JPH05307734A - Magnetic recording medium - Google Patents

Magnetic recording medium

Info

Publication number
JPH05307734A
JPH05307734A JP13563392A JP13563392A JPH05307734A JP H05307734 A JPH05307734 A JP H05307734A JP 13563392 A JP13563392 A JP 13563392A JP 13563392 A JP13563392 A JP 13563392A JP H05307734 A JPH05307734 A JP H05307734A
Authority
JP
Japan
Prior art keywords
polyester
polyurethane resin
glass transition
weight
parts
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.)
Pending
Application number
JP13563392A
Other languages
Japanese (ja)
Inventor
Toshinobu Ouchi
敏信 大内
Masahiro Sawaguchi
雅弘 澤口
Takeshi Koizumi
剛 小泉
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.)
Sony Corp
Original Assignee
Sony Corp
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 Sony Corp filed Critical Sony Corp
Priority to JP13563392A priority Critical patent/JPH05307734A/en
Publication of JPH05307734A publication Critical patent/JPH05307734A/en
Pending legal-status Critical Current

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  • Paints Or Removers (AREA)
  • Magnetic Record Carriers (AREA)

Abstract

PURPOSE:To prevent the generation of harmful substances at the time of incineration or disposal by using a binder contg. only two or more kinds of polyester- polyurethane resins different from each other in glass transition temp. in a magnetic layer. CONSTITUTION:This magnetic recording medium contains a binder contg. only two or more kinds of polyester-polyurethane resins different from each other in glass transition temp. in the magnetic layer. The glass transition temp. of the binder is 10-60 deg.C as a whole. This magnetic recording medium has remarkably enhanced magnetic characteristics and electromagnetic conversion characteristics. Since vinyl chloride-contg. resin is not used, harmful substances are not generated at the time of incineration or disposal and environmental pollution is prevented.

Description

【発明の詳細な説明】Detailed Description of the Invention

【0001】[0001]

【産業上の利用分野】本発明は磁気特性及び電磁変換特
性を向上させた磁気記録媒体に関するものである。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a magnetic recording medium having improved magnetic characteristics and electromagnetic conversion characteristics.

【0002】[0002]

【従来の技術】一般に磁気テープ等の磁気記録媒体は、
非磁性体フイルム上に磁性体を含有した磁性塗料を塗布
して製造している。そして、従来のこの磁性塗料の磁性
体並びに磁性層に必要とする材料の結合剤としては、塩
化ビニルと酢酸ビニルとの共重合体樹脂又はこれにポリ
ビニルアルコールを共重合した樹脂を主体とし、これに
ポリウレタン樹脂、ポリエステル樹脂、ゴム系樹脂、フ
ェノキシ樹脂等を加えたものが使用されている。特に、
塩化ビニルと酢酸ビニル共重合体は磁性材料の分散性が
すぐれ、水酸基を有するためイソシアネート基を有する
硬化剤と架橋性が優れているので、磁気記録媒体の結合
剤の成分としては必須のものであった。
2. Description of the Related Art Generally, a magnetic recording medium such as a magnetic tape is
It is manufactured by applying a magnetic coating material containing a magnetic material on a non-magnetic material film. And, as the binder of the material required for the magnetic body and the magnetic layer of the conventional magnetic paint, a copolymer resin of vinyl chloride and vinyl acetate or a resin obtained by copolymerizing polyvinyl alcohol therewith is mainly used. Polyurethane resin, polyester resin, rubber resin, phenoxy resin, etc. are used. In particular,
Vinyl chloride and vinyl acetate copolymers have excellent dispersibility in magnetic materials, and because they have hydroxyl groups and are excellent in cross-linking properties with curing agents having isocyanate groups, they are essential as binder components for magnetic recording media. there were.

【0003】[0003]

【発明が解決しようとする課題】上記従来の磁気記録媒
体の磁性層形成塗料の結合剤として用いられている塩化
ビニルと酢酸ビニル共重合体は磁性材料の分散性が優れ
ているといっても限度があり、更に、磁気記録媒体の電
磁変換特性を向上させるには、それ以上の分散性が要望
されている。更に、塩化ビニルは塩素イオンを含有し、
燃焼した時にオゾンと反応して、ClO・O2 となり、
環境破壊の原因ともなり地球環境の汚染の防止を世界的
問題としている現在、好ましくない材料である。
The vinyl chloride / vinyl acetate copolymer used as the binder of the magnetic layer-forming coating material of the above-mentioned conventional magnetic recording medium is said to have excellent dispersibility of the magnetic material. There is a limit, and further dispersibility is required to improve the electromagnetic conversion characteristics of the magnetic recording medium. Furthermore, vinyl chloride contains chloride ions,
When it burns, it reacts with ozone to become ClO · O 2 ,
It is an unfavorable material nowadays, which is a global problem to prevent the pollution of the global environment as it causes environmental destruction.

【0004】本発明は、このような問題点を解決し、分
散性が極めて優れ、更に、環境汚染のおそれのない結合
剤を用いた磁気記録媒体を提供することを目的とする。
SUMMARY OF THE INVENTION It is an object of the present invention to solve the above problems and to provide a magnetic recording medium using a binder having excellent dispersibility and having no fear of environmental pollution.

【0005】[0005]

【課題を解決するための手段】本発明者は前記の課題を
解決するために鋭意研究の結果、非磁性支持体上の磁性
層の結合剤としてガラス転移温度の異なる2種類以上の
ポリエステル・ポリウレタン樹脂のみを含有し、この結
合剤全体のガラス転移温度が10°C〜60°Cである
ものを用いることにより本課題を解決した。
As a result of earnest research to solve the above-mentioned problems, the present inventor has found that two or more kinds of polyester polyurethanes having different glass transition temperatures are used as a binder for a magnetic layer on a non-magnetic support. This problem was solved by using a resin containing only a resin and having a glass transition temperature of 10 ° C. to 60 ° C. as a whole.

【0006】本発明は非磁性支持体上に強磁性粉末と結
合剤を主体とする磁性層が形成された磁気記録媒体にお
いて、磁性層の結合剤がガラス転移温度の異なる2種類
以上のポリエステル・ポリウレタン樹脂のみを含有し、
かつ結合剤全体としてガラス転移温度が10°C〜60
°Cであることにより、磁気特性並びに電磁変換特性の
向上と、焼却その他によって有毒物質を発生しない磁気
記録媒体を提供するものである。
The present invention relates to a magnetic recording medium in which a magnetic layer mainly composed of a ferromagnetic powder and a binder is formed on a non-magnetic support, and the binder of the magnetic layer comprises two or more kinds of polyesters having different glass transition temperatures. Contains only polyurethane resin,
And the glass transition temperature of the binder as a whole is 10 ° C to 60
When the temperature is ° C, the magnetic characteristics and the electromagnetic conversion characteristics are improved, and a magnetic recording medium that does not generate a toxic substance by incineration or the like is provided.

【0007】本発明の磁気記録媒体は磁気テープ等の非
磁性支持体、例えば、ポリエステルフイルム等の表面に
強磁性粉末と結合剤を主体とする磁性層を形成させた一
般の磁気記録媒体と同様の構造を有するものである。
The magnetic recording medium of the present invention is the same as a general magnetic recording medium having a magnetic layer mainly composed of a ferromagnetic powder and a binder formed on the surface of a non-magnetic support such as a magnetic tape, for example, a polyester film. It has a structure of.

【0008】本発明の特徴は磁性層を形成する結合剤の
組成である。その要件は、ガラス転移温度の異なる2種
類以上のポリエステル・ポリウレタン樹脂のみよりな
り、かつ、その結合剤全体のガラス転移温度が10°C
〜60°Cであることである。この結合剤に用いるポリ
エステル・ポリウレタン樹脂は市販の同樹脂が適宜使用
できる。そして、そのガラス転移温度を勘案して、その
樹脂の配合によりガラス転移温度を10°C〜60°C
になるようにする。
A feature of the present invention is the composition of the binder forming the magnetic layer. The requirements are only two or more kinds of polyester / polyurethane resins having different glass transition temperatures, and the entire glass transition temperature of the binder is 10 ° C.
It is -60 ° C. As the polyester / polyurethane resin used for this binder, the same commercially available resin can be appropriately used. Then, considering the glass transition temperature, the glass transition temperature is adjusted to 10 ° C to 60 ° C by blending the resin.
Try to be.

【0009】例えば、ガラス転移温度が69°C〜76
°Cのポリエステル・ポリウレタン樹脂20〜80重量
部とガラス転移温度が20°C以下のポリエステル・ポ
リウレタン樹脂を20〜80重量部よりなる。
For example, the glass transition temperature is 69 ° C to 76 ° C.
20 to 80 parts by weight of polyester / polyurethane resin at 20 ° C. and 20 to 80 parts by weight of polyester / polyurethane resin having a glass transition temperature of 20 ° C. or less.

【0010】なお、ガラス転移温度が69°C〜76°
Cのポリエステル・ポリウレタン樹脂は40〜80重量
部が好ましい。40重量部未満であると、磁気記録媒体
が粘着し易くなり、ワウ・フラッター(W&F)等の問
題が発生する恐れがある。また、80重量部を超えると
記録媒体全体が硬くなってくるため、接着強度が十分に
確保できなくなる恐れがあるが、ガラス転移温度の高い
ポリエステル・ポリウレタン樹脂をある程度多くした方
が混練効率は上昇する。
The glass transition temperature is 69 ° C to 76 °.
The polyester / polyurethane resin of C is preferably 40 to 80 parts by weight. If the amount is less than 40 parts by weight, the magnetic recording medium is likely to stick to each other, which may cause problems such as wow and flutter (W & F). Further, if the amount exceeds 80 parts by weight, the entire recording medium becomes hard, so that the adhesive strength may not be sufficiently secured. However, the kneading efficiency is improved by increasing the amount of polyester / polyurethane resin having a high glass transition temperature to some extent. To do.

【0011】またガラス転移温度が20°C以下のポリ
エステル・ポリウレタン樹脂は、20〜60重量部が好
ましい。20重量部未満では、スーパー・カレンダーで
のつぶれ率が低下し十分な磁束密度(Br)の確保がで
きない。配合量を多くすれば、スーパー・カレンダーで
のつぶれ率は向上し、高いBrとなるが60重量部を超
えると、記録媒体が粘着し易くなり、W&F等の問題が
発生する恐れがある。
The polyester / polyurethane resin having a glass transition temperature of 20 ° C. or lower is preferably 20 to 60 parts by weight. If the amount is less than 20 parts by weight, the crushing rate on a super calender is reduced and a sufficient magnetic flux density (Br) cannot be secured. If the blending amount is increased, the crushing rate in the super calendar is improved and the Br becomes high, but if it exceeds 60 parts by weight, the recording medium is apt to stick, and problems such as W & F may occur.

【0012】ガラス転移温度69°C〜76°Cのポリ
エステル・ポリウレタン樹脂としては、ポリエステル・
ポリウレタン樹脂A〔ポリエステル・ポリウレタン樹
脂,ガラス転移温度69°C〕やポリエステル・ポリウ
レタン樹脂D〔ポリエステル・ポリウレタン樹脂,ガラ
ス転移温度76°C〕等がある。ガラス転移温度が20
°C以下のポリエステル・ポリウレタン樹脂としては、
ポリエステル・ポリウレタン樹脂B〔ポリエステル・ポ
リウレタン樹脂,ガラス転移温度−27°C〕やポリエ
ステル・ポリウレタンC〔ポリエステル・ポリウレタン
樹脂,ガラス転移温度−25°C〕等がある。
As the polyester / polyurethane resin having a glass transition temperature of 69 ° C. to 76 ° C., polyester.
Polyurethane resin A [polyester / polyurethane resin, glass transition temperature 69 ° C] and polyester / polyurethane resin D [polyester / polyurethane resin, glass transition temperature 76 ° C] are available. Glass transition temperature is 20
For polyester / polyurethane resin below ° C,
Polyester / polyurethane resin B [polyester / polyurethane resin, glass transition temperature −27 ° C.] and polyester / polyurethane C [polyester / polyurethane resin, glass transition temperature −25 ° C.] are available.

【0013】以上の結合剤を用いて磁性層を非磁性支持
体上に形成するには、結合剤を適宜の溶剤に溶解し、そ
れにγ−Fe2 3 等の磁性粉、Al2 3 、MT−カ
ーボン等の研磨剤を分散剤により分散させて混練して支
持体上に塗布乾燥して形成する。次に、本発明の実施例
並びに塩化ビニル・酢酸ビニル共重合体を用いた結合剤
を使用した磁気記録媒体との効果の比較データを図1で
示す。
In order to form a magnetic layer on a non-magnetic support using the above binder, the binder is dissolved in an appropriate solvent, and magnetic powder such as γ-Fe 2 O 3 or Al 2 O 3 is added thereto. , MT-carbon or the like is dispersed by a dispersant, kneaded, and coated and dried on a support to form a film. Next, FIG. 1 shows comparative data of the effect of the magnetic recording medium of Example of the present invention and the binder using the vinyl chloride / vinyl acetate copolymer.

【0014】[0014]

【実施例】【Example】

実施例1 ポリエステル・ポリウレタン樹脂A〔ポリエステル・ポ
リウレタン樹脂 極性基としてSO3 Naを導入,ガラ
ス転移温度69°C〕60重量部、ポリエステル・ポリ
ウレタン樹脂B〔ポリエステル・ポリウレタン樹脂 極
性基としてSO3 Naを導入,ガラス転移温度−27°
C〕30重量部、ポリエステル・ポリウレタン樹脂C
〔ポリエステル・ポリウレタン樹脂,ガラス転移温度−
25°C〕10重量部、(ポリエステル・ポリウレタン
樹脂全体のガラス転移温度35°C)磁性粉としてγ−
Fe2 3 (比表面積は25m2 /gでパウダーHC3
56Oeの特性を持ったもの)p/bは4.5とした、
研磨剤としてAl2 31.5重量部、MTーカーボン
2.0重量部、分散剤としてリン酸エステル1.0重
量部、シランカップリング剤 2.0重量部をそれぞれ
加え、滑剤としてミリスチン酸 0.3重量部、ステア
リン酸 0.3重量部を加え、溶剤としてメチルエチル
ケトン、トルエン及びシクロヘキサノンを用いてニーダ
ーで混練し、その後サンドミル混合を行った。最終固形
分を38.0%に設定した。これをポリエステルフイル
ム上に塗布し、その後スーパーカレンダー処理を行い、
3.81mm巾に裁断して磁気テープを作成した。
Example 1 Polyester / Polyurethane Resin A [Polyester / Polyurethane Resin Introducing SO 3 Na as a Polar Group, Glass Transition Temperature 69 ° C.] 60 parts by Weight, Polyester / Polyurethane Resin B [Polyester / Polyurethane Resin: SO 3 Na as a Polar Group] Introduction, glass transition temperature -27 °
C] 30 parts by weight, polyester / polyurethane resin C
[Polyester / Polyurethane resin, glass transition temperature-
25 ° C.] 10 parts by weight (glass transition temperature of the entire polyester / polyurethane resin 35 ° C.) γ-as magnetic powder
Fe 2 O 3 (powder HC3 with a specific surface area of 25 m 2 / g
With a characteristic of 56 Oe) p / b is 4.5,
1.5 parts by weight of Al 2 O 3 as an abrasive, 2.0 parts by weight of MT-carbon, 1.0 part by weight of phosphoric acid ester as a dispersant, 2.0 parts by weight of a silane coupling agent were added, respectively, and myristic acid as a lubricant. 0.3 parts by weight and 0.3 parts by weight of stearic acid were added, and kneading was performed using a kneader using methyl ethyl ketone, toluene and cyclohexanone as solvents, and then sand mill mixing was performed. The final solid content was set to 38.0%. This is applied on a polyester film, and then super calendered,
A magnetic tape was prepared by cutting it to a width of 3.81 mm.

【0015】実施例2 実施例1と同様のポリエステル・ポリウレタン樹脂A
50重量部、ポリエステル・ポリウレタン樹脂B 30
重量部にポリエステル・ポリウレタン樹脂C20重量
部、(ポリエステル・ポリウレタン樹脂全体のガラス転
移温度25°C)を用いて実施例1と同様の方法で磁気
テープを作成した。
Example 2 Polyester / Polyurethane Resin A similar to Example 1
50 parts by weight, polyester / polyurethane resin B 30
A magnetic tape was prepared in the same manner as in Example 1 by using 20 parts by weight of polyester / polyurethane resin C as the weight part and (glass transition temperature of the entire polyester / polyurethane resin of 25 ° C.).

【0016】実施例3 実施例1と同様のポリエステル・ポリウレタン樹脂A
70重量部、ポリエステル・ポリウレタン樹脂B 15
重量部、ポリエステル・ポリウレタン樹脂C15重量部
(ポリエステル・ポリウレタン樹脂全体のガラス転移温
度45°C)を用いて実施例1と同様の方法で磁気テー
プを作成した。
Example 3 Polyester / polyurethane resin A similar to that of Example 1
70 parts by weight, polyester / polyurethane resin B 15
A magnetic tape was prepared in the same manner as in Example 1 by using 15 parts by weight of polyester / polyurethane resin C (glass transition temperature of the entire polyester / polyurethane resin of 45 ° C.).

【0017】実施例4 実施例1と同様にポリエステル・ポリウレタン樹脂A
30重量部、ポリエステル・ポリウレタン樹脂B 30
重量部、ポリエステル・ポリウレタン樹脂C10重量
部、ポリエステル・ポリウレタン樹脂D〔ポリエステル
・ポリウレタン樹脂(極性基としてSO3 Naを導入,
ガラス転移温度76°C)〕30重量部、(ポリエステ
ル・ポリウレタン樹脂全体のガラス転移温度35°C)
を用いて実施例1と同様の方法で磁気テープを作成し
た。
Example 4 Polyester / polyurethane resin A as in Example 1
30 parts by weight, polyester / polyurethane resin B 30
Parts by weight, polyester / polyurethane resin C 10 parts by weight, polyester / polyurethane resin D [polyester / polyurethane resin (introducing SO 3 Na as a polar group,
Glass transition temperature 76 ° C)] 30 parts by weight (glass transition temperature of polyester / polyurethane resin 35 ° C)
A magnetic tape was prepared using the same method as in Example 1.

【0018】実施例5 実施例1と同様のポリエステル・ポリウレタン樹脂A
70重量部、ポリエステル・ポリウレタン樹脂B 15
重量部、ポリエステル・ポリウレタン樹脂C15重量
部、(ポリエステル・ポリウレタン樹脂全体のガラス転
移温度45°C)を用いて、実施例1と同様の方法で磁
気テープを作成した。
Example 5 Polyester / Polyurethane Resin A as in Example 1
70 parts by weight, polyester / polyurethane resin B 15
A magnetic tape was prepared in the same manner as in Example 1 by using 15 parts by weight of polyester / polyurethane resin C and (glass transition temperature of the entire polyester / polyurethane resin of 45 ° C.).

【0019】実施例6 実施例1と同様のポリエステル・ポリウレタン樹脂A
50重量部、ポリエステル・ポリレタン樹脂B 30重
量部、ポリエステル・ポリウレタン樹脂C 20重量
部、(ポリエステル・ポリウレタン樹脂全体のガラス転
移温度25°C)を用いて、実施例1と同様の方法で磁
気テープを作成した。
Example 6 Polyester / Polyurethane Resin A Same as Example 1
Using 50 parts by weight, 30 parts by weight of polyester / polyretane resin B, 20 parts by weight of polyester / polyurethane resin C, and (glass transition temperature of the entire polyester / polyurethane resin of 25 ° C.), a magnetic tape was prepared in the same manner as in Example 1. It was created.

【0020】実施例7 実施例1と同様のポリエステル・ポリウレタン樹脂D
70重量部、ポリエステル・ポリウレタン樹脂B 15
重量部、ポリエステル・ポリウレタン樹脂C15重量部
(ポリエステル・ポリウレタン樹脂全体のガラス転移温
度45°C)を用いて、実施例1と同様の方法で磁気テ
ープを作成した。
Example 7 Polyester / Polyurethane Resin D Same as in Example 1
70 parts by weight, polyester / polyurethane resin B 15
A magnetic tape was prepared in the same manner as in Example 1 using 15 parts by weight of polyester / polyurethane resin C (glass transition temperature of the entire polyester / polyurethane resin of 45 ° C.).

【0021】実施例8 実施例1と同様のポリエステル・ポリウレタン樹脂D
50重量部、ポリエステル・ポリウレタン樹脂B 30
重量部、ポリエステル・ポリウレタン樹脂C20重量部
(ポリエステル・ポリウレタン樹脂全体のガラス転移温
度25°C)を用いて、実施例1と同様の方法で磁気テ
ープを作成した。
Example 8 Polyester / Polyurethane Resin D Same as in Example 1
50 parts by weight, polyester / polyurethane resin B 30
A magnetic tape was prepared in the same manner as in Example 1 by using 20 parts by weight of polyester / polyurethane resin C (glass transition temperature of the entire polyester / polyurethane resin of 25 ° C.).

【0022】実施例9 実施例1と同様のポリエステル・ポリウレタン樹脂D
70重量部、ポリエステル・ポリウレタン樹脂B 15
重量部、ポリエステル・ポリウレタン樹脂C15重量部
(ポリエステル・ポリウレタン樹脂全体のガラス転移温
度45°C)を用いて、実施例1と同様の方法で磁気テ
ープを作成した。
Example 9 Polyester / Polyurethane Resin D Same as in Example 1
70 parts by weight, polyester / polyurethane resin B 15
A magnetic tape was prepared in the same manner as in Example 1 using 15 parts by weight of polyester / polyurethane resin C (glass transition temperature of the entire polyester / polyurethane resin of 45 ° C.).

【0023】実施例10 実施例1と同様のポリエステル・ポリウレタン樹脂D
50重量部、ポリエステル・ポリウレタン樹脂B 30
重量部、ポリエステル・ポリウレタン樹脂C20重量部
(ポリエステル・ポリウレタン樹脂全体のガラス転移温
度25°C)を用いて、実施例1と同様の方法で磁気テ
ープを作成した。
Example 10 Polyester / Polyurethane Resin D Same as in Example 1
50 parts by weight, polyester / polyurethane resin B 30
A magnetic tape was prepared in the same manner as in Example 1 by using 20 parts by weight of polyester / polyurethane resin C (glass transition temperature of the entire polyester / polyurethane resin of 25 ° C.).

【0024】実施例11 実施例1と同様のポリエステル・ポリウレタン樹脂D
80重量部、ポリエステル・ポリウレタン樹脂B 10
重量部、ポリエステル・ポリウレタン樹脂C10重量部
(ポリエステル・ポリウレタン樹脂全体のガラス転移温
度56°C)を用いて、実施例1と同様の方法で磁気テ
ープを作成した。
Example 11 Polyester / Polyurethane Resin D Same as in Example 1
80 parts by weight, polyester / polyurethane resin B 10
A magnetic tape was prepared in the same manner as in Example 1 by using 10 parts by weight of polyester / polyurethane resin C (the glass transition temperature of the entire polyester / polyurethane resin was 56 ° C.).

【0025】実施例12 実施例1と同様のポリエステル・ポリウレタン樹脂D
40重量部、ポリエステル・ポリウレタン樹脂B 30
重量部、ポリエステル・ポリウレタン樹脂C30重量部
(ポリエステル・ポリウレタン樹脂全体のガラス転移温
度15°C)を用いて、実施例1と同様の方法で磁気テ
ープを作成した。
Example 12 Polyester / Polyurethane Resin D Same as in Example 1
40 parts by weight, polyester / polyurethane resin B 30
A magnetic tape was prepared in the same manner as in Example 1 by using 30 parts by weight of polyester / polyurethane resin C (15 ° C. of glass transition temperature of the entire polyester / polyurethane resin).

【0026】比較例1 VAGH(UCC社製、塩化ビニル・酢酸ビニル共重合
体) 50重量部、塩化ビニル系共重合樹脂A〔塩化ビ
ニル系共重合体(極性基としてOSO3 K及び二級OH
を導入し,ガラス転移温度69°C)〕20重量部、実
施例1と同様のポリエステル・ポリウレタン樹脂B 2
0重量部、ポリエステル・ポリウレタン樹脂C 10重
量部(結合剤全体のガラス転移温度41°C)を用いて
実施例1と同様の方法により磁気テープを作成した。
Comparative Example 1 VAGH (manufactured by UCC, vinyl chloride / vinyl acetate copolymer) 50 parts by weight, vinyl chloride copolymer resin A [vinyl chloride copolymer (OSO 3 K as a polar group and secondary OH)
Glass transition temperature of 69 ° C.)] 20 parts by weight, the same polyester-polyurethane resin B 2 as in Example 1
A magnetic tape was prepared in the same manner as in Example 1 by using 0 parts by weight and 10 parts by weight of polyester / polyurethane resin C (glass transition temperature of the entire binder: 41 ° C.).

【0027】比較例2 比較例1と同様のVAGH 70重量部、実施例1と同
様のポリエステル・ポリウレタン樹脂B 20重量部、
ポリエステル・ポリウレタン樹脂C 10重量部(結合
剤全体のガラス転移温度41°C)を用いて実施例1と
同様の方法により磁気テープを作成した。
Comparative Example 2 70 parts by weight of VAGH as in Comparative Example 1, 20 parts by weight of polyester / polyurethane resin B as in Example 1,
A magnetic tape was prepared in the same manner as in Example 1 using 10 parts by weight of polyester / polyurethane resin C (glass transition temperature of the binder as a whole 41 ° C.).

【0028】以上のようにして作成した本発明の磁気記
録媒体と比較例の磁気記録媒体の磁気特性及び電磁変換
特性を測定した、その結果を図1で示す。この結果より
明らかな通り、本発明の磁気記録媒体は、Brにおい
て、170〜230GAUSS、Rsにおいて、2.3
〜2.8%それぞれ向上した。また、電磁変換特性にお
いては、低域MOL−315が0.6〜1.0dBと向
上した磁気記録媒体を得た。
The magnetic characteristics and the electromagnetic conversion characteristics of the magnetic recording medium of the present invention and the magnetic recording medium of the comparative example produced as described above were measured, and the results are shown in FIG. As is clear from these results, the magnetic recording medium of the present invention has 170 to 230 GAUSS in Br and 2.3 in Rs.
~ 2.8% each improved. Further, in terms of electromagnetic conversion characteristics, a magnetic recording medium having an improved low range MOL-315 of 0.6 to 1.0 dB was obtained.

【0029】[0029]

【発明の効果】本発明の磁気記録媒体は磁気特性及び電
磁変換特性が著しく向上し、しかも、塩化ビニル系樹脂
を用いることがないから、焼却、廃棄の場合に有害な物
質を発生することがなく、地球環境の汚染防止に対して
極めて有用な発明である。
INDUSTRIAL APPLICABILITY The magnetic recording medium of the present invention has remarkably improved magnetic characteristics and electromagnetic conversion characteristics, and since it does not use vinyl chloride resin, it may generate harmful substances when incinerated or discarded. It is an extremely useful invention for preventing pollution of the global environment.

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

【図1】本発明の磁気記録媒体1〜12と比較の磁気記
録媒体の磁気特性及び電磁変換特性値を示した図であ
る。
FIG. 1 is a diagram showing magnetic characteristics and electromagnetic conversion characteristic values of magnetic recording media of the present invention and comparative magnetic recording media.

Claims (1)

【特許請求の範囲】[Claims] 【請求項1】 非磁性支持体上に強磁性粉末と結合剤と
を主体とする磁性層が形成された磁気記録媒体におい
て、 上記磁性層の結合剤がガラス転移温度の異なる2種類以
上のポリエステル・ポリウレタン樹脂のみを含有し、か
つ結合剤全体としてガラス転移温度が10°C〜60°
Cであることを特徴とする磁気記録媒体。
1. A magnetic recording medium in which a magnetic layer mainly comprising a ferromagnetic powder and a binder is formed on a non-magnetic support, wherein the binder of the magnetic layer is two or more kinds of polyesters having different glass transition temperatures. -Containing only the polyurethane resin, and the glass transition temperature of the binder as a whole is 10 ° C to 60 °
A magnetic recording medium characterized by being C.
JP13563392A 1992-04-30 1992-04-30 Magnetic recording medium Pending JPH05307734A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP13563392A JPH05307734A (en) 1992-04-30 1992-04-30 Magnetic recording medium

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP13563392A JPH05307734A (en) 1992-04-30 1992-04-30 Magnetic recording medium

Publications (1)

Publication Number Publication Date
JPH05307734A true JPH05307734A (en) 1993-11-19

Family

ID=15156374

Family Applications (1)

Application Number Title Priority Date Filing Date
JP13563392A Pending JPH05307734A (en) 1992-04-30 1992-04-30 Magnetic recording medium

Country Status (1)

Country Link
JP (1) JPH05307734A (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5451464A (en) * 1993-05-24 1995-09-19 Tdk Corporation Magnetic recording medium having a magnetic layer comprising ferromagnetic powders and binder which is two polyurethane resins with specified glass transition temperatures
EP0782130A2 (en) 1995-12-26 1997-07-02 TDK Corporation Magnetic recording medium
EP0782131A2 (en) 1995-12-26 1997-07-02 TDK Corporation Magnetic recording medium

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5451464A (en) * 1993-05-24 1995-09-19 Tdk Corporation Magnetic recording medium having a magnetic layer comprising ferromagnetic powders and binder which is two polyurethane resins with specified glass transition temperatures
EP0782130A2 (en) 1995-12-26 1997-07-02 TDK Corporation Magnetic recording medium
EP0782131A2 (en) 1995-12-26 1997-07-02 TDK Corporation Magnetic recording medium
US5935714A (en) * 1995-12-26 1999-08-10 Tdk Corporation Magnetic recording medium
US6063500A (en) * 1995-12-26 2000-05-16 Tdk Corporation Magnetic recording medium

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