JP2993762B2 - Optical recording medium - Google Patents

Optical recording medium

Info

Publication number
JP2993762B2
JP2993762B2 JP3116024A JP11602491A JP2993762B2 JP 2993762 B2 JP2993762 B2 JP 2993762B2 JP 3116024 A JP3116024 A JP 3116024A JP 11602491 A JP11602491 A JP 11602491A JP 2993762 B2 JP2993762 B2 JP 2993762B2
Authority
JP
Japan
Prior art keywords
resin
layer
substrate
weight
recording
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
JP3116024A
Other languages
Japanese (ja)
Other versions
JPH04344342A (en
Inventor
慎一 村上
知由 笹川
広一 薮内
純夫 広瀬
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.)
Mitsui Chemicals Inc
Original Assignee
Mitsui Chemicals Inc
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 Mitsui Chemicals Inc filed Critical Mitsui Chemicals Inc
Priority to JP3116024A priority Critical patent/JP2993762B2/en
Priority to CA002068618A priority patent/CA2068618A1/en
Priority to SG1996005943A priority patent/SG47988A1/en
Priority to EP92108311A priority patent/EP0514799B1/en
Priority to DE69217410T priority patent/DE69217410T2/en
Priority to TW083100041A priority patent/TW232729B/zh
Priority to KR1019920008602A priority patent/KR960002043B1/en
Publication of JPH04344342A publication Critical patent/JPH04344342A/en
Priority to US08/176,929 priority patent/US5424102A/en
Priority to US08/417,257 priority patent/US5486396A/en
Application granted granted Critical
Publication of JP2993762B2 publication Critical patent/JP2993762B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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  • Optical Record Carriers And Manufacture Thereof (AREA)
  • Thermal Transfer Or Thermal Recording In General (AREA)

Description

【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION

【0001】[0001]

【産業上の利用分野】本発明は光記録媒体、特に大容量
情報が記録可能な色素を記録層とする単板型の高反射率
の光記録媒体に関する。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to an optical recording medium, and more particularly to a single-plate optical recording medium having a recording layer of a dye capable of recording a large amount of information and having a high reflectance.

【0002】[0002]

【従来の技術】色素を記録層とし且つ反射率を大きくす
るため記録層の上に金属の反射層を設け更にこの上に保
護層を設けた単板型の追記可能且つ市販コンパクトディ
スク(以後CDと略す)プレ−ヤ−と互換性を有する光
記録媒体は、例えば Optical Data Storage 1989 Techn
ical Digest Series Vol.1 45(1989)、特開平2-13265
6、特開平2-168446等に提案されている。この光記録媒
体に於いては記録層及び反射層を保護するために保護コ
−ト層が設けられている。この保護コ−ト層は記録層や
反射層が傷つくことを防ぐためハ−ドコ−トと称される
硬い樹脂が通常用いられている。更に保護コ−ト層の機
能としては記録層や反射層が剥離したりすることを防
ぎ、且つ記録層や反射層の酸化劣化等を防止し耐久性の
向上に役立つこともあげられる。そしてこの記録層や反
射層の剥離の防止や耐久性の向上のために保護層を成膜
する際に、外周部の記録膜を除去し、且つかかる保護層
を記録層及び反射層を越えて成膜することは、例えば特
開平2-183442、特開平2-236833に提案されている。しか
しながら、媒体を高温高湿度下の条件に長時間放置した
場合、前記提案の媒体でも外周部の剥離強度が低下し、
テ−プ剥離試験を行った場合外周部から剥離を起こすと
いう問題点があることを本発明者らは見出した。
2. Description of the Related Art A single-plate recordable and commercially available compact disk (hereinafter referred to as a CD) having a recording layer formed of a dye and a metal reflection layer provided on the recording layer in order to increase the reflectivity and further having a protective layer provided thereon. Optical recording media compatible with players are described in, for example, Optical Data Storage 1989 Techn.
ical Digest Series Vol.1 45 (1989), JP-A-2-13265
6, proposed in JP-A-2-168446. In this optical recording medium, a protective coat layer is provided to protect the recording layer and the reflective layer. A hard resin called a hard coat is usually used for the protective coat layer in order to prevent the recording layer and the reflective layer from being damaged. Further, the functions of the protective coating layer include preventing the recording layer and the reflective layer from peeling off, and preventing the recording layer and the reflective layer from being oxidized and degraded, thereby improving the durability. When a protective layer is formed to prevent peeling of the recording layer and the reflective layer and to improve durability, the recording film on the outer peripheral portion is removed, and the protective layer is moved beyond the recording layer and the reflective layer. The formation of a film is proposed in, for example, Japanese Patent Application Laid-Open Nos. 2-183442 and 2-236833. However, if the medium is left for a long time under conditions of high temperature and high humidity, the peel strength of the outer peripheral portion is reduced even in the proposed medium,
The present inventors have found that when a tape peeling test is performed, there is a problem that peeling occurs from an outer peripheral portion.

【0003】[0003]

【発明が解決しようとする課題】本発明者らは高温高湿
度下の条件に長時間放置しても外周部の密着性に優れ、
従ってテ−プ剥離試験を行っても外周部から剥離を起こ
さない単板型の光記録媒体を開発すべく種々検討を行っ
た結果、本発明を完成した。
The inventors of the present invention have excellent adhesion at the outer periphery even when left for a long time under conditions of high temperature and high humidity,
Accordingly, the present invention was completed as a result of various studies to develop a single-plate type optical recording medium which does not cause peeling from the outer peripheral portion even when a tape peeling test is performed.

【0004】[0004]

【課題を解決するための手段】すなわち、本発明は、グ
ル−ブを有する透明な射出成形樹脂基板上に色素を含有
する記録層、反射層、保護層を順次積層してなり、該保
護層が最内周及び最外周の記録層及び反射層を越えて塗
布されている追記可能な単板型光記録媒体に於いて、該
保護層を構成する樹脂が未硬化状態で記録層物質に対す
る溶解性が0.5重量%以上、且つ基板樹脂に対する溶
解性が0.5重量%以上有する活性エネルギ−線硬化樹
脂であることを特徴とする光記録媒体、である。本発明
に於て用いられる透明な射出成形樹脂基板としては、信
号の記録や読み出しを行うための光を透過するものが好
ましい。光の透過率としては85%以上であり、且つ光学
的異方性の小さいものが望ましい。例えばアクリル系樹
脂、ポリカ−ボネ−ト系樹脂、ポリアミド系樹脂、塩化
ビニル系樹脂、ポリオレフィン系樹脂等の熱可塑性樹脂
を用いた基板が好ましい例示として挙げられる。これら
の中で基板の機械的強度、グル−ブや再生専用信号など
の付与のしやすさ、経済性の点からアクリル系樹脂、ポ
リカ−ボネ−ト系樹脂、ポリオレフィン系樹脂の射出成
形樹脂基板が好ましく、特にポリカ−ボネ−ト系樹脂基
板が最も好ましい。
That is, the present invention provides a transparent injection-molded resin substrate having a groove, in which a recording layer containing a dye, a reflective layer, and a protective layer are sequentially laminated. Is applied over the innermost and outermost recording layers and the reflective layer, in a recordable single-plate optical recording medium, the resin constituting the protective layer is dissolved in the recording layer material in an uncured state. An optical recording medium comprising an active energy ray-curable resin having a solubility of 0.5% by weight or more and a solubility in a substrate resin of 0.5% by weight or more. The transparent injection-molded resin substrate used in the present invention is preferably a substrate that transmits light for recording and reading out signals. It is desirable that the light transmittance is 85% or more and the optical anisotropy is small. For example, a substrate using a thermoplastic resin such as an acrylic resin, a polycarbonate resin, a polyamide resin, a vinyl chloride resin, or a polyolefin resin is a preferred example. Among them, injection molded resin substrates of acrylic resin, polycarbonate resin, and polyolefin resin from the viewpoints of mechanical strength of the substrate, ease of providing a groove and a read-only signal, and economy. Is preferred, and a polycarbonate resin substrate is most preferred.

【0005】これらの基板の形状は板状でもフィルム状
でもよく、又円形やカ−ド状でもよい。これらの基板の
表面には記録位置を制御するためのグル−ブを有する。
又一部再生専用の情報等のためのピット等を有していて
もよい。かかるグル−ブやピット等は、射出成形や注型
によって基板を作る際に付与するのが好ましい。本発明
の光記録媒体に於いては、該透明な射出成形樹脂基板の
上に、色素を含有する記録層、反射層、保護層を順次積
層してなるが、色素を含有する記録層に用いられる色素
とは、ポリメチン系色素、フタロシアニン系色素、ナフ
タロシアニン系色素、ナフトキノン系色素、アズレン系
色素、ジチオ−ル金属錯体系色素等の半導体レ−ザ−の
発振波長域に吸収を有する色素が挙げられる。これらの
色素は溶剤に対する溶解性を調整するためや記録特性等
のために各種の置換基で置換されていてもよい。又、こ
れらの色素は1種又は2種以上を混合して用いることも
出来る。これらの色素の中でも色素の耐久性を考慮すれ
ばフタロシアニン系色素、ナフタロシアニン系色素が特
に好ましい。本発明に於いては、前記した色素を含有す
る記録層は通常スピンコ−ト、スプレ−、侵漬等の塗布
法によって成膜することが出来る。
The shape of these substrates may be plate-like or film-like, or may be circular or card-like. The surface of these substrates has a group for controlling the recording position.
Also, a pit or the like for information or the like dedicated to part of reproduction may be provided. It is preferable that such grooves and pits are provided when a substrate is formed by injection molding or casting. In the optical recording medium of the present invention, a recording layer containing a dye, a reflective layer, and a protective layer are sequentially laminated on the transparent injection-molded resin substrate. Dyes that can be obtained include dyes having absorption in the oscillation wavelength range of semiconductor lasers such as polymethine dyes, phthalocyanine dyes, naphthalocyanine dyes, naphthoquinone dyes, azulene dyes, and dithiol metal complex dyes. No. These dyes may be substituted with various substituents for adjusting solubility in a solvent or for recording characteristics. These dyes can be used alone or in combination of two or more. Of these dyes, phthalocyanine dyes and naphthalocyanine dyes are particularly preferable in consideration of the durability of the dye. In the present invention, the recording layer containing the above-mentioned dye can be formed into a film by a coating method such as spin coating, spraying, and dipping.

【0006】上記色素を塗布法により成膜する際は射出
成形基板にダメ−ジを与えない溶剤、即ち基板用樹脂を
実質的に溶解しない溶剤、例えばヘキサン、ヘプタン、
オクタン、デカン、シクロヘキサン等の脂肪族や脂環式
炭化水素系、ジエチルエ−テル、ジブチルエ−テル、ジ
イソプロピルエ−テル等のエ−テル系等の非極性溶剤
や、メチルアルコ−ル、エチルアルコ−ル、イソプロピ
ルアルコ−ル、アリルアルコ−ル、メチルセロソルブ等
のアルコ−ル系の極性溶剤に色素を溶解して塗布すれば
良い。本発明に於いては上記記録膜を成膜した後最外周
の記録膜を溶剤によって除去する。又、この最外周の記
録膜の除去は記録層の上に下記する金属の反射層を成膜
した後除去してもよい。又、記録層を成膜する際は、基
板の内周部に存在するスタンパ−の押え治具による溝の
外側に記録層の未塗布の領域が円周状に出来るように塗
布するのが好ましい。もちろん基板のグル−ブ領域には
記録層が成膜されていなければならない。
When the dye is formed into a film by a coating method, a solvent that does not damage the injection-molded substrate, ie, a solvent that does not substantially dissolve the resin for the substrate, for example, hexane, heptane,
Nonpolar solvents such as aliphatic and alicyclic hydrocarbons such as octane, decane and cyclohexane, ethers such as diethyl ether, dibutyl ether and diisopropyl ether, and methyl alcohol and ethyl alcohol The pigment may be dissolved in an alcoholic polar solvent such as isopropyl alcohol, allyl alcohol, methyl cellosolve or the like and applied. In the present invention, after forming the recording film, the outermost recording film is removed with a solvent. The outermost recording film may be removed after forming a metal reflective layer described below on the recording layer. When the recording layer is formed, it is preferable to apply the recording layer outside the groove formed by the holding jig of the stamper existing on the inner peripheral portion of the substrate so that the uncoated region of the recording layer can be formed in a circular shape. . Of course, a recording layer must be formed in the groove region of the substrate.

【0007】記録層を除去するのに用いられる溶剤の具
体例としては、記録層を成膜する際に用いられる上記し
た様な溶剤や、更に四塩化炭素、クロロホルム、メチル
クロロホルム、1、1、2-トリクロロエタン、トクリレン、
ジクロルメタン等のハロゲン系溶剤;ベンセン、トルエ
ン、キシレン等の炭化水素系溶剤;シクロヘキサノン、
メチルエチルケトン、メチルイソブチルケト等のケトン
系溶剤;ブチルセロソルブ、エチルセロソルブ等のアル
コ−ル系溶剤;酢酸ブチル、酢酸アミル、セロソルブア
セテ−ト等のエステル系溶剤が挙げられる。これらの溶
剤は1種又は2種以上を混合して用いることが出来る。
色素を含有する記録層を成膜する際には前記した色素の
他にニトロセルロ−ス、エチルセルロ−ス、アクリル樹
脂、ポリスチレン樹脂、ウレタン樹脂等の樹脂やレベリ
ング剤、消泡剤等を本発明の効果を損なわない範囲に於
いて併用することもできる。なお、記録層の厚みは、通
常30〜1000nm、好ましくは、50〜500nm程度である。
Specific examples of the solvent used for removing the recording layer include the above-mentioned solvent used for forming the recording layer, and further include carbon tetrachloride, chloroform, methyl chloroform, 1, 1, and 2-trichloroethane, tocrilene,
Halogen solvents such as dichloromethane; hydrocarbon solvents such as benzene, toluene and xylene; cyclohexanone;
Ketone solvents such as methyl ethyl ketone and methyl isobutyl keto; alcohol solvents such as butyl cellosolve and ethyl cellosolve; ester solvents such as butyl acetate, amyl acetate and cellosolve acetate. These solvents can be used alone or in combination of two or more.
When forming a recording layer containing a dye, in addition to the above-described dye, nitrocellulose, ethyl cellulose, acrylic resin, polystyrene resin, a resin such as a urethane resin, a leveling agent, an antifoaming agent, etc. They can be used together as long as the effect is not impaired. The thickness of the recording layer is usually 30 to 1000 nm, preferably about 50 to 500 nm.

【0008】本発明に於ける記録層の上に設けられた反
射層は、通常金属の薄膜が好ましい。本発明に於いては
通常のCDプレ−ヤ−との互換性を考慮すれば媒体のグ
ル−ブ上での反射率を60%以上にするのが好ましい。
好ましい金属としては、アルミ、金、銀、銅、白金、ニ
ッケル等やこれらの金属を一成分とする合金等が挙げら
れる。これらの金属の反射層は蒸着、スパッタ−等の方
法で成膜することが出来る。又、これらの反射層の膜厚
は通常50〜200 nm程度が好ましい。反射層は記録層を越
えて成膜しても良い。
In the present invention, the reflective layer provided on the recording layer is usually preferably a metal thin film. In the present invention, considering the compatibility with a normal CD player, it is preferable that the reflectivity of the medium on the group be 60% or more.
Preferred metals include aluminum, gold, silver, copper, platinum, nickel and the like, and alloys containing these metals as one component. The reflective layer of these metals can be formed by a method such as vapor deposition or sputtering. The thickness of these reflective layers is usually preferably about 50 to 200 nm. The reflective layer may be formed beyond the recording layer.

【0009】又、これらの金属の反射膜を保護するため
に、反射層の上に更に保護層が設けられる。保護膜とし
ては通常樹脂が用いられる。特に生産性などの点から紫
外線硬化樹脂や電子線硬化樹脂などの活性エネルギ−線
硬化樹脂が好ましい。本発明においては、この活性エネ
ルギ−線硬化樹脂は記録層物質を0.5重量%以上、且
つ基板樹脂を0.5重量%以上溶解する組成の樹脂を選
択すれば良い。もしこの活性エネルギ−線硬化樹脂が、
記録層物質を0.5重量%未満しか溶解しなかったり、
又は基板樹脂を0.5重量%未満しか溶解しなければ、
媒体を高温高湿度の条件下に長時間放置した場合保護層
の密着性が低下し、テ−プ剥離試験を行うと最外周部か
ら保護層の剥離が生じ好ましくない。この密着性の低下
の点からは、この活性エネルギ−線硬化樹脂の記録層物
質に対する溶解性が1重量%以上、且つ基板樹脂に対す
る溶解性が1重量%以上のものがより好ましい。本発明
に於ける保護層の膜厚は1〜15μm 程度が好ましい。
又、この保護層は記録層及び反射層を越えて成膜するの
が好ましい。本発明の光記録媒体は基板を通してレ−ザ
−光を照射し信号の記録及び読み出しを行うが、用いる
レ−ザ−光の波長は通常640 〜850 nm に発振波長を有
する半導体レ−ザ−が好ましい。記録する際は、媒体を
回転させながら記録膜上におけるレ−ザ−の出力を5〜1
0 mW程度にし、又読み出す場合はレ−ザ−の出力を記録
時の1/10程度にすればよい。又本発明の光記録媒体は保
護層の上に印刷などを行うこともできる。
Further, a protective layer is further provided on the reflective layer to protect these metallic reflective films. A resin is usually used as the protective film. In particular, an active energy ray-curable resin such as an ultraviolet curable resin or an electron beam curable resin is preferable from the viewpoint of productivity and the like. In the present invention, a resin having a composition capable of dissolving the recording layer material at 0.5% by weight or more and the substrate resin at 0.5% by weight or more may be selected as the active energy ray-curable resin. If this active energy ray curable resin is
Less than 0.5% by weight of the recording layer material,
Or if less than 0.5% by weight dissolves the substrate resin,
When the medium is left for a long time under high temperature and high humidity conditions, the adhesion of the protective layer is reduced, and when a tape peeling test is performed, peeling of the protective layer from the outermost peripheral portion is not preferable. From the viewpoint of the decrease in the adhesion, it is more preferable that the solubility of the active energy ray-curable resin in the recording layer material is 1% by weight or more and the solubility in the substrate resin is 1% by weight or more. The thickness of the protective layer in the present invention is preferably about 1 to 15 μm.
Further, it is preferable that this protective layer be formed over the recording layer and the reflective layer. The optical recording medium of the present invention irradiates a laser beam through a substrate to record and read out signals. The wavelength of the laser beam used is usually a semiconductor laser having an oscillation wavelength of 640 to 850 nm. Is preferred. At the time of recording, the output of the laser on the recording film was changed to 5-1 while rotating the medium.
The output may be about 0 mW, and when reading, the output of the laser may be about 1/10 that of recording. The optical recording medium of the present invention can be printed on the protective layer.

【0010】[0010]

【実施例】以下、実施例により本発明を具体的に説明す
るが、本発明の実施の態様はこれにより限定されるもの
ではない。 実施例1 厚さ 1.2mm、直径 120mmのスパイラル状のグル−ブ(深
さ140nm、幅 0.5μm、ピッチ1.6μm)を有する射出成形
ポリカ−ボネ−ト樹脂基板のグル−ブを有する面の中心
部にPd-テトラ-(t-ブチルシクロヘキシルオキシ)フ
タロシアニンのブロム(平均3.0個/1分子)化色素
の3.5重量%のオクタン溶液を滴下したのち、この樹
脂基板を1500rpmの速度で10秒間回転した。次にオクタ
ンを用いて最外周部の記録膜の除去を行った後、40℃で
10分間乾燥し、樹脂基板上に実質的にフタロシアニン色
素のみからなる記録層を120 nm成膜した。この記録層の
上に反射層として厚さ80nmの金薄膜をスパッタ−によ
り成膜した。但し、この際最外周部約1mm及び基板のス
タンパ−押えの溝の外側約1mmは反射層を成膜しなかっ
た。更にこの反射層の上に下記組成の紫外線硬化樹脂を
スピンコ−トし、紫外線を照射して5μmの保護層を記
録層及び反射層を越えるように成膜し媒体を作成した。
この紫外線硬化樹脂は本実施例の色素を1重量%以上、
且つ基板樹脂を1重量%以上溶解した。 ・エポキシアクリレ−ト 40重量% ・トリメチロ−ルプロパントリアクリレ−ト 30重量% ・ジペント−ルヘキサアクリレ−ト 30重量% ・イルガキュア651 3重量% このようにして製作した媒体の保護層の密着性を評価す
るために、初期及び耐久性試験として80℃、90%RHの条
件下に2000時間放置した後、テ−プ剥離試験を行った
が、初期及び耐久性試験後共に保護層の剥離は全く起こ
らなかった。
EXAMPLES The present invention will be described below in more detail with reference to examples, but embodiments of the present invention are not limited thereto. Example 1 The center of the surface having a groove of an injection-molded polycarbonate resin substrate having a spiral groove having a thickness of 1.2 mm and a diameter of 120 mm (depth 140 nm, width 0.5 μm, pitch 1.6 μm). A 3.5% by weight octane solution of a bromide of Pd-tetra- (t-butylcyclohexyloxy) phthalocyanine (mean: 3.0 / molecule) was added dropwise to this portion, and the resin substrate was cooled at a speed of 1500 rpm. Rotated for 10 seconds. Next, the outermost peripheral portion of the recording film was removed using octane.
After drying for 10 minutes, a recording layer substantially consisting of only a phthalocyanine dye was formed to a thickness of 120 nm on the resin substrate. On this recording layer, a gold thin film having a thickness of 80 nm was formed as a reflective layer by sputtering. However, at this time, the reflective layer was not formed on the outermost portion of about 1 mm and about 1 mm outside the groove of the stamper-hold of the substrate. Further, an ultraviolet curable resin having the following composition was spin-coated on the reflective layer, and irradiated with ultraviolet rays to form a protective layer having a thickness of 5 μm so as to extend beyond the recording layer and the reflective layer, thereby preparing a medium.
This UV-curable resin contains 1% by weight or more of the dye of the present embodiment,
Further, 1% by weight or more of the substrate resin was dissolved. 40% by weight of epoxy acrylate 30% by weight of trimethylolpropane triacrylate 30% by weight of dipentyl hexaacrylate 30% by weight of Irgacure 651 3% by weight Adhesion of the protective layer of the medium thus manufactured In order to evaluate the initial and endurance tests, a tape peeling test was performed after leaving for 2000 hours under the conditions of 80 ° C. and 90% RH. It didn't happen at all.

【0011】実施例2〜4、比較例1〜2 実施例1に於いて、下記の表1に示された紫外線硬化樹
脂を用いて保護層を成膜する以外は実施例1と同じよう
にして媒体を作り評価した。結果は表1に纏めた。尚、
実施例2〜4に於いて保護層に用いた樹脂は何れも前記
色素を1重量%以上、且つポリカ−ボネ−ト樹脂を1重
量%以上溶解した。一方、比較例1に於いて保護層に用
いた樹脂は前記色素を実質溶解しなかった。又、比較例
2で保護層に用いた樹脂はポリカ−ボネ−ト樹脂を実質
溶解しなかった。
Examples 2 to 4 and Comparative Examples 1 and 2 The procedure of Example 1 was repeated except that a protective layer was formed using an ultraviolet-curable resin shown in Table 1 below. And made a medium for evaluation. The results are summarized in Table 1. still,
In each of the resins used for the protective layers in Examples 2 to 4, 1% by weight or more of the dye and 1% by weight or more of the polycarbonate resin were dissolved. On the other hand, the resin used for the protective layer in Comparative Example 1 did not substantially dissolve the dye. The resin used for the protective layer in Comparative Example 2 did not substantially dissolve the polycarbonate resin.

【0012】[0012]

【表1】 [Table 1]

【0013】[0013]

【発明の効果】実施例から明らかなように本発明に於い
ては、熱可塑性樹脂基板に色素を含有する記録層、反射
層、保護層を順次積層してなる単板型追記可能な光記録
媒体に於いて、未硬化状態で記録層物質及び基板樹脂を
それぞれ0.5重量%以上溶解する活性エネルギ−線硬
化樹脂を保護層に用いて、且つ保護層を記録層及び反射
層を越えるように成膜することにより、高温高湿条件下
に媒体を長時間放置しても保護層の密着性に優れ、それ
故にテ−プ剥離試験を行っても全く剥離しないことが判
る。
As is clear from the examples, in the present invention, a single-plate write-once optical recording system in which a recording layer containing a dye, a reflective layer, and a protective layer are sequentially laminated on a thermoplastic resin substrate. In the medium, an active energy ray-curable resin which dissolves the recording layer material and the substrate resin in an uncured state in an amount of 0.5% by weight or more, respectively, is used as the protective layer, and the protective layer is over the recording layer and the reflective layer. It can be seen that, by forming a film on the medium, the protective layer is excellent in adhesion even when the medium is left for a long time under high temperature and high humidity conditions, and therefore, it is not peeled off at all even in a tape peeling test.

───────────────────────────────────────────────────── フロントページの続き (56)参考文献 特開 平2−312022(JP,A) 特開 平2−289935(JP,A) 特開 平2−236833(JP,A) 特開 平2−183442(JP,A) (58)調査した分野(Int.Cl.6,DB名) G11B 7/24 ────────────────────────────────────────────────── ─── Continuation of front page (56) References JP-A-2-312022 (JP, A) JP-A-2-289935 (JP, A) JP-A-2-236833 (JP, A) JP-A-2- 183442 (JP, A) (58) Field surveyed (Int. Cl. 6 , DB name) G11B 7/24

Claims (3)

(57)【特許請求の範囲】(57) [Claims] 【請求項1】 グル−ブを有する透明な射出成形樹脂基
板上に色素を含有する記録層、反射層、保護層を順次積
層してなり、該保護層が最内周及び最外周の記録層及び
反射層を越えて塗布されている追記可能な単板型光記録
媒体に於いて、該保護層を構成する樹脂が未硬化状態で
記録層物質に対する溶解性が0.5重量%以上、且つ基
板樹脂に対する溶解性が0.5重量%以上有する活性エ
ネルギー線硬化樹脂であることを特徴とする光記録媒
体。
1. A recording layer containing a dye, a reflective layer, and a protective layer are sequentially laminated on a transparent injection-molded resin substrate having a group, and the protective layer is the innermost and outermost recording layers. And in the recordable single-plate type optical recording medium applied over the reflective layer, the resin constituting the protective layer has an uncured state and a solubility in the recording layer material of 0.5% by weight or more, and An optical recording medium comprising an active energy ray-curable resin having a solubility in a substrate resin of 0.5% by weight or more.
【請求項2】 保護層樹脂が未硬化状態で記録層物質に
対する溶解性が1重量%以上、且つ基板樹脂に対する溶
解性が1重量%以上有する活性エネルギー線硬化樹脂で
あることを特徴とする請求項1記載の光記録媒体。
2. An active energy ray-curable resin having a solubility in a recording layer material of 1% by weight or more and a solubility in a substrate resin of 1% by weight or more when the protective layer resin is in an uncured state. Item 2. The optical recording medium according to Item 1.
【請求項3】 基板がポリカーボネート樹脂である請求
項2記載の光記録媒体。
3. The optical recording medium according to claim 2, wherein the substrate is a polycarbonate resin.
JP3116024A 1991-05-21 1991-05-21 Optical recording medium Expired - Fee Related JP2993762B2 (en)

Priority Applications (9)

Application Number Priority Date Filing Date Title
JP3116024A JP2993762B2 (en) 1991-05-21 1991-05-21 Optical recording medium
CA002068618A CA2068618A1 (en) 1991-05-21 1992-05-13 Optical recording medium and production thereof
EP92108311A EP0514799B1 (en) 1991-05-21 1992-05-16 Process for producing an optical recording medium
DE69217410T DE69217410T2 (en) 1991-05-21 1992-05-16 Method of manufacturing an optical recording medium
SG1996005943A SG47988A1 (en) 1991-05-21 1992-05-16 Optical recording medium and production thereof
TW083100041A TW232729B (en) 1991-05-21 1992-05-21
KR1019920008602A KR960002043B1 (en) 1991-05-21 1992-05-21 Optical recording medium
US08/176,929 US5424102A (en) 1991-05-21 1994-01-03 Optical recording medium and production thereof
US08/417,257 US5486396A (en) 1991-05-21 1995-04-05 Optical recording medium and production thereof

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP3116024A JP2993762B2 (en) 1991-05-21 1991-05-21 Optical recording medium

Publications (2)

Publication Number Publication Date
JPH04344342A JPH04344342A (en) 1992-11-30
JP2993762B2 true JP2993762B2 (en) 1999-12-27

Family

ID=14676892

Family Applications (1)

Application Number Title Priority Date Filing Date
JP3116024A Expired - Fee Related JP2993762B2 (en) 1991-05-21 1991-05-21 Optical recording medium

Country Status (1)

Country Link
JP (1) JP2993762B2 (en)

Also Published As

Publication number Publication date
JPH04344342A (en) 1992-11-30

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