JPH02172005A - Magnetic head having excellent wear resistance and production thereof - Google Patents
Magnetic head having excellent wear resistance and production thereofInfo
- Publication number
- JPH02172005A JPH02172005A JP32480588A JP32480588A JPH02172005A JP H02172005 A JPH02172005 A JP H02172005A JP 32480588 A JP32480588 A JP 32480588A JP 32480588 A JP32480588 A JP 32480588A JP H02172005 A JPH02172005 A JP H02172005A
- Authority
- JP
- Japan
- Prior art keywords
- core
- magnetic head
- wear resistance
- permalloy
- excellent wear
- 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
Links
Landscapes
- Magnetic Heads (AREA)
Abstract
Description
【発明の詳細な説明】
〔発明の目的〕
本発明は、パーマロイ製磁気ヘッドの耐摩耗性の改善及
びこの改善された磁気ヘッド(コアー)の製造方法に関
する。DETAILED DESCRIPTION OF THE INVENTION [Object of the Invention] The present invention relates to an improvement in the wear resistance of a permalloy magnetic head and a method for manufacturing the improved magnetic head (core).
汎用性磁気ヘッド(コアー)の代表的な材料としては、
パーマロイ、フェライト、センダスト。Typical materials for general-purpose magnetic heads (cores) include:
permalloy, ferrite, sendust.
アモルファスの4種類があげられる。これらは各々次の
ような特徴を持っている。There are four types of amorphous. Each of these has the following characteristics.
(イ) パーマロイ
透磁率、飽和磁束密度とも高く、また冷間加工性も良い
が、テープの摺動による摩耗が大きい欠点がある。(a) Permalloy has high magnetic permeability and saturation magnetic flux density, and has good cold workability, but has the disadvantage of high wear due to tape sliding.
(0) フェライト
電気抵抗が大きいため、高周波での特性は優れているが
、飽和磁束密度が低い欠点がある。(0) Since ferrite has a large electrical resistance, it has excellent characteristics at high frequencies, but it has the disadvantage of a low saturation magnetic flux density.
(ハ) センダスト
透磁率、飽和磁束密度とも高く、またテープの摺動によ
る摩耗は小さいが、冷間加工性が著しく悪い欠点がある
。(c) Sendust has high magnetic permeability and saturation magnetic flux density, and wear due to tape sliding is small, but it has the disadvantage of extremely poor cold workability.
(ニ) アモルファス
透磁率は高く、摩耗も小さいが、極薄のものしか製造で
きないため、積層工程における手間がかかりすぎ、著し
いコスト高となる。(d) Amorphous magnetic permeability is high and wear is low, but since only extremely thin materials can be manufactured, the lamination process takes too much time and costs, resulting in a significant increase in cost.
このなかで、従来から最も広く使用されている材料は主
としてパーマロイであり、特にオーディオテープレコー
ダーの磁気ヘッド(コアー)の材料にはほとんどパーマ
ロイが用いられている。このパーマロイの唯一の欠点と
も言えるのが耐摩耗性に劣るということであるが、これ
を改善するためには、Nb等の耐摩耗性向上元素を添加
する提案がなされている。Among these materials, the most widely used material is mainly permalloy, and in particular, permalloy is mostly used for the magnetic heads (cores) of audio tape recorders. The only drawback of permalloy is that it has poor wear resistance, but in order to improve this, it has been proposed to add wear resistance improving elements such as Nb.
しかしながら、このような添加元素は非常に高価である
点及び添加することによって冷間加工性が著しく悪化す
るという欠点があり、また、このような添加元素を加え
てもまだパーマロイの耐摩耗性の向上には十分ではない
という大きな問題があった。However, such additive elements have the disadvantage that they are very expensive and that cold workability is significantly deteriorated by adding them.Additionally, even with the addition of such additive elements, the wear resistance of permalloy still cannot be improved. The big problem was that it wasn't improving enough.
そこで、本発明者は磁気ヘッド(コアー)の製造工程に
おいて、パーマロイ薄板を数枚積層して組込む点に着目
し、その積層した居間を硬化させることにより耐摩耗性
を改善した磁気ヘッド及びその製造方法を創案したもの
である。Therefore, the present inventor focused on the point of laminating and incorporating several permalloy thin plates in the manufacturing process of the magnetic head (core), and produced a magnetic head and the same with improved wear resistance by hardening the laminated sheets. This method was invented.
すなわち本発明は、Nb含有パーマロイを窒化処理した
コアーチップの積層体から形成された磁気ヘッドコアー
を備えている耐摩耗性に優れた磁気ヘッド及びNb含有
パーマロイよりなる磁気へ。That is, the present invention relates to a magnetic head having excellent wear resistance, which includes a magnetic head core formed from a laminate of core chips in which Nb-containing permalloy is nitrided, and a magnetic head made of Nb-containing permalloy.
ラド用コアーチップを作成し、該コアーチップを窒素5
体積%以上残部が水素よりなる雰囲気において、温度9
00℃〜1200℃で15分以上焼鈍し、さらにこれを
積層して磁気ヘッドコアーとすることを特徴とする耐摩
耗性に優れた磁気ヘッドの製造方法を提供するものであ
る。A core chip for RAD was created, and the core chip was
In an atmosphere where the balance is hydrogen at a temperature of 9% or more by volume,
The present invention provides a method for manufacturing a magnetic head with excellent wear resistance, which is characterized by annealing at 00° C. to 1200° C. for 15 minutes or more, and further laminating the magnetic head core to form a magnetic head core.
本発明の理解を容易にするために、以下に具体的かつ詳
細に説明する。In order to facilitate understanding of the present invention, a specific and detailed description will be given below.
パーマロイの磁気ヘッドコア−は渦電流損失を低減させ
、良好な高周波特性を確保するため、通常板厚0.1m
の薄板を6枚積層して使用している。そこで、第1図に
示すようにコアーチップ1の表面に窒化処理により硬化
層を形成し、その後にこれを積層すると、コアーの両側
とコアーの内部に5層の硬化層3が等間隔に配列された
状態になる。このため第1図に示すようにテープの摺動
(テープは第1図の紙面と垂直に走行する。)によって
も、その硬化層の耐摩耗性が抜群に良いために、ファー
全体として耐摩耗性が大幅に向上する。Permalloy magnetic head cores are usually 0.1 m thick to reduce eddy current loss and ensure good high frequency characteristics.
It uses six laminated thin plates. Therefore, as shown in Fig. 1, by forming a hardened layer on the surface of the core chip 1 by nitriding and then laminating this layer, five hardened layers 3 are arranged at equal intervals on both sides of the core and inside the core. It becomes a state. Therefore, as shown in Figure 1, even when the tape slides (the tape runs perpendicular to the plane of the paper in Figure 1), the hardened layer has excellent abrasion resistance, so the fur as a whole is resistant to abrasion. performance is greatly improved.
窒化により硬化層を形成するためにはパーマロイ成分と
して窒化成分が含まれている必要があり、この点で本発
明における磁気ヘッドコアー用パーマロイはNb−パー
マロイを用いる。Nb−パーマロイの成分は概路次の通
りである。In order to form a hardened layer by nitriding, a nitriding component must be included as a permalloy component, and in this respect, Nb-permalloy is used as the permalloy for the magnetic head core in the present invention. The components of Nb-permalloy are as follows.
Niニア9〜82%、Nb:5〜7%、Fe:残(他年
可避的不純物を含む。)
次に、窒化処理は磁性焼鈍と兼ねることが製造コスト上
望ましく、その条件は次の理由で限定される。Ni: 9 to 82%, Nb: 5 to 7%, Fe: remainder (contains inevitable impurities) Next, from the viewpoint of manufacturing cost, it is desirable that the nitriding treatment also serves as magnetic annealing, and the conditions are as follows. Limited for a reason.
焼鈍雰囲気は窒素含有量が5体積%未満であると、窒化
が進みにくく耐摩性が不十分になるため、窒素5体積%
以上とした。窒素100体積%でも特に問題はない。If the nitrogen content in the annealing atmosphere is less than 5% by volume, nitriding will be difficult to proceed and wear resistance will be insufficient.
That's all. There is no particular problem even if the nitrogen content is 100% by volume.
焼鈍温度は900℃未満では良好な磁気特性が得られず
、1200℃を超えると現実の工業炉としては実際的で
ないので900℃以上1200℃以下とした。If the annealing temperature is less than 900°C, good magnetic properties cannot be obtained, and if it exceeds 1200°C, it is not practical for an actual industrial furnace, so the annealing temperature was set to 900°C or more and 1200°C or less.
時間は15分未満では、良好な磁気特性と十分な耐摩耗
性が得られないため15分以上とした。If the time is less than 15 minutes, good magnetic properties and sufficient wear resistance cannot be obtained, so the time is set to 15 minutes or more.
時間の上限は特に定めないが、あまり長すぎてもコスト
高になることと、窒化が進みすぎると磁気特性が劣化し
てしまうため通常は4時間以下が適当である。There is no particular upper limit to the time, but if it is too long, the cost will increase, and if nitriding progresses too much, the magnetic properties will deteriorate, so 4 hours or less is usually appropriate.
なお、窒化処理を終えたコアーチップ1は、エポキシ系
接着剤等適宜の接着剤4を用い第2図のように接着する
。The core chip 1 that has undergone the nitriding process is adhered as shown in FIG. 2 using an appropriate adhesive 4 such as an epoxy adhesive.
次に実施例に基づいて本発明を説明する。Next, the present invention will be explained based on examples.
〔実施例〕
パーマロイ素材として、Nb−パーマロイ(80゜5N
i−6,5%Nb−残Fε)を用い最終的に冷開圧延で
板厚0.1mmの薄板に仕上げた。これを、所定の形状
のコアーチップにプレスで打抜いた。[Example] As a permalloy material, Nb-permalloy (80°5N
A thin plate with a thickness of 0.1 mm was finally finished by cold-open rolling using i-6.5% Nb-residue Fε). This was punched out into a core chip of a predetermined shape using a press.
次に、このコアーチップを第1表に示す条件で焼鈍した
後(Nol〜No4では同時に窒化される。)磁気ヘツ
゛ドに組み込み、最終的にテープ走行面を研摩により仕
上げた。このようにして作製した磁気ヘッドを実際にテ
ープレコーダーに組み込み、テープ走行試験を行った。Next, this core chip was annealed under the conditions shown in Table 1 (Nos. No. 1 to 4 were nitrided at the same time), and then incorporated into a magnetic head, and the tape running surface was finally polished. The magnetic head thus produced was actually installed in a tape recorder, and a tape running test was conducted.
テープ走行試験は室温20℃、湿度50%の条件でスタ
ンダードタイプのテープを200時間毎に新品と交換し
ながら1000時間行った。その後、磁気ヘッドコアー
の摩耗量を表面形状測定機で測定した。ヘッドコア−の
最大摩耗量を第1表に示す。The tape running test was carried out for 1000 hours at a room temperature of 20° C. and a humidity of 50%, using a standard type tape and replacing it with a new one every 200 hours. Thereafter, the amount of wear on the magnetic head core was measured using a surface profile measuring device. Table 1 shows the maximum wear amount of the head core.
第 1 表
第1表のNα1〜4は本発明例で、素材がNb−パーマ
ロイであり、この場合は1000時間走行後もほとんど
摩耗しないまでに改善され、耐摩耗性が大巾に良くなっ
ていることが判る。Table 1 Nα1 to Nα4 in Table 1 are examples of the present invention, where the material is Nb-permalloy, and in this case, the wear resistance has been improved to the point where there is almost no wear even after running for 1000 hours, and the wear resistance has been greatly improved. I know that there is.
なお、窒化処理条件によっては、若干ヘッドの磁気特性
が劣るものがあったが、実用上問題になるレベルではな
かった。Note that, depending on the nitriding treatment conditions, the magnetic properties of the heads were slightly inferior in some cases, but this was not at a level that would pose a practical problem.
以上述べたように、本発明によれば著しく耐摩耗性に優
れた磁気ヘッドを得ることができ、実用的価値は極めて
高く、技術及び電子機器の進歩に大きく貢献できる。As described above, according to the present invention, it is possible to obtain a magnetic head with extremely excellent wear resistance, which has extremely high practical value and can greatly contribute to the advancement of technology and electronic equipment.
第1図は磁気ヘッド(コアー)の断面概略図。 第2図は第1図の部分拡大図を示す。 A:拡大部 1:コアーチップ 2:テープ摺動面 3:窒化による硬化層 4:接着剤層 FIG. 1 is a schematic cross-sectional view of the magnetic head (core). FIG. 2 shows a partially enlarged view of FIG. 1. A: Enlarged section 1: Core chip 2: Tape sliding surface 3: Hardened layer by nitriding 4: Adhesive layer
Claims (2)
の積層体から形成された磁気ヘッドコアーを備えている
耐摩耗性に優れた磁気ヘッド。(1) A magnetic head with excellent wear resistance, including a magnetic head core formed from a laminate of core chips nitrided with Nb-containing permalloy.
チップを作成し、該コアーチップを窒素5体積%以上残
部が水素よりなる雰囲気において、温度900℃〜12
00℃で15分以上焼鈍し、さらにこれを積層して磁気
ヘッドコアーとすることを特徴とする耐摩耗性に優れた
磁気ヘッドの製造方法。(2) A core chip for a magnetic head made of Nb-containing permalloy is prepared, and the core chip is heated at a temperature of 900°C to 12% by volume of nitrogen or more in an atmosphere with the balance being hydrogen.
A method for manufacturing a magnetic head with excellent wear resistance, characterized by annealing at 00° C. for 15 minutes or more and then laminating the same to form a magnetic head core.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP32480588A JPH02172005A (en) | 1988-12-24 | 1988-12-24 | Magnetic head having excellent wear resistance and production thereof |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP32480588A JPH02172005A (en) | 1988-12-24 | 1988-12-24 | Magnetic head having excellent wear resistance and production thereof |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| JPH02172005A true JPH02172005A (en) | 1990-07-03 |
Family
ID=18169876
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| JP32480588A Pending JPH02172005A (en) | 1988-12-24 | 1988-12-24 | Magnetic head having excellent wear resistance and production thereof |
Country Status (1)
| Country | Link |
|---|---|
| JP (1) | JPH02172005A (en) |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN110923418A (en) * | 2019-12-30 | 2020-03-27 | 唐山国芯晶源电子有限公司 | Permalloy magnetic core annealing equipment and method |
-
1988
- 1988-12-24 JP JP32480588A patent/JPH02172005A/en active Pending
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN110923418A (en) * | 2019-12-30 | 2020-03-27 | 唐山国芯晶源电子有限公司 | Permalloy magnetic core annealing equipment and method |
| CN110923418B (en) * | 2019-12-30 | 2021-06-29 | 唐山国芯晶源电子有限公司 | Permalloy magnetic core annealing equipment and method |
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