JP2005047155A - Injection-molded painted molding with convex lens and its production method - Google Patents

Injection-molded painted molding with convex lens and its production method Download PDF

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JP2005047155A
JP2005047155A JP2003281746A JP2003281746A JP2005047155A JP 2005047155 A JP2005047155 A JP 2005047155A JP 2003281746 A JP2003281746 A JP 2003281746A JP 2003281746 A JP2003281746 A JP 2003281746A JP 2005047155 A JP2005047155 A JP 2005047155A
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convex lens
injection
decorative
resin
layer
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Shizuo Nagayama
静男 永山
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Nissha Printing Co Ltd
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Nissha Printing Co Ltd
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<P>PROBLEM TO BE SOLVED: To provide an injection-molded decorative molding with a convex lens which does not use a lens sheet of a soft material causing the deformation of the convex lens by pressure during injection molding to obtain a desired lens effect and is composed of the transparent injection-molded resin layers of hemispherical convex lens parts and a decorative pattern layer on the opposite surface. <P>SOLUTION: In the method for producing the injection-molded decorative molding with the convex lens, a decorative sheet 10 with the decorative pattern layer 3 formed is set on the side of a mold 21. A transparent molding resin 9 is packed in a molding space formed between the decorative sheet 10 and a mold 20 in which a plurality of hemispherical recesses are formed on one side, and the decorative sheet 10 and a molding resin layer are integrated. In this way, the convex lens part and the decorative pattern layer can easily be formed on one side of the transparent molding resin layer and on the opposite surface, respectively. <P>COPYRIGHT: (C)2005,JPO&NCIPI

Description

本発明は、透明な射出成形樹脂層の片面が複数の半球形の凸レンズ部からなり、該透明な射出成形樹脂層の凸レンズ部形成面と反対面に装飾パターンが形成された凸レンズ付き射出成形加飾成形品およびその製造方法に関する。   The present invention provides an injection molding process with a convex lens in which one surface of a transparent injection molded resin layer is composed of a plurality of hemispherical convex lens portions, and a decorative pattern is formed on the surface opposite to the convex lens portion forming surface of the transparent injection molded resin layer. The present invention relates to a decorative molded product and a manufacturing method thereof.

従来、レンズ効果を呈する製品としては、特許文献1で開示されているレンズシートの発明が公知である。このレンズシートは、基体シートの片面に半球形の凸レンズ層、その背面に装飾パターン層が、それぞれ印刷などの技法により形成されたものである。   Conventionally, as a product exhibiting a lens effect, the invention of a lens sheet disclosed in Patent Document 1 is known. In this lens sheet, a hemispherical convex lens layer is formed on one side of a base sheet, and a decorative pattern layer is formed on the back side thereof by a technique such as printing.

特開平9−207254号JP-A-9-207254

しかし、このレンズシートを射出成形金型に挿入し成形樹脂と一体化しても、所望のレンズ効果を呈する射出成形品が得られない問題があった。その原因は、凸レンズ層の部分を軟質材料で形成した場合、射出成形時の圧力で凸レンズ部分が変形するためであった。また、凸レンズ層の部分を硬質材料で形成した場合、レンズシートに延伸性がなくなり、射出成形時の圧力でレンズシートが破断するためであった。   However, even if this lens sheet is inserted into an injection mold and integrated with a molding resin, there is a problem that an injection molded product exhibiting a desired lens effect cannot be obtained. The reason is that when the convex lens layer portion is formed of a soft material, the convex lens portion is deformed by the pressure at the time of injection molding. Further, when the convex lens layer portion is formed of a hard material, the lens sheet loses stretchability, and the lens sheet is broken by the pressure during injection molding.

したがって、本発明は、上記レンズシートを使用することなく所望のレンズ効果を呈する射出成形品を得ることを目的とする。そして、この目的を達成するために、本発明者は以下のような構成の発明をした。   Accordingly, an object of the present invention is to obtain an injection molded product that exhibits a desired lens effect without using the lens sheet. In order to achieve this object, the inventor has invented the following configuration.

すなわち、本発明の第1態様は、透明な射出成形樹脂層の片面が複数の半球形の凸レンズ部からなり、該透明な射出成形樹脂層の凸レンズ部形成面と反対面に装飾パターン層が形成された凸レンズ付き射出成形加飾成形品である。   That is, according to the first aspect of the present invention, one side of the transparent injection-molded resin layer is composed of a plurality of hemispherical convex lens portions, and a decorative pattern layer is formed on the opposite surface of the transparent injection-molded resin layer from the convex lens portion forming surface. It is the injection molded decorative molded product with a convex lens.

また、本発明の第2態様は、前記半球形の凸レンズ部の直径が0.05mm〜3.0mmである凸レンズ付き射出成形絵付け成形品である。   A second aspect of the present invention is an injection-molded decorative article with a convex lens in which the hemispherical convex lens portion has a diameter of 0.05 mm to 3.0 mm.

また、本発明の第3態様は、前記半球形の凸レンズ部の高さが0.003mm〜2.0mmである凸レンズ付き射出成形絵付け成形品である。   Moreover, the 3rd aspect of this invention is an injection-molding painting article with a convex lens whose height of the said hemispherical convex lens part is 0.003 mm-2.0 mm.

また、本発明の第4態様は、装飾パターン層が形成された加飾シートをB金型側に設置し、加飾シートと表面に複数の半球形の凹部が設けられたA金型との間に形成された成形空間部に透明な成形樹脂を充填し、加飾シートと透明な成形樹脂層とを一体化させることにより、透明な成形樹脂層の片面に半球形の凸レンズ部を形成し、その反対面に装飾パターン層を形成することを特徴とする凸レンズ付き射出成形加飾成形品の製造方法である。   Moreover, the 4th aspect of this invention installs the decoration sheet | seat in which the decoration pattern layer was formed in the B metal mold | die side, and is a decoration sheet | seat and the A metal mold | die with which several hemispherical recessed parts were provided in the surface. Filling the molding space formed between them with a transparent molding resin, and integrating the decorative sheet and the transparent molding resin layer, a hemispherical convex lens part is formed on one side of the transparent molding resin layer. And a decorative pattern layer is formed on the opposite surface of the injection molded decorative molded product with a convex lens.

したがって、本発明の射出成形加飾成形品は、レンズシートを使用することなく所望のレンズ効果を呈する効果がある。また、本発明の凸レンズ付き射出成形加飾成形品の製造方法は、前記射出成形加飾成形品を容易に得ることができる効果がある。   Therefore, the injection molded decorative molded product of the present invention has an effect of exhibiting a desired lens effect without using a lens sheet. Moreover, the manufacturing method of the injection molded decorative molded product with a convex lens of the present invention has an effect that the injection molded decorative molded product can be easily obtained.

また、本発明の射出成形加飾成形品は、凸レンズ部が透明な成形樹脂層の一部分であるため、従来のレンズシートに存在する基体シートと凸レンズ層部との界面がなく、界面での剥がれの問題や材質の屈折率が相違することに伴うレンズ効果の減少といった問題が一切発生しない効果もあった。また、A金型に凹部が形成できる範囲であれば、かなり深い絞りの三次元形状部にもレンズ効果を施すことができる効果もあった。   In addition, the injection-molded decorative molded product of the present invention has a convex lens part that is part of a transparent molded resin layer, so there is no interface between the base sheet and the convex lens layer part existing in the conventional lens sheet, and peeling at the interface. There is also an effect that the problem of reduction of the lens effect due to the difference of the refractive index of the material and the material does not occur at all. Further, as long as the concave portion can be formed in the A mold, there is also an effect that the lens effect can be applied to the three-dimensional shape portion having a considerably deep aperture.

以下、図面を参照しながら本発明の凸レンズ付き射出成形加飾成形品について説明する。
凸レンズ付き射出成形加飾成形品は、透明な射出成形樹脂層15の表面に複数の半球形の凸レンズ部2が形成され、該凸レンズ部2の形成面と反対面に装飾パターン3が形成されたものである(図1参照)。
Hereinafter, the injection molded decorative molded product with a convex lens of the present invention will be described with reference to the drawings.
In the injection molded decorative molded product with a convex lens, a plurality of hemispherical convex lens portions 2 are formed on the surface of a transparent injection molded resin layer 15, and a decorative pattern 3 is formed on the surface opposite to the surface on which the convex lens portions 2 are formed. (See FIG. 1).

透明な射出成形樹脂層15は、装飾パターン3を保護する機能を持つものであり、凸レンズ部2と装飾パターン3の適正な選択によって生じるレンズ効果を助長する機能を果たす。   The transparent injection-molded resin layer 15 has a function of protecting the decorative pattern 3, and fulfills a function of promoting a lens effect generated by proper selection of the convex lens portion 2 and the decorative pattern 3.

透明な射出成形樹脂層15の材質は、アクリル、ポリカーボネート、アクリロニトリルブタジエンスチレン、アクリロニトリルスチレン、ポリスチレン、ポリエチレン、ポリプロピレン、ポリアミドなどの射出成形樹脂が好ましい。   The material of the transparent injection molded resin layer 15 is preferably an injection molded resin such as acrylic, polycarbonate, acrylonitrile butadiene styrene, acrylonitrile styrene, polystyrene, polyethylene, polypropylene, polyamide.

透明な射出成形樹脂層15の厚みは0.8mm〜2.5mmとするのが好ましい。射出成形品15の厚みが0.8mm未満であると、射出成形自体が困難で射出成形品の強度も弱い。一方、射出成形品15の厚みが2.5mmを越えると、ヒケなどの成形不良が出やすい。   The thickness of the transparent injection molded resin layer 15 is preferably 0.8 mm to 2.5 mm. When the thickness of the injection molded product 15 is less than 0.8 mm, the injection molding itself is difficult and the strength of the injection molded product is weak. On the other hand, when the thickness of the injection molded product 15 exceeds 2.5 mm, molding defects such as sink marks are likely to occur.

半球形の凸レンズ部2は,射出成形樹脂層15の片面に形成され、その反対面に形成された装飾パターン層3との適正な選択によってレンズ効果を生じさせる機能を果たす。半球形の凸レンズ部2の直径は、0.05mm〜3.0mmが好ましい。0.05mm未満の凸レンズ部2が形成できる射出成形金型を製作するのは技術的に困難であり、3.0mmを超える凸レンズ部2では、レンズ効果が得られず装飾パターン層に深み感をもたせることが困難だからである。   The hemispherical convex lens portion 2 is formed on one side of the injection-molded resin layer 15, and fulfills a function of causing a lens effect by proper selection with the decorative pattern layer 3 formed on the opposite side. The diameter of the hemispherical convex lens portion 2 is preferably 0.05 mm to 3.0 mm. It is technically difficult to produce an injection mold that can form a convex lens portion 2 of less than 0.05 mm. With a convex lens portion 2 of more than 3.0 mm, the lens effect cannot be obtained and the decorative pattern layer has a deep feeling. Because it is difficult to give.

半球形の凸レンズ部2の高さは、0.003mm〜2.0mmが好ましい。0.003mm未満の凸レンズ部2が形成できる射出成形金型を製作するのは技術的に困難であり、2.0mmを超える凸レンズ部2では、レンズ効果が得られず装飾パターン層に深み感をもたせることが困難だからである。   The height of the hemispherical convex lens portion 2 is preferably 0.003 mm to 2.0 mm. It is technically difficult to manufacture an injection mold that can form a convex lens portion 2 of less than 0.003 mm. With a convex lens portion 2 of more than 2.0 mm, the lens effect cannot be obtained and the decorative pattern layer has a sense of depth. Because it is difficult to give.

隣り合う半球形の凸レンズ部2の間隙は、0.005mm〜3.0mmが好ましい。0.005mm未満の間隙では、これに対応するA金型の隣り合う凹部の間隙箇所の強度が不足してA金型が破損する可能があり、3.0mmを超える間隙では、レンズ効果が得られず装飾パターン層に深み感をもたせることが困難だからである。   The gap between adjacent hemispherical convex lens portions 2 is preferably 0.005 mm to 3.0 mm. If the gap is less than 0.005 mm, the strength of the gap between adjacent recesses of the corresponding A mold may be insufficient and the A mold may be damaged. If the gap exceeds 3.0 mm, the lens effect is obtained. This is because it is difficult to give the decorative pattern layer a deep feeling.

半球形の凸レンズ部2を形成する方法は、射出成形金型のA金型20の表面に、凸レンズ部2の鋳型に相当する複数の半球形の凹部22を設け、成形空間部8に透明な射出成形樹脂を充填し、透明な射出成形樹脂層15の片面に凸レンズ部2を形成する方法である。   In the method of forming the hemispherical convex lens portion 2, a plurality of hemispherical concave portions 22 corresponding to the mold of the convex lens portion 2 are provided on the surface of the A mold 20 of the injection mold, and the molding space portion 8 is transparent. This is a method of filling the injection molding resin and forming the convex lens portion 2 on one side of the transparent injection molding resin layer 15.

凹部22を形成する方法としては、射出成形金型のA金型20の表面をエッチングまたは彫刻により形成する方法が挙げられるが、とくに限定されない。あるいは、凹部22が形成された鋼板などを別に用意してA金型20の表面に貼り付ける方法もある。また、凹部22から成形樹脂層15が離型しにくい場合には、A金型20の側に離型フィルムを載置したり、凹部22の表面を離型コートしておいてもよい。   Examples of the method for forming the recess 22 include a method in which the surface of the A mold 20 of the injection mold is formed by etching or engraving, but is not particularly limited. Alternatively, there is a method in which a steel plate or the like in which the concave portion 22 is formed is separately prepared and attached to the surface of the A mold 20. If the molded resin layer 15 is difficult to release from the recess 22, a release film may be placed on the A mold 20 side, or the surface of the recess 22 may be release-coated.

装飾パターン層3は木目柄、石目柄、布目柄、文字、幾何学模様、全面ベタ等の加飾したい絵柄を汎用の印刷手法などにより形成する。なお、装飾パターン層3は並列して複数形成してもよい。   The decorative pattern layer 3 is formed by a general-purpose printing technique or the like on a pattern desired to be decorated such as a wood grain pattern, a stone pattern, a cloth pattern, a character, a geometric pattern, and a solid surface. A plurality of decorative pattern layers 3 may be formed in parallel.

また、装飾パターン層3には、真空蒸着やメッキ等の方法によって、アルミニウム、クロム、銅、ニッケル、インジウム、錫、酸化珪素などの金属膜層を設けてもよい。この場合、金属膜層は全面でもパターン状でもよい。   Further, the decorative pattern layer 3 may be provided with a metal film layer such as aluminum, chromium, copper, nickel, indium, tin, or silicon oxide by a method such as vacuum deposition or plating. In this case, the metal film layer may be entirely or patterned.

装飾パターン層3の材質は、ポリエステル系樹脂、アクリル系樹脂、ビニル系樹脂、硝化綿系樹脂、ウレタン系樹脂、塩化ゴム系樹脂などを挙げることができるが、特に限定されない。   Examples of the material of the decorative pattern layer 3 include polyester resins, acrylic resins, vinyl resins, nitrified cotton resins, urethane resins, and chlorinated rubber resins, but are not particularly limited.

装飾パターン層3の膜厚は0.5μm〜50μmが好ましい。膜厚が0.5μmより薄いと、十分な意匠性が得られないという問題があり、50μmより厚いと、印刷後に乾燥し難いという問題があるためである。ただし、金属膜層の場合は50Å〜1200Åが好ましい。膜厚が50Åより薄いと、十分な意匠性が得られないという問題があり、1200Åより厚いと、クラックが生じやすいという問題があるためである。   The thickness of the decorative pattern layer 3 is preferably 0.5 μm to 50 μm. When the film thickness is less than 0.5 μm, there is a problem that sufficient designability cannot be obtained, and when it is more than 50 μm, there is a problem that it is difficult to dry after printing. However, in the case of a metal film layer, 50 to 1200 mm is preferable. This is because when the film thickness is less than 50 mm, there is a problem that sufficient designability cannot be obtained, and when it is more than 1200 mm, there is a problem that cracks are likely to occur.

装飾パターン層3を形成する方法としては、射出成形金型のB金型21に加飾シート10を載置し、加飾シート10とA金型20によって形成される成形空間部8に成形樹脂9を充填し、固化させることにより射出成形と同時に加飾シート10と成形樹脂層9とを一体化接着させる方法がある(図2参照)。   As a method of forming the decorative pattern layer 3, the decorative sheet 10 is placed on a B mold 21 of an injection mold, and a molding resin is formed in the molding space 8 formed by the decorative sheet 10 and the A mold 20. There is a method in which the decorative sheet 10 and the molded resin layer 9 are integrally bonded simultaneously with injection molding by filling 9 and solidifying (see FIG. 2).

加飾シート10は,基体シート1上に装飾パターン層3が形成されたものであり、透明な射出成形樹脂層15の凸レンズ部2の形成面と反対の面に接着させて、装飾パターン層3を形成する機能を果たす(図3参照)。   The decorative sheet 10 is obtained by forming the decorative pattern layer 3 on the base sheet 1, and is adhered to the surface opposite to the surface on which the convex lens portion 2 is formed of the transparent injection-molded resin layer 15. It fulfills the function of forming (see FIG. 3).

基体シート1の材質は、ポリエステル系樹脂、塩化ビニル系樹脂、アクリル系樹脂、ポリカーボネート系樹脂、ポリプロピレン系樹脂、ポリエチレン系樹脂、ポリウレタン系樹脂、ポリスチレン系樹脂、アセテート系樹脂、ポリアミド系樹脂などが好ましい。   The material of the base sheet 1 is preferably a polyester resin, a vinyl chloride resin, an acrylic resin, a polycarbonate resin, a polypropylene resin, a polyethylene resin, a polyurethane resin, a polystyrene resin, an acetate resin, a polyamide resin, or the like. .

基体シート1の膜厚は5μm〜5mmが好ましい。膜厚が5μmより薄いと、シートに剛性がなく凸部層2が支持できないという問題があり、5mmより厚いと、剛性がありすぎて取り扱いにくいという問題があるためである。   The film thickness of the base sheet 1 is preferably 5 μm to 5 mm. This is because if the film thickness is less than 5 μm, the sheet is not rigid and the convex layer 2 cannot be supported, and if it is thicker than 5 mm, the sheet is too rigid and difficult to handle.

基体シート1の形成方法は、押出成形、カレンダー成形、キャストなどの汎用の製膜方法で構わない。なお、基体シート1は、必要に応じて印刷層を形成する側の表面に予めコロナ放電処理、プラズマ処理、易接着プライマーコート処理等の易接着処理を施しておいてもよい。   The formation method of the base sheet 1 may be a general film forming method such as extrusion molding, calendar molding, or casting. In addition, the base sheet 1 may be subjected to easy adhesion treatment such as corona discharge treatment, plasma treatment, and easy adhesion primer coating on the surface on the side on which the printed layer is formed, if necessary.

また、図4に示すように、基体シート1上に剥離層5を形成して、加飾シート10を透明な射出成形樹脂層15と一体化した後に、基体シート1を剥離除去する転写シートとしてもよい。   As shown in FIG. 4, as a transfer sheet for forming the release layer 5 on the base sheet 1 and integrating the decorative sheet 10 with the transparent injection molding resin layer 15, the base sheet 1 is peeled and removed. Also good.

剥離層5の材質としては、アクリル系樹脂、塩化ビニル系樹脂、ポリウレタン系樹脂、ポリエステル系樹脂、ポリプロピレン系樹脂、ポリエチレン系樹脂、ポリスチレン系樹脂、ポリカーボネート系樹脂、ビニロン系樹脂、アセテート系樹脂、ポリアミド系樹脂を挙げることができ、各層との離型性に応じて、適宜、好ましい材料を選択する。   The release layer 5 is made of acrylic resin, vinyl chloride resin, polyurethane resin, polyester resin, polypropylene resin, polyethylene resin, polystyrene resin, polycarbonate resin, vinylon resin, acetate resin, polyamide. A preferred material is appropriately selected according to the releasability with each layer.

剥離層5の膜厚は0.5μm〜50μmが好ましい。膜厚が0.5μmより薄いと、十分な剥離性が得られないという問題があり、50μmより厚いと、印刷後に乾燥し難いという問題があるためである。   The thickness of the release layer 5 is preferably 0.5 μm to 50 μm. If the film thickness is less than 0.5 μm, there is a problem that sufficient peelability cannot be obtained, and if it is more than 50 μm, there is a problem that it is difficult to dry after printing.

剥離層5の形成方法は、グラビア印刷、オフセット印刷、スクリーン印刷などの方法でも、塗装、ディッピング、リバースコーターなどの方法でもよい。   The method for forming the release layer 5 may be a method such as gravure printing, offset printing, or screen printing, or a method such as painting, dipping, or reverse coater.

また、装飾パターン層3を透明な射出成形樹脂層15と強固に接着させるために、装飾パターン層3上に接着層6を設けていてもよい。   Further, an adhesive layer 6 may be provided on the decorative pattern layer 3 in order to firmly bond the decorative pattern layer 3 to the transparent injection molding resin layer 15.

接着層6の材質としては、アクリル系樹脂、塩化ビニル系樹脂、ポリウレタン系樹脂、ポリエステル系樹脂、ポリプロピレン系樹脂、ポリエチレン系樹脂、ポリスチレン系樹脂、ポリカーボネート系樹脂、ビニロン系樹脂、アセテート系樹脂、ポリアミド系樹脂を挙げることができ、各層との接着性に応じて、適宜、好ましい材料を選択する。   The material of the adhesive layer 6 is acrylic resin, vinyl chloride resin, polyurethane resin, polyester resin, polypropylene resin, polyethylene resin, polystyrene resin, polycarbonate resin, vinylon resin, acetate resin, polyamide. A resin may be used, and a preferable material is appropriately selected according to the adhesiveness with each layer.

接着層6の膜厚は0.5μm〜10μmが好ましい。膜厚が0.5μmより薄いと、十分な密着が得られないという問題があり、10μmより厚いと、印刷後に乾燥し難いという問題があるためである。   The film thickness of the adhesive layer 6 is preferably 0.5 μm to 10 μm. If the film thickness is less than 0.5 μm, there is a problem that sufficient adhesion cannot be obtained, and if it is more than 10 μm, there is a problem that it is difficult to dry after printing.

接着層6の形成方法は、グラビア印刷、オフセット印刷、スクリーン印刷などの方法でも、塗装、ディッピング、リバースコーターなどの方法でもよい。   The method for forming the adhesive layer 6 may be a method such as gravure printing, offset printing, or screen printing, or a method such as painting, dipping, or reverse coater.

また、剥離層5や接着層6と装飾パターン層3とが密着性に乏しい場合には、必要に応じてアンカー層を設けてもよい。   Moreover, when the peeling layer 5 or the adhesive layer 6 and the decorative pattern layer 3 have poor adhesion, an anchor layer may be provided as necessary.

アンカー層の材質は、アクリル系樹脂、塩化ビニル系樹脂、ポリウレタン系樹脂、ポリエステル系樹脂、ポリプロピレン系樹脂、ポリエチレン系樹脂、ポリスチレン系樹脂、ポリカーボネート系樹脂、ビニロン系樹脂、アセテート系樹脂、ポリアミド系樹脂を挙げることができ、各層との密着性に応じて、適宜、好ましい材料を選択する。   The material of the anchor layer is acrylic resin, vinyl chloride resin, polyurethane resin, polyester resin, polypropylene resin, polyethylene resin, polystyrene resin, polycarbonate resin, vinylon resin, acetate resin, polyamide resin A preferable material is appropriately selected according to the adhesion to each layer.

アンカー層の膜厚は0.5μm〜50μmが好ましい。膜厚が0.5μmより薄いと、十分な密着が得られないという問題があり、50μmより厚いと、印刷後に乾燥し難いという問題があるためである。   The thickness of the anchor layer is preferably 0.5 μm to 50 μm. If the film thickness is less than 0.5 μm, there is a problem that sufficient adhesion cannot be obtained, and if it is more than 50 μm, there is a problem that it is difficult to dry after printing.

アンカー層の形成方法は、グラビア印刷、オフセット印刷、スクリーン印刷などの方法でも、塗装、ディッピング、リバースコーターなどの方法でもよい。   The formation method of the anchor layer may be a method such as gravure printing, offset printing, or screen printing, or a method such as painting, dipping, or reverse coater.

射出成形金型のA金型表面に、深さ0.04mm、直径が0.3mmの半円球状の凹部を、隣り合う凹部の間隙0.05mmで上下左右一面に形成した。   A semispherical concave portion having a depth of 0.04 mm and a diameter of 0.3 mm was formed on the surface of the A mold of the injection molding die on the top, bottom, left and right surfaces with a gap of 0.05 mm between adjacent concave portions.

次に、38μmのポリエチレンテレフタレートフィルムを基体シートとして用い、アクリル系樹脂からなる1μmの剥離層を形成し、次いでウレタン系樹脂からなり上下左右一面にNの文字からなる2μmの装飾パターン層を隣り合うパターンの間隙0.08mmで形成し、次いで塩化ビニル系樹脂からなる接着層を形成し、転写シートを得た。   Next, using a 38 μm polyethylene terephthalate film as a base sheet, a 1 μm release layer made of an acrylic resin is formed, and then a 2 μm decorative pattern layer made of a urethane resin and adjacent to a 2 μm decorative pattern layer made up of the letter N Formed with a pattern gap of 0.08 mm, an adhesive layer made of vinyl chloride resin was then formed, and a transfer sheet was obtained.

このようにして得られた転写シートを、射出成形金型のB金型表面にセットし、A金型との間に形成された成形空間部にポリカーボネート成形樹脂を充填し、加飾シートと一体化させた後、基体シートを剥離除去したところ、透明な成形樹脂層の表面の一部に凸レンズ部が形成され、それを通して見るとNの文字がレンズ効果を呈する意匠性に優れた凸レンズ付き射出成形加飾成形品が得られた。   The transfer sheet obtained in this way is set on the surface of the B mold of the injection mold, and the molding space formed between the mold and the A mold is filled with polycarbonate molding resin and integrated with the decorative sheet. After removing the base sheet, a convex lens portion is formed on a part of the surface of the transparent molded resin layer, and when viewed through the letter N, the lens-shaped injection with an excellent design is achieved. A molded decorative molded product was obtained.

射出成形金型のA金型表面に、深さ0.06mm、直径が0.5mmの半円球状の凹部を、隣り合う凹部の間隙0.3mmで上下左右一面に形成した。   A semispherical concave portion having a depth of 0.06 mm and a diameter of 0.5 mm was formed on the surface of the A mold of the injection molding die on the top, bottom, left and right surfaces with a gap of 0.3 mm between adjacent concave portions.

次に、125μmのポリカーボネートフィルムを基体シートとして用い、アクリル系樹脂からなり上下左右一面にNの文字からなる2μmの装飾パターン層を隣り合うパターンの間隙0.2mmで形成し、次いで塩化ビニル系樹脂からなる接着層を順次形成し、加飾シートを得た。   Next, a 125 μm polycarbonate film is used as a base sheet, and a 2 μm decorative pattern layer made of acrylic resin is formed on the top, bottom, left, and right surfaces with a gap of 0.2 mm between adjacent patterns, and then a vinyl chloride resin The adhesive layer which consists of was formed one by one, and the decorating sheet was obtained.

このようにして得られた加飾シートを、射出成形金型のB金型表面にセットし、A金型との間に形成された成形空間部にポリカーボネート成形樹脂を充填し、加飾シートと一体化させたところ、透明な成形樹脂層の表面の一部に凸レンズ部が形成され、それを通して見るとNの文字がレンズ効果を呈する意匠性に優れた凸レンズ付き射出成形加飾成形品が得られた。   The decorative sheet thus obtained is set on the B mold surface of the injection mold, and the molding space formed between the mold and the A mold is filled with polycarbonate molding resin, When integrated, a convex lens part is formed on a part of the surface of the transparent molded resin layer, and when viewed through it, an injection molded decorative molded product with a convex lens with an excellent design property in which the letter N shows a lens effect is obtained. It was.

本発明に係る凸レンズ付き射出成形加飾成形品の一実施例を示す断面図である。It is sectional drawing which shows one Example of the injection molded decorative molded product with a convex lens which concerns on this invention. 本発明に係る凸レンズ付き射出成形加飾成形品の製造方法の一概念を示す断面図である。It is sectional drawing which shows one concept of the manufacturing method of the injection molded decorative molded product with a convex lens concerning this invention. 本発明に係る加飾シートの一実施例を示す断面図である。It is sectional drawing which shows one Example of the decorating sheet which concerns on this invention. 本発明に係る加飾シートの一実施例を示す断面図である。It is sectional drawing which shows one Example of the decorating sheet which concerns on this invention.

符号の説明Explanation of symbols

1 基体シート
2 凸レンズ部
3 装飾パターン層
5 剥離層
6 接着層
8 成形空間部
9 成形樹脂
10 加飾シート
15 射出成形樹脂層
20 A金型
21 B金型
1 Base sheet
2 Convex lens
3 decoration pattern layers
5 Release layer
6 Adhesive layer
8 Molding space
9 Molding resin 10 Decorative sheet 15 Injection molded resin layer 20 A mold 21 B mold

Claims (4)

透明な射出成形樹脂層の片面が複数の半球形の凸レンズ部からなり、該透明な射出成形樹脂層の凸レンズ部形成面と反対面に装飾パターン層が形成された凸レンズ付き射出成形加飾成形品。 An injection-molded decorative molded product with a convex lens in which one side of a transparent injection-molded resin layer is composed of a plurality of hemispherical convex lens portions, and a decorative pattern layer is formed on the surface opposite to the convex lens-portion-forming surface of the transparent injection-molded resin layer . 前記半球形の凸レンズ部の直径が0.05mm〜3.0mmである請求項1記載の凸レンズ付き射出成形加飾成形品。 The injection molded decorative molded product with a convex lens according to claim 1, wherein the hemispherical convex lens portion has a diameter of 0.05 mm to 3.0 mm. 前記半球形の凸レンズ部の高さが0.003mm〜2.0mmである請求項1記載の凸レンズ付き射出成形加飾成形品。 The injection molded decorative molded product with a convex lens according to claim 1, wherein the height of the hemispherical convex lens portion is 0.003 mm to 2.0 mm. 装飾パターン層が形成された加飾シートをB金型側に設置し、加飾シートと表面に複数の半球形の凹部が設けられたA金型との間に形成された成形空間部に透明な成形樹脂を充填し、加飾シートと透明な成形樹脂層とを一体化させることにより、透明な成形樹脂層の片面に半球形の凸レンズ部を形成し、その反対面に装飾パターン層を形成することを特徴とする請求項1〜請求項3のいずれかに記載の凸レンズ付き射出成形加飾成形品の製造方法。 A decorative sheet on which a decorative pattern layer is formed is placed on the B mold side, and is transparent in the molding space formed between the decorative sheet and the A mold having a plurality of hemispherical recesses on the surface. By filling the molding resin and integrating the decorative sheet and the transparent molding resin layer, a hemispherical convex lens part is formed on one side of the transparent molding resin layer, and a decorative pattern layer is formed on the opposite side. The manufacturing method of the injection-molding decoration molded product with a convex lens in any one of Claims 1-3 characterized by the above-mentioned.
JP2003281746A 2003-07-29 2003-07-29 Injection-molded painted molding with convex lens and its production method Withdrawn JP2005047155A (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2010125774A (en) * 2008-11-28 2010-06-10 Sakaiya:Kk Method of manufacturing synthetic resin molding with microlens
WO2011095932A1 (en) * 2010-02-02 2011-08-11 Hasan Hakan Artun A package having three dimensional label and production method thereof
EP2684669A3 (en) * 2012-07-13 2015-07-08 Marek Adamczewski A method for manufacturing of injection moulds for plastic pyramidal packagings with a label area and an injection mould for plastic pyramidal packagings with a label area

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2010125774A (en) * 2008-11-28 2010-06-10 Sakaiya:Kk Method of manufacturing synthetic resin molding with microlens
WO2011095932A1 (en) * 2010-02-02 2011-08-11 Hasan Hakan Artun A package having three dimensional label and production method thereof
EP2684669A3 (en) * 2012-07-13 2015-07-08 Marek Adamczewski A method for manufacturing of injection moulds for plastic pyramidal packagings with a label area and an injection mould for plastic pyramidal packagings with a label area

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