JP2010099999A - Base material for injection resin transfer, and method of manufacturing resin molded product - Google Patents

Base material for injection resin transfer, and method of manufacturing resin molded product Download PDF

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JP2010099999A
JP2010099999A JP2008275428A JP2008275428A JP2010099999A JP 2010099999 A JP2010099999 A JP 2010099999A JP 2008275428 A JP2008275428 A JP 2008275428A JP 2008275428 A JP2008275428 A JP 2008275428A JP 2010099999 A JP2010099999 A JP 2010099999A
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resin
layer
injection
molded product
base material
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JP5100608B2 (en
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Kazuo Higuchi
和夫 樋口
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Lenovo Singapore Pte Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a base material for injection resin transfer excelling in design without showing rainbow colors by the interference of reflected light, and to provide a method of manufacturing a resin molded product. <P>SOLUTION: The base material 10 for injection resin transfer has at least a release layer 12, a UV cured transparent layer 13, a light interference preventing layer 14, a pattern colored layer 15, and an adhesive layer 16 on a base sheet 11. Even when a print layer is transferred to the injection resin molded product, interface reflected light in the light interference preventing layer becomes extremely weak, so that no interference with the surface reflected light of the UV cured transparent layer thereby occurs, and reflected colors of rainbow colors are not seen. <P>COPYRIGHT: (C)2010,JPO&INPIT

Description

本発明は、射出樹脂成形品の表面に印刷層を形成する射出樹脂転写用基材及び樹脂成形品の製造方法に関する。   The present invention relates to an injection resin transfer base material for forming a printing layer on the surface of an injection resin molded product and a method for producing the resin molded product.

従来より、例えばフィルム上に印刷により印刷面を作り、これを成形金型に装着したうえで射出成形することにより、射出された樹脂の表面に印刷層を熱接着し、その後前記フィルムを除去して印刷層のみを射出樹脂表面に転写する技術はIMR(In-Mold Roll) 等と称されている。
前記フィルム上に印刷する印刷工程には、例えばシルクスクリーン印刷やグラビア印刷等が一般的であり、生産能力の観点からグラビア印刷の方が好ましいとされている(特許文献1)。
Conventionally, for example, a printing surface is formed on a film by printing, and this is mounted on a molding die and then injection-molded to thermally bond the printing layer to the surface of the injected resin, and then remove the film. A technique for transferring only the print layer onto the surface of the injection resin is called IMR (In-Mold Roll) or the like.
For the printing process for printing on the film, for example, silk screen printing or gravure printing is generally used, and gravure printing is preferred from the viewpoint of production capacity (Patent Document 1).

従来技術にかかる射出樹脂成型品の製造用の射出樹脂転写用基材及びそれを用いた製造方法の一例について図5及び6を参照して説明する。
図5は、射出樹脂転写用基材100の概略図であり、先ず基体シート101の表面に剥離層102、UV硬化透明層103、図柄着色層(図柄印刷層ともいう。)104及び接着層105を順次積層して基体シート101に印刷層106を形成する。この印刷層106が形成された基体シート101を射出樹脂転写用基材100とする。
An example of an injection resin transfer base material for manufacturing an injection resin molded product according to the prior art and an example of a manufacturing method using the same will be described with reference to FIGS.
FIG. 5 is a schematic view of an injection resin transfer substrate 100. First, a release layer 102, a UV curable transparent layer 103, a pattern coloring layer (also referred to as a pattern printing layer) 104, and an adhesive layer 105 are formed on the surface of a base sheet 101. Are sequentially laminated to form the printed layer 106 on the base sheet 101. The substrate sheet 101 on which the printed layer 106 is formed is used as an injection resin transfer substrate 100.

ここで、基体シート101に形成される前記印刷層106は以下の構成からなる。
第1層の剥離層102は、射出成形後に、印刷層から分離されて、基体シート101と共に剥離する層である。
第2層のUV硬化透明層103は、剥離層102が剥離された際に、最表面となる層であり、射出成形後にUV照射により硬化される層である。
第3層の図柄着色層104は、着色したインキにより図柄等を形成する意匠面であり、多層になる場合もある層である。
第4層の接着層105は、射出成形品の樹脂と接着する機能を有する層である。
Here, the printing layer 106 formed on the base sheet 101 has the following configuration.
The first release layer 102 is a layer that is separated from the printed layer and is peeled off together with the base sheet 101 after injection molding.
The second UV curable transparent layer 103 is a layer that becomes the outermost surface when the release layer 102 is peeled off, and is a layer that is cured by UV irradiation after injection molding.
The design coloring layer 104 of the third layer is a design surface that forms a design or the like with colored ink, and may be a multilayer.
The fourth adhesive layer 105 is a layer having a function of adhering to the resin of the injection molded product.

この射出樹脂転写用基材100を用い、図6の工程に示すように、固定型121aと可動型121bからなる射出成形用金型121に、射出樹脂転写用基材100を送り込む。
次に、射出成形用金型121を閉じた後、ゲート122から溶融樹脂123を金型のキャビティ内に射出充満させ、被転写射出物を形成するのと同時にその面に射出樹脂転写用基材100を接着させる。
Using this injection resin transfer base material 100, as shown in the process of FIG. 6, the injection resin transfer base material 100 is fed into an injection molding die 121 composed of a fixed mold 121a and a movable mold 121b.
Next, after closing the injection mold 121, the molten resin 123 is injected and filled from the gate 122 into the cavity of the mold to form the transferred injection object, and at the same time, the injection resin transfer base material is formed on the surface. 100 is adhered.

その後、脱型し、基体シート101を剥離層102と共に剥離し、射出樹脂成型品の表面に剥離層102を除いた印刷層106を有する射出樹脂成型品124を得る。
その後、UV硬化工程を経て、UV硬化透明層103を最表面とした樹脂成形品を得る。
Thereafter, the mold is removed, and the base sheet 101 is peeled together with the release layer 102 to obtain an injection resin molded product 124 having the printed layer 106 excluding the release layer 102 on the surface of the injection resin molded product.
Thereafter, a resin molded product having the UV curable transparent layer 103 as the outermost surface is obtained through a UV curing step.

特開2005−178154号公報JP 2005-178154 A

しかしながら、従来技術にかかる印刷層106が形成された樹脂成形品は、図4に示すように、透明なUV硬化透明層103の表面103aからの反射光131と図柄着色層104と表面104aの反射光132とが互いに干渉して、あたかも水面に浮かぶ油膜の色と同じ原理で虹色の反射光133が出るという問題がある。なお、図4中、符号107は射出成形された成形樹脂部を図示する。
特に、図柄着色層104が濃い色の場合に顕著となり、製品の見栄えが低下することとなり、期待した本来の色を出すことができず、外観品位が低下する、という問題がある。
However, as shown in FIG. 4, the resin molded product on which the printing layer 106 according to the prior art is formed reflects the reflected light 131 from the surface 103a of the transparent UV curable transparent layer 103 and the reflection of the pattern colored layer 104 and the surface 104a. There is a problem that the light 132 interferes with each other and rainbow-colored reflected light 133 is emitted on the same principle as the color of the oil film floating on the water surface. In FIG. 4, reference numeral 107 denotes an injection molded resin portion.
In particular, the pattern coloring layer 104 becomes conspicuous when the color is dark, and the appearance of the product is deteriorated. The expected original color cannot be obtained, and the appearance quality is deteriorated.

本発明は、前記問題に鑑み、反射光の干渉により虹色に見えることがなく、意匠性に優れた射出樹脂転写用基材及び樹脂成形品の製造方法を提供することを課題とする。   In view of the above problems, an object of the present invention is to provide a method for producing an injection resin transfer base material and a resin molded product which do not appear iridescent due to interference of reflected light and have excellent design properties.

上述した課題を解決するための本発明の第1の発明は、基体シート上に少なくとも剥離層、UV硬化透明層、光干渉防止層、図柄着色層、接着層を有することを特徴とする射出樹脂転写用基材にある。   The first invention of the present invention for solving the above-mentioned problems is an injection resin characterized by having at least a release layer, a UV-curing transparent layer, a light interference preventing layer, a pattern coloring layer, and an adhesive layer on a base sheet. Located on the transfer substrate.

第2の発明は、第1の発明において、前記光干渉防止層が、UV硬化透明層と同じ屈折率であることを特徴とする射出樹脂転写用基材にある。   A second invention is the base material for injection resin transfer according to the first invention, wherein the light interference preventing layer has the same refractive index as that of the UV curable transparent layer.

第3の発明は、第1又は2の発明において、前記光干渉防止層が、図柄着色層の顔料を分散させてなることを特徴とする射出樹脂転写用基材にある。   A third invention is the base material for injection resin transfer according to the first or second invention, wherein the light interference preventing layer is obtained by dispersing a pigment of a design coloring layer.

第4の発明は、第3の発明において、前記顔料が黒色顔料或いは濃色の顔料であることを特徴とする射出樹脂転写用基材にある。   According to a fourth invention, there is provided an injection resin transfer substrate according to the third invention, wherein the pigment is a black pigment or a dark pigment.

第5の発明は、第3又は4の発明において、前記顔料の分散割合が、0.1〜50重量%であることを特徴とする射出樹脂転写用基材にある。   A fifth invention is the injection resin transfer substrate according to the third or fourth invention, wherein a dispersion ratio of the pigment is 0.1 to 50% by weight.

第6の発明は、第1乃至5のいずれか一つの射出樹脂転写用基材を、射出成形用金型内に配置する基材配置工程と、射出成形用金型を型締する型締工程と、射出成形用金型内に成形樹脂を射出すると共に基材を転写する射出・転写工程と、型開き後、基体シートを剥離層と共に剥離する剥離工程と、樹脂成形品表面に、接着層、図柄着色層、光干渉防止層及びUV硬化透明層が順に積層された樹脂成形品を得る工程と、樹脂成形品に紫外線を照射する紫外線照射硬化工程とを含むことを特徴とする樹脂成形品の製造方法にある。   A sixth aspect of the invention is a base material arranging step for placing any one of the first to fifth injection resin transfer base materials in an injection mold, and a mold clamping step for clamping the injection mold. An injection / transfer process for injecting the molding resin into the injection mold and transferring the substrate; a peeling process for peeling the base sheet together with the release layer after opening the mold; and an adhesive layer on the surface of the resin molded product A resin molded product comprising a step of obtaining a resin molded product in which a pattern colored layer, a light interference preventing layer and a UV curable transparent layer are laminated in order, and an ultraviolet irradiation curing step of irradiating the resin molded product with ultraviolet rays It is in the manufacturing method.

第7の発明は、第6の発明において、成形樹脂がアクリロニトリルブダジエンスチレン(ABS)系樹脂、ABS系樹脂を含むアロイ樹脂、ポリカーボネート(PC)系樹脂、ポリスチレン(PS)系樹脂、ポリアミド(PA)系樹脂、ポリプロピレン(PP)系樹脂、または、PP系樹脂を含むアロイ樹脂であることを特徴とする樹脂成形品の製造方法にある。   A seventh invention is the sixth invention, in which the molding resin is acrylonitrile butadiene distyrene (ABS) resin, alloy resin containing ABS resin, polycarbonate (PC) resin, polystyrene (PS) resin, polyamide (PA) The present invention resides in a method for producing a resin molded product, which is an alloy resin containing a polypropylene resin, a polypropylene (PP) resin, or a PP resin.

第8の発明は、第6又は7の発明の樹脂成形品の製造方法により製造してなることを特徴とする樹脂成形品にある。   The eighth invention is a resin molded product produced by the method for producing a resin molded product of the sixth or seventh invention.

本発明によれば、射出樹脂成型品に印刷層を転写した場合においても、光干渉防止層における界面反射光が非常に弱くなる事から、UV硬化透明層の表面反射光との干渉が生ぜず、虹色の反射色が見えなくなる。
これにより、期待した本来の色を出すことができ、外観品位が向上することとなる。
According to the present invention, even when the printing layer is transferred to the injection resin molded product, the interface reflected light in the light interference prevention layer becomes very weak, so that interference with the surface reflected light of the UV curable transparent layer does not occur. , Iridescent reflection color disappears.
As a result, the expected original color can be obtained, and the appearance quality is improved.

以下、この発明につき図面を参照しつつ詳細に説明する。なお、この実施の形態及び実施例によりこの発明が限定されるものではない。また、下記実施の形態及び実施例における構成要素には、当業者が容易に想定できるもの、あるいは実質的に同一のものが含まれる。   Hereinafter, the present invention will be described in detail with reference to the drawings. The present invention is not limited to the embodiments and examples. In addition, constituent elements in the following embodiments and examples include those that can be easily assumed by those skilled in the art or those that are substantially the same.

[発明の実施の形態]
図1は、本発明に係る射出樹脂転写用基材の構成の一例を示す。
図1に示すように、本発明に係る射出樹脂転写用基材11は、基体シート11上に少なくとも剥離層12、UV硬化透明層13、光干渉防止層14、図柄着色層15及び接着層16を有するものである。
[Embodiment of the Invention]
FIG. 1 shows an example of the configuration of an injection resin transfer substrate according to the present invention.
As shown in FIG. 1, an injection resin transfer substrate 11 according to the present invention includes at least a release layer 12, a UV curable transparent layer 13, a light interference prevention layer 14, a pattern coloring layer 15, and an adhesive layer 16 on a substrate sheet 11. It is what has.

本発明によれば、射出樹脂成型物に印刷層を転写した場合においても、図3に示すように、光干渉防止層14があるので、該光干渉防止層14の界面14aにおける反射光が非常に弱くなる事から、UV硬化透明層13の表面反射光との干渉が生ぜず、虹色の反射色が見えなくなる、或いは著しく減少する。なお、図3中、符号25は射出成形された成形樹脂部を図示する。
すなわち、従来においては、光干渉防止層14が存在しないので、図4に示すように、表面103aからの反射光131と図柄着色層104と表面102aの反射光132とが互いに干渉して、あたかも水面に浮かぶ油膜の色と同じ原理で虹色の反射光133が出ていたが、本発明では、これが解消されることとなる。
According to the present invention, even when a printing layer is transferred to an injection resin molded product, as shown in FIG. 3, since there is a light interference prevention layer 14, the reflected light at the interface 14a of the light interference prevention layer 14 is very low. Accordingly, interference with the surface reflected light of the UV curable transparent layer 13 does not occur, and the rainbow-colored reflected color becomes invisible or significantly reduced. In FIG. 3, reference numeral 25 denotes a molded resin portion that is injection-molded.
That is, in the prior art, since the light interference preventing layer 14 does not exist, as shown in FIG. The iridescent reflected light 133 is emitted on the same principle as the color of the oil film floating on the water surface, but this is eliminated in the present invention.

特に、前記光干渉防止層14が、UV硬化透明層13の屈折率と同一か略同じ屈折率であることが好ましい。ここで、略同じ屈折率とは、UV硬化透明層13の表面反射光との干渉が生ぜず、虹色の反射色が見えなくなる程度に近似する屈折率であるものをいう。   In particular, it is preferable that the optical interference preventing layer 14 has the same or substantially the same refractive index as that of the UV curable transparent layer 13. Here, the substantially same refractive index means a refractive index that is approximate to such an extent that interference with the surface-reflected light of the UV curable transparent layer 13 does not occur and the rainbow-colored reflected color becomes invisible.

また、前記光干渉防止層14に、図柄着色層15を構成する顔料26と同一の顔料を分散させることで、さらに光干渉効果が低減することとなる。   In addition, by dispersing the same pigment as the pigment 26 constituting the design colored layer 15 in the light interference preventing layer 14, the light interference effect is further reduced.

特に、前記添加する顔料としては、図柄着色層15で多用されている黒色顔料或いは濃色の顔料(例えば濃紺色顔料等)とするのが好ましい。   In particular, the pigment to be added is preferably a black pigment or a dark pigment (for example, a dark blue pigment) frequently used in the pattern coloring layer 15.

また、前記顔料の分散割合としては、0.1〜50重量%、より好適には2〜3重量%とするのが好ましい。この範囲外であると虹色反射低減効果が低下するからである。   Further, the dispersion ratio of the pigment is preferably 0.1 to 50% by weight, more preferably 2 to 3% by weight. This is because if it is out of this range, the rainbow color reflection reducing effect is lowered.

ここで、基体シート11に形成される光干渉防止層14以外の印刷層17を構成する層は、従来技術と同様である。
射出樹脂転写用基材10を構成する基体シート11の表面に積層される第1層の剥離層12は、射出成形後に、印刷層17から分離されて、基体シート11と共に剥離する層である。
Here, the layers constituting the printing layer 17 other than the light interference preventing layer 14 formed on the base sheet 11 are the same as those in the conventional technique.
The first release layer 12 laminated on the surface of the base sheet 11 constituting the injection resin transfer substrate 10 is a layer that is separated from the printing layer 17 and peeled together with the base sheet 11 after injection molding.

この剥離層12の表面に形成される第2層のUV硬化透明層13は、剥離層12が剥離された際に、最表面となる層であり、射出成形後にUV照射により硬化される層である。その厚さは、例えば1〜10μm程度としている。   The second UV curable transparent layer 13 formed on the surface of the release layer 12 is a layer that becomes the outermost surface when the release layer 12 is peeled off, and is a layer that is cured by UV irradiation after injection molding. is there. The thickness is, for example, about 1 to 10 μm.

このUV硬化透明層13の表面に形成される第3層は、光干渉防止層14であり、虹色反射を防止する層である。その厚さは、例えば0.5〜10μm程度、より好ましくは0.8〜5μmとしている。   The third layer formed on the surface of the UV curable transparent layer 13 is a light interference preventing layer 14 that prevents iridescent reflection. The thickness is, for example, about 0.5 to 10 μm, more preferably 0.8 to 5 μm.

この光干渉防止層14の表面に形成される第4層は、図柄着色層15であり、着色したインキにより文字又は線図又は図形等の図柄等を形成する意匠面であり、多層になる場合もある層である。   The fourth layer formed on the surface of the light interference prevention layer 14 is a pattern coloring layer 15, which is a design surface that forms a pattern such as a character, a line diagram, or a figure with colored ink, and has a multilayer structure. There is also a layer.

この図柄着色層15の表面に形成される第5層は、接着層16であり、射出成形品の樹脂と接着する機能を有する層である。   The fifth layer formed on the surface of the design coloring layer 15 is an adhesive layer 16 and is a layer having a function of adhering to the resin of the injection molded product.

なお、射出樹脂成形転写用基材10は、基体シート11の表面に第1層の剥離層12を形成し、その後保護層を塗布して一度ストックし、その後第2層以降の積層工程を別の建物において、第2層以降を積層する場合もある。   The injection resin molding transfer substrate 10 is formed by forming a first release layer 12 on the surface of the base sheet 11, then applying a protective layer, stocking it once, and then separating the second and subsequent layers. In some buildings, the second and subsequent layers may be stacked.

ここで、各層を形成するには、例えばグラビアコート法、ロールコート法、カーテンフローコート法、エアーナイフコート法、リバースコート法、キスコート法、ブレードコート法、スムーズコート法、グラビア印刷法、スクリーン印刷法などの方法を用いるとよい。これらの層は、同一の機能を有する層を2層以上重ねて形成してもよい。塗布膜厚は1層当たり乾燥時0.5μm〜5μm程度である。   Here, in order to form each layer, for example, gravure coating method, roll coating method, curtain flow coating method, air knife coating method, reverse coating method, kiss coating method, blade coating method, smooth coating method, gravure printing method, screen printing A method such as a method may be used. These layers may be formed by stacking two or more layers having the same function. The coating thickness is about 0.5 μm to 5 μm when dried per layer.

なお、UV硬化透明層13と剥離層12との間に、将来最外表面となり、印刷層17を保護する透明な保護層を塗布するようにしてもよい。
光干渉防止層14とUV硬化透明層13の間に、中間工程でUV硬化透明層13を保護する透明な保護層を塗布するようにしてもよい。
In addition, you may make it apply | coat the transparent protective layer which becomes the outermost surface in the future and protects the printing layer 17 between the UV hardening transparent layer 13 and the peeling layer 12. FIG.
A transparent protective layer for protecting the UV curable transparent layer 13 may be applied between the light interference preventing layer 14 and the UV curable transparent layer 13 in an intermediate step.

この射出樹脂転写用基材10を用い、樹脂成形品を得る工程について図2を参照して説明する。
図2に示すように、固定型21aと可動型21bからなる射出成形用金型21に、射出樹脂転写用基材10を送り込む(基材配置工程)。
次に、所定位置に射出樹脂転写用基材10を設置して、射出成形用金型21を閉じる(型締工程)。
その後、ゲート22から溶融樹脂23を金型のキャビティ内に射出充満させ、被転写射出物を形成するのと同時に樹脂面に射出樹脂転写用基材10を接着させる(射出・転写工程)。
A process of obtaining a resin molded product using the injection resin transfer substrate 10 will be described with reference to FIG.
As shown in FIG. 2, the injection resin transfer base material 10 is fed into an injection mold 21 composed of a fixed mold 21a and a movable mold 21b (base material arranging step).
Next, the injection resin transfer substrate 10 is installed at a predetermined position, and the injection mold 21 is closed (clamping process).
Thereafter, the molten resin 23 is injected and filled from the gate 22 into the cavity of the mold, and the injection resin transfer base material 10 is adhered to the resin surface simultaneously with the formation of the transferred injection object (injection / transfer process).

その後、脱型し、基体シート11を剥離層12と共に剥離し、射出樹脂成型品の表面に剥離層12を除いた印刷層17を有する射出樹脂成形品24を得る(剥離工程)。
その後、紫外線を照射し、UV硬化透明層13を硬化させ、それを最表面とした樹脂成形品を得る(紫外線照射硬化工程)。
Thereafter, the mold is removed, and the base sheet 11 is peeled off together with the release layer 12 to obtain an injection resin molded product 24 having the printed layer 17 excluding the release layer 12 on the surface of the injection resin molded product (peeling step).
Thereafter, ultraviolet rays are irradiated to cure the UV curable transparent layer 13 to obtain a resin molded product having the outermost surface as a surface (ultraviolet irradiation curing step).

ここで、射出成形する成形樹脂としては、公知の射出成形樹脂であれば、特に限定されないが、例えばアクリロニトリルブダジエンスチレン(ABS)系樹脂、ABS系樹脂を含むアロイ樹脂、ポリカーボネート(PC)系樹脂、ポリスチレン(PS)系樹脂、ポリアミド(PA)系樹脂、ポリプロピレン(PP)系樹脂、または、PP系樹脂を含むアロイ樹脂等を挙げることができる。   Here, the molding resin to be injection-molded is not particularly limited as long as it is a known injection molding resin. For example, acrylonitrile butadiene styrene (ABS) resin, alloy resin containing ABS resin, polycarbonate (PC) resin, Examples thereof include polystyrene (PS) resins, polyamide (PA) resins, polypropylene (PP) resins, and alloy resins containing PP resins.

本発明の射出樹脂成型品の用途としては、ノートパソコン用リアカバー、パームレスト、キーボードベゼル、ベースカバー等のプラスチック成形部品等を挙げることができる。   Applications of the injection resin molded product of the present invention include plastic molded parts such as a notebook computer rear cover, palm rest, keyboard bezel, and base cover.

このようなリアカバー等を有するノートブック型パーソナルコンピュータ200(以下、単に「ノートPC200」と称する)を示した斜視図を図7に示す。
図7に示すように、ここで例示するノートPC200は、本体筐体201及び蓋体202を備えている。そして、蓋体202は、液晶ディスプレイ(LCD)や有機ELディスプレイ等の表示装置203を収容した箱体であり、本体筐体201の奥側縁部にヒンジ部204によってその基端部205が回動可能に支持されている。この蓋体202は、本体筐体201に対して開いた場合に本体筐体201の手前側に向けて表示装置203を露出させるとともに、本体筐体201の上面を開放した状態となる。一方、ヒンジ部204を介して回動させれば、本体筐体201の上面及び表示装置203を同時に覆うカバーとして機能する。
FIG. 7 is a perspective view showing a notebook personal computer 200 (hereinafter simply referred to as “notebook PC 200”) having such a rear cover.
As illustrated in FIG. 7, the notebook PC 200 illustrated here includes a main body housing 201 and a lid body 202. The lid 202 is a box that accommodates a display device 203 such as a liquid crystal display (LCD) or an organic EL display. It is supported movably. When the lid 202 is opened with respect to the main body housing 201, the display device 203 is exposed toward the front side of the main body housing 201 and the upper surface of the main body housing 201 is opened. On the other hand, if it is rotated via the hinge portion 204, it functions as a cover that simultaneously covers the upper surface of the main body housing 201 and the display device 203.

また、コンピュータ等のOA機器以外としては、例えば携帯電話等のモバイル機器、自動車部品等の他、化粧品など個人向け消費財の外装部材に広く応用可能である。   In addition to OA devices such as computers, the present invention can be widely applied to exterior members for consumer goods such as cosmetics, as well as mobile devices such as mobile phones and automobile parts.

本発明の効果を示す実施例により、本発明をさらに詳細に説明するが、本発明はこれらに限定されるものではない。
<実施例>
ポリエチレンテレフタレート(PET)フィルムを基体シート11とし、その上にメラミン樹脂を主成分とするインクをグラビアコーターにより塗布し、膜厚約0.8μmの剥離層12を形成した。
この剥離層12の上に、紫外線硬化型のアクリル樹脂を主成分とする透明なインクをグラビアコーターにより塗布し、膜厚約1.2μmのUV硬化透明層13を形成した。
このUV硬化透明層13の上に、アクリル樹脂を主成分とし、3.0重量%のカーボンブラック顔料を含有する膜厚約1.6μmの光干渉防止層14をグラビア印刷機により形成した。
この光干渉防止層14の上に、ウレタンポリエステル樹脂を主成分とする黒色インキでグラビア印刷機により、膜厚約1.0μmの図柄着色層15を形成した。
この図柄着色層15の上に、塩化ビニル樹脂を主成分とする膜厚約0.8μmの接着層16をグラビア印刷機により形成し、実施例に係る射出樹脂転写用基材10を得た。
The present invention will be described in more detail with reference to examples showing the effects of the present invention, but the present invention is not limited thereto.
<Example>
A polyethylene terephthalate (PET) film was used as a base sheet 11, and an ink containing melamine resin as a main component was applied thereon by a gravure coater to form a release layer 12 having a thickness of about 0.8 μm.
On the release layer 12, a transparent ink mainly composed of an ultraviolet curable acrylic resin was applied by a gravure coater to form a UV curable transparent layer 13 having a film thickness of about 1.2 μm.
On this UV curable transparent layer 13, a light interference prevention layer 14 having a film thickness of about 1.6 μm and containing 3.0% by weight of a carbon black pigment was formed by a gravure printing machine.
On this light interference prevention layer 14, the pattern coloring layer 15 with a film thickness of about 1.0 micrometer was formed with the black ink which has a urethane polyester resin as a main component with the gravure printing machine.
An adhesive layer 16 having a film thickness of about 0.8 μm mainly composed of vinyl chloride resin was formed on the colored pattern layer 15 by a gravure printing machine to obtain an injection resin transfer base material 10 according to the example.

この射出樹脂転写用基材10をノートパソコン用リアカバー金型のキャビティ面にセットし、成形用樹脂「Sabic社製の「7230P」(商品名)」を、樹脂温度270℃、成形圧力110MPaで成形した。
得られた射出樹脂成型品の表面から基体シート11を剥がすと、剥離層12は基体シート11側に付着し、UV硬化透明層13以下の層が成形品表面に残った。
上記のものに800mJのエネルギーを持つ紫外線を照射してUV硬化透明層13を硬化した。
このようにしてできた成形品の表面を目視で観察したところ虹色の干渉色は見られなかった。
This injection resin transfer base material 10 is set on the cavity surface of a notebook computer rear cover mold, and a molding resin “7230P” (trade name) manufactured by Sabic is molded at a resin temperature of 270 ° C. and a molding pressure of 110 MPa. did.
When the base sheet 11 was peeled off from the surface of the obtained injection resin molded product, the release layer 12 adhered to the base sheet 11 side, and the layers below the UV-curing transparent layer 13 remained on the surface of the molded product.
The UV curable transparent layer 13 was cured by irradiating the above with ultraviolet rays having an energy of 800 mJ.
When the surface of the molded product thus formed was visually observed, no iridescent interference color was observed.

<比較例>
試験例1において、光干渉防止層を積層しない以外は同様に操作して、比較例の射出樹脂転写用基材とした。
得られた比較例の成形品の表面を目視で観察したところはっきりした虹色の干渉色が見られた。
<Comparative example>
In Test Example 1, the same operation was performed except that the optical interference prevention layer was not laminated, so that an injection resin transfer substrate of a comparative example was obtained.
When the surface of the obtained molded product of the comparative example was visually observed, a clear iridescent interference color was observed.

以上のように、本発明に係る射出樹脂転写用基材は、射出樹脂成形品に形成される印刷層の表面において光の干渉が大幅に低減されるので、虹色反射光がなくなり、外観品位が向上する樹脂成型品を提供することができる。   As described above, the injection resin transfer substrate according to the present invention significantly reduces the interference of light on the surface of the printed layer formed on the injection resin molded product, so that there is no iridescent reflected light and the appearance quality is reduced. The resin molded product which improves can be provided.

本実施例に係る射出樹脂転写用基材の概略図である。It is the schematic of the base material for injection resin transfer which concerns on a present Example. 本実施例に係る射出樹脂転写用基材を用いた射出樹脂成形工程図である。It is an injection resin molding process figure using the base material for injection resin transfer concerning this example. 樹脂成型品の光の干渉が無い状態の模式図である。It is a schematic diagram of the state without the interference of the light of a resin molded product. 樹脂成型品の光の干渉が有る状態の模式図である。It is a schematic diagram of the state which has light interference of a resin molded product. 従来技術に係る射出樹脂転写用基材の概略図である。It is the schematic of the base material for injection resin transfer which concerns on a prior art. 従来技術に係る射出樹脂転写用基材を用いた射出樹脂成形工程図である。It is an injection resin molding process figure using the base material for injection resin transfer concerning a prior art. 本発明の実施の形態であるノートPCを示した概略斜視図である。1 is a schematic perspective view showing a notebook PC according to an embodiment of the present invention.

符号の説明Explanation of symbols

10 射出樹脂転写用基材
11 基体シート
12 剥離層
13 UV硬化透明層
14 光干渉防止層
15 図柄着色層
16 接着層
DESCRIPTION OF SYMBOLS 10 Base material for injection resin transfer 11 Base sheet 12 Peeling layer 13 UV hardening transparent layer 14 Light interference prevention layer 15 Pattern coloring layer 16 Adhesive layer

Claims (8)

基体シート上に少なくとも剥離層、UV硬化透明層、光干渉防止層、図柄着色層、接着層を有することを特徴とする射出樹脂転写用基材。   An injection resin transfer base material comprising at least a release layer, a UV curable transparent layer, a light interference prevention layer, a pattern coloring layer, and an adhesive layer on a base sheet. 請求項1において、
前記光干渉防止層が、UV硬化透明層と同じ屈折率であることを特徴とする射出樹脂転写用基材。
In claim 1,
An injection resin transfer base material, wherein the light interference prevention layer has the same refractive index as that of a UV curable transparent layer.
請求項1又は2において、
前記光干渉防止層が、図柄着色層の顔料を分散させてなることを特徴とする射出樹脂転写用基材。
In claim 1 or 2,
An injection resin transfer base material, wherein the light interference preventing layer is formed by dispersing a pigment of a pattern coloring layer.
請求項3において、
前記顔料が黒色顔料或いは濃色の顔料であることを特徴とする射出樹脂転写用基材。
In claim 3,
An injection resin transfer substrate, wherein the pigment is a black pigment or a dark pigment.
請求項3又は4において、
前記顔料の分散割合が、0.1〜50重量%であることを特徴とする射出樹脂転写用基材。
In claim 3 or 4,
An injection resin transfer base material, wherein a dispersion ratio of the pigment is 0.1 to 50% by weight.
請求項1乃至5のいずれか一つの射出樹脂転写用基材を、射出成形用金型内に配置する基材配置工程と、
射出成形用金型を型締する型締工程と、
射出成形用金型内に成形樹脂を射出すると共に基材を転写する射出・転写工程と、
型開き後、基体シートを剥離層と共に剥離する剥離工程と、
樹脂成形品表面に、接着層、図柄着色層、光干渉防止層及びUV硬化透明層が順に積層された樹脂成形品を得る工程と、
樹脂成形品に紫外線を照射する紫外線照射硬化工程とを含むことを特徴とする樹脂成形品の製造方法。
A base material placement step of placing the injection resin transfer base material according to any one of claims 1 to 5 in an injection mold;
A mold clamping process for clamping the injection mold;
An injection / transfer process for injecting a molding resin into an injection mold and transferring the substrate,
After the mold opening, a peeling step of peeling the base sheet together with the peeling layer;
A step of obtaining a resin molded product in which an adhesive layer, a pattern coloring layer, a light interference prevention layer, and a UV curable transparent layer are sequentially laminated on the surface of the resin molded product;
A method for producing a resin molded product, comprising: an ultraviolet irradiation curing step of irradiating the resin molded product with ultraviolet rays.
請求項6において、
成形樹脂がアクリロニトリルブダジエンスチレン(ABS)系樹脂、ABS系樹脂を含むアロイ樹脂、ポリカーボネート(PC)系樹脂、ポリスチレン(PS)系樹脂、ポリアミド(PA)系樹脂、ポリプロピレン(PP)系樹脂、または、PP系樹脂を含むアロイ樹脂であることを特徴とする樹脂成形品の製造方法。
In claim 6,
Molding resin is acrylonitrile butadiene styrene (ABS) resin, alloy resin containing ABS resin, polycarbonate (PC) resin, polystyrene (PS) resin, polyamide (PA) resin, polypropylene (PP) resin, or A method for producing a resin molded product, which is an alloy resin containing a PP resin.
請求項6又は7の樹脂成形品の製造方法により製造してなることを特徴とする樹脂成形品。   A resin molded product produced by the method for producing a resin molded product according to claim 6 or 7.
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