossed film was stuck on the printing surface of the printed matter. That is, as shown in FIG. 4, between the hot roll 4 and the impression cylinder 5, 3-4 g of the printed matter 6 and the acrylic adhesive (trade name: D-Tight 6920, manufactured by Dainippon Ink and Chemicals, Inc.) 7 / M 2 is applied in the direction of the arrow, and by applying a rotation of these rolls and the drum under a predetermined pressure (for example, 150 kg / m 2 or more), a sticking step is performed. A printed product was obtained. As shown in FIG. 5, the resulting film-attached printed matter has a beautiful mesh pattern on the surface X on the film side, and unlike the case of FIG. No mesh pattern appeared. The embossing feeling on the surface was good, and the embossing feeling of the mesh pattern was particularly sharp.

【0013】[0013]

【発明の効果】本発明のフィルム貼着印刷物の製造方法
によれば、得られたフィルム貼着印刷物は、印刷物の表
面のみに凹凸形状のメッシュ模様が出現し、裏面にはメ
ッシュ模様が出ないので、裏面の外観が損なわれること
もなく、特に両面印刷物の場合には裏面の印刷面を汚す
ことがない。さらにまた、フィルムと印刷物との密着性
が良好であり、また接着剤塗布後に時間を置く必要がな
いので、製造プロセスの時間が短縮され得る。
According to the method for producing a film-attached printed matter of the present invention, the obtained film-attached printed matter has an uneven mesh pattern only on the surface of the printed matter, and no mesh pattern appears on the back surface. Therefore, the appearance of the back surface is not impaired, and especially in the case of a double-sided printed material, the printed surface of the back surface is not stained. Furthermore, since the adhesion between the film and the printed matter is good and there is no need to wait for the time after the application of the adhesive, the time for the manufacturing process can be shortened.

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

【図1】従来法により得られたフイルム貼着印刷物の表
面Aおよび裏面Bの外観状態を示す写真。
FIG. 1 is a photograph showing the appearance of a front surface A and a back surface B of a film-adhered printed material obtained by a conventional method.

【図2】本発明におけるエンボス加工用ロール部分の側
面図。
FIG. 2 is a side view of an embossing roll portion according to the present invention.

【図3】本発明におけるエンボス加工の加工状態を説明
するためのロール部分の側面図。
FIG. 3 is a side view of a roll portion for explaining a processing state of embossing in the present invention.

【図4】(A)本発明における貼着工程を説明するため
のロール部分の側面図。 (B)図4(A)の貼付工程を経て得られるフィルム貼
着印刷物の断面図。
FIG. 4A is a side view of a roll portion for explaining an attaching step in the present invention. (B) A cross-sectional view of a film-adhered printed material obtained through the adhering step of FIG. 4 (A).

【図5】本発明の方法により得られたフィルム貼着印刷
物の表面Xおよび裏面Yの外観状態を示す写真。
FIG. 5 is a photograph showing the appearance of the front surface X and the back surface Y of a film-attached printed material obtained by the method of the present invention.

【符号の説明】[Explanation of symbols]

1 彫刻ロール(メッシュロール) 2 ペーパーロー
ル2 3 ポリプロピレンフィルム 4 熱ロール 5 圧胴 6 印刷物 7 接着剤 8 エンボスフィ
ルム 9 凹部 10 凸部 d エンボスの深さ A 、X 印刷物
表面 B、Y 印刷物裏面
DESCRIPTION OF SYMBOLS 1 Engraving roll (mesh roll) 2 Paper roll 2 3 Polypropylene film 4 Heat roll 5 Impression cylinder 6 Printed matter 7 Adhesive 8 Embossed film 9 Concave part 10 Convex part d Emboss depth A, X Printed material surface B, Y Printed material back surface

フロントページの続き Fターム(参考) 2H113 AA04 AA06 BA28 BB08 CA05 DA47 EA01 EA02 EA07 FA04 FA48 4F209 AA11 AD08 AF01 AG01 AG03 AG05 PA04 PB02 PC07 PC12 PG04 PH03 PH06 PQ02 PW43 4F211 AA11 AD08 AF01 AG01 AG03 AG05 SA07 SD01 SD21 SG08 SN01 SN19 SP05 Continued on the front page F-term (reference) 2H113 AA04 AA06 BA28 BB08 CA05 DA47 EA01 EA02 EA07 FA04 FA48 4F209 AA11 AD08 AF01 AG01 AG03 AG05 PA04 PB02 PC07 PC12 PG04 PH03 PH06 PQ02 PW43 4F211 AA11 AD08 AF01 AG01 SN01 SG05 SG05 SP05

Claims (4)

【特許請求の範囲】[Claims] 【請求項1】 二軸延伸合成樹脂フィルムを、常温から
該フィルムがカールしてしまわない温度までの温度に加
熱された彫刻ロールと受けロールとの間に送入してエン
ボス加工し、エンボスフィルムを得、得られたエンボス
フィルムと印刷物とを接着剤を用いて貼着せしめ、凹凸
形状のメッシュ模様の施された面と凹凸形状のない面と
を有するフィルム貼着印刷物を得ることを特徴とするフ
ィルム貼着印刷物の製造方法。
An embossed film is fed by feeding a biaxially stretched synthetic resin film between an engraving roll and a receiving roll heated to a temperature from room temperature to a temperature at which the film does not curl. The obtained embossed film and the printed matter are adhered using an adhesive to obtain a film-adhered printed matter having a surface on which an uneven mesh pattern is applied and a surface having no uneven shape. Of producing a film-adhered printed material.
【請求項2】 前記二軸延伸合成樹脂フィルムの厚さが
15〜50μmであり、前記エンボス加工の際の加熱温
度が常温〜150℃であり、前記エンボスフィルムのメ
ッシュ模様の凹凸形状の凸部と凹部との距離が50μm
以下であり、該エンボスフィルムおよび印刷物のいずれ
か一方または両方に接着剤を印刷物表面積基準で1.5
〜5.0g/m2 の量で塗布せしめた後、このフィルム
を印刷物の印刷面に貼着せしめることを特徴とする請求
項1記載のフィルム貼着印刷物の製造方法。
2. The biaxially stretched synthetic resin film has a thickness of 15 to 50 μm, a heating temperature at the time of the embossing is a normal temperature to 150 ° C., and a convex part having a mesh pattern of the embossed film. The distance between the groove and the recess is 50 μm
An adhesive is applied to one or both of the embossed film and the printed matter based on the surface area of the printed matter for 1.5 times or less.
After allowed applied in an amount of to 5.0 g / m 2, the production method according to claim 1, wherein the film sticking the printed matter, characterized in that occupy clothed stuck to the film on the printing surface of the printed matter.
【請求項3】 前記加熱温度が40〜120℃であり、
前記接着剤の塗布量が印刷物表面積基準で3.0〜4.
0g/m2 であることを特徴とする請求項2記載のフィ
ルム貼着印刷物の製造方法。
3. The heating temperature is 40 to 120 ° C.
The amount of the adhesive applied is 3.0 to 4.0 based on the surface area of the printed material.
The method according to claim 2 , wherein the weight is 0 g / m2.
【請求項4】 常温〜150℃に加熱された彫刻ロール
と受けロールとを用いてエンボス加工された二軸延伸合
成樹脂フィルムと印刷物とを接着剤を用いて貼着せしめ
てなる凹凸形状のメッシュ模様の施された面と凹凸形状
のない面とを有するフィルム貼着印刷物。
4. An uneven mesh formed by adhering, using an adhesive, a biaxially stretched synthetic resin film embossed using an engraving roll and a receiving roll heated to room temperature to 150 ° C. using an adhesive. A film-adhered printed material having a patterned surface and a surface without irregularities.
JP15227999A 1999-05-31 1999-05-31 Film-adhered printed matter and method for producing the same Expired - Fee Related JP3248168B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP15227999A JP3248168B2 (en) 1999-05-31 1999-05-31 Film-adhered printed matter and method for producing the same

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP15227999A JP3248168B2 (en) 1999-05-31 1999-05-31 Film-adhered printed matter and method for producing the same

Publications (2)

Publication Number Publication Date
JP2000334835A true JP2000334835A (en) 2000-12-05
JP3248168B2 JP3248168B2 (en) 2002-01-21

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ID=15537050

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Country Link
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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2009224304A (en) * 2008-03-17 2009-10-01 Shi-Chiun Chen Micro-hole substrate and manufacturing method therefor
JP2009233956A (en) * 2008-03-26 2009-10-15 Dainippon Printing Co Ltd Embossing apparatus, embossing roll, uneven pattern, processed goods, and method for producing processed goods
CN103009623A (en) * 2012-12-27 2013-04-03 曾立敏 Drainage board and water drainage and storage board forming equipment
JP2016107414A (en) * 2014-12-02 2016-06-20 柏原加工紙株式会社 Embossed paper material and method for manufacturing the same

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2009224304A (en) * 2008-03-17 2009-10-01 Shi-Chiun Chen Micro-hole substrate and manufacturing method therefor
JP2009233956A (en) * 2008-03-26 2009-10-15 Dainippon Printing Co Ltd Embossing apparatus, embossing roll, uneven pattern, processed goods, and method for producing processed goods
CN103009623A (en) * 2012-12-27 2013-04-03 曾立敏 Drainage board and water drainage and storage board forming equipment
CN103009623B (en) * 2012-12-27 2015-02-04 曾立敏 Drainage board and water drainage and storage board forming equipment
JP2016107414A (en) * 2014-12-02 2016-06-20 柏原加工紙株式会社 Embossed paper material and method for manufacturing the same

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