JP2000178538A - Friction material composition and friction material made by using the composition - Google Patents

Friction material composition and friction material made by using the composition

Info

Publication number
JP2000178538A
JP2000178538A JP35438398A JP35438398A JP2000178538A JP 2000178538 A JP2000178538 A JP 2000178538A JP 35438398 A JP35438398 A JP 35438398A JP 35438398 A JP35438398 A JP 35438398A JP 2000178538 A JP2000178538 A JP 2000178538A
Authority
JP
Japan
Prior art keywords
friction material
composition
triiron tetraoxide
friction
weight
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
JP35438398A
Other languages
Japanese (ja)
Inventor
Manabu Ono
学 小野
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.)
Showa Denko Materials Co Ltd
Original Assignee
Hitachi Chemical Co Ltd
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 Hitachi Chemical Co Ltd filed Critical Hitachi Chemical Co Ltd
Priority to JP35438398A priority Critical patent/JP2000178538A/en
Publication of JP2000178538A publication Critical patent/JP2000178538A/en
Pending legal-status Critical Current

Links

Abstract

PROBLEM TO BE SOLVED: To obtain a friction material composition which can prevent or reduce the vibration and noise of a brake and gives a disc rotor suffering less wear by incorporating a specified amount of triiron tetraoxide therein. SOLUTION: This friction material composition contains 0.5-23 wt.% triiron tetraoxide, 10-45 wt.% fibrous material, and 20-60 wt.% filler other than triiron tetraoxide, and if necessary, 1-8 wt.% metal powder. The triiron tetraoxide used preferably comprises one having a mean particle diameter of 0.4 μm or smaller with a polyhedron or needle shape. In addition to the triiron tetraoxide, a fibrous material comprising e.g. copper fibers, aramid fibers, or calcium silicate whisker, a binder comprising e.g. a thermosetting material or a rubber composition, a friction modifier comprising e.g. molybdenum disulfide or graphite, and a filler comprising e.g. barium sulfate are used for the friction material. A disc brake pad is obtained by preforming the composition into a prescribed shape, press molding it in a die at 130-180 deg.C, heat treating the molding, and baking the surface at high temperature.

Description

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

【0001】[0001]

【発明の属する技術分野】本発明は、自動車、鉄道車
両、各種産業機械等の制動に用いられるディスクブレー
キパッド、ブレーキライニング等の摩擦材に適した摩擦
材組成物及び摩擦材組成物を用いた摩擦材に関する。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a friction material composition suitable for a friction material such as a disc brake pad and a brake lining used for braking automobiles, railway vehicles, various industrial machines and the like, and a friction material composition. Related to friction material.

【0002】[0002]

【従来の技術】自動車、鉄道車両、各種産業機械等に
は、その制動のためディスクブレーキパッド、ブレーキ
ライニング等の摩擦材が使用されている。現在使用され
ているディスクブレーキパッド、ブレーキライニング等
の摩擦材は、特開平6−184525号公報などに示さ
れるようにアラミド繊維、セラミック繊維等の繊維状物
質、摩擦調整剤などを用いて、制動時の鳴きや異音の発
生が少ないNon・Asbestos・Organic(ノン・アスベストス
・オーガニック)(以下NAO材と称する)系の摩擦材
が主流である。
2. Description of the Related Art Friction materials such as disc brake pads and brake linings are used in automobiles, railway vehicles, various industrial machines and the like for braking. Friction materials such as disc brake pads and brake linings currently used are braked by using a fibrous substance such as aramid fiber or ceramic fiber, a friction modifier or the like as shown in JP-A-6-184525. Non-Asbestos-Organic (hereinafter referred to as NAO) -based friction materials that generate less squeal and noise are mainly used.

【0003】しかしながら、近年のブレーキへの性能要
求は益々高度化する傾向にあり、従来のNAO材に対し
て、制動時のブレーキ鳴き、異音といった音振特性を維
持しながら、効き特性や高速走行時のブレーキ特性の向
上が要求されているが、上記に示すような従来の摩擦
材、例えばディスクブレーキパッドでは、音振特性が不
十分であり、効き特性や高速走行時のブレーキ特性が低
下する傾向がある。
However, performance requirements for brakes in recent years have tended to become more and more advanced. In contrast to conventional NAO materials, while maintaining sound vibration characteristics such as brake squeal and abnormal noise at the time of braking, effective characteristics and high speed Improvements in braking characteristics during running are required, but conventional friction materials such as those described above, for example, disc brake pads, have insufficient sound and vibration characteristics, resulting in reduced effectiveness and braking characteristics at high speed running. Tend to.

【0004】[0004]

【発明が解決しようとする課題】請求項1、2及び3記
載の発明は、高速走行時における制動時のブレーキ振動
(以下高速・高温ジャダーと称する)を防止又は低減で
き、かつブレーキ鳴きを防止又は低減できると共にディ
スクロータの摩耗量の少ない摩擦材に適した摩擦材組成
物を提供するものである。請求項4記載の発明は、高速
・高温ジャダーを防止又は低減でき、かつブレーキ鳴き
を防止又は低減できると共にディスクロータの摩耗量の
少ない摩擦材を提供するものである。
According to the first, second and third aspects of the present invention, it is possible to prevent or reduce brake vibration during braking at high speed (hereinafter referred to as "high speed / high temperature judder") and prevent brake squeal. Another object of the present invention is to provide a friction material composition which can be reduced and is suitable for a friction material having a small wear amount of a disk rotor. The fourth aspect of the present invention is to provide a friction material capable of preventing or reducing high-speed / high-temperature judder, preventing or reducing brake squeal, and having a small wear amount of the disk rotor.

【0005】[0005]

【課題を解決するための手段】本発明は、全組成物中に
四三酸化鉄を0.5〜23重量%含有してなる摩擦材組
成物に関する。また、本発明は、四三酸化鉄の平均粒径
が0.4μm以下である摩擦材組成物に関する。また、
本発明は、四三酸化鉄が多面体形及び針状形のいずれか
一方又は両方を含む四三酸化鉄である摩擦材組成物に関
する。さらに、本発明は、上記の摩擦材組成物を加熱加
圧成形してなる摩擦材に関する。
SUMMARY OF THE INVENTION The present invention relates to a friction material composition containing 0.5 to 23% by weight of ferric oxide in the total composition. The present invention also relates to a friction material composition in which ferric oxide has an average particle size of 0.4 μm or less. Also,
TECHNICAL FIELD The present invention relates to a friction material composition in which triiron tetroxide is iron tetroxide containing one or both of a polyhedral shape and a needle shape. Furthermore, the present invention relates to a friction material obtained by subjecting the above-mentioned friction material composition to heat and pressure molding.

【0006】[0006]

【発明の実施の形態】本発明において四三酸化鉄は、全
組成物中に0.5〜23重量%、好ましくは1〜20重
量%、さらに好ましくは3〜18重量%含有することが
必要とされ、0.5重量%未満であると高速・高温ジャ
ダーの防止又は低減の効下が低下し、23重量%を越え
ると鳴きが発生したり、ディスクロータ摩耗量が大きく
なる。
BEST MODE FOR CARRYING OUT THE INVENTION In the present invention, iron tetroxide must be contained in the entire composition in an amount of 0.5 to 23% by weight, preferably 1 to 20% by weight, more preferably 3 to 18% by weight. If it is less than 0.5% by weight, the effect of preventing or reducing high-speed and high-temperature judder is reduced, and if it exceeds 23% by weight, squealing occurs and the disk rotor wear increases.

【0007】四三酸化鉄には、六面体形、八面体形等の
多面体形、針状形、球形、不定形などの形状があり、本
発明においては摩擦係数の安定性及び摩擦係数を向上さ
せる点で多面体形及び針状形の四三酸化鉄を用いること
が好ましく、これらは単独又は混合して用いることがで
きる。なお四三酸化鉄の平均粒径は、0.4μm以下が
好ましく、0.3μm以下がより好ましく、0.2〜
0.1μmの範囲がさらに好ましい。なお0.4μmを
越えるものを用いると、鳴きが発生したり、ディスクロ
ータ摩耗量が大きくなる傾向がある。
The ferric oxide has a polyhedral shape such as a hexahedral shape and an octahedral shape, a needle shape, a spherical shape and an irregular shape. In the present invention, the stability of the friction coefficient and the friction coefficient are improved. From the viewpoint, it is preferable to use polyhedral and acicular iron tetroxides, and these can be used alone or in combination. The average particle size of triiron tetroxide is preferably 0.4 μm or less, more preferably 0.3 μm or less, and 0.2 to
The range of 0.1 μm is more preferable. If the thickness exceeds 0.4 μm, squealing tends to occur and the amount of wear of the disk rotor tends to increase.

【0008】摩擦部材の素材は、一般に公知の材料が用
いられ、上記の四三酸化鉄の他に、例えば銅繊維、黄銅
繊維、アクリル繊維、アラミド繊維、セラミック繊維、
ロックウール、カーボン繊維、珪酸カルシウムウィス
カ、炭酸カルシウムウィスカ、チタン酸カリウムウィス
カ、炭酸マグネシウムウィスカ等の繊維状物質、フェノ
ール樹脂、エポキシ樹脂、メラミン樹脂、ポリイミド樹
脂等の熱硬化性樹脂やNBR、SBR、IR等のゴム組
成物を含む結合剤、カシューダスト、三硫化アンチモ
ン、二硫化モリブデン、黒鉛等の摩擦調整剤、硫酸バリ
ウム、炭酸カルシウム、炭酸マグネシウム等の充填剤さ
らに必要に応じて銅、黄銅、青銅、錫、亜鉛等の金属粉
が添加される。
As the material of the friction member, a generally known material is used. In addition to the above-mentioned triiron tetroxide, for example, copper fiber, brass fiber, acrylic fiber, aramid fiber, ceramic fiber,
Rock wool, carbon fiber, fibrous substances such as calcium silicate whisker, calcium carbonate whisker, potassium titanate whisker, magnesium carbonate whisker, phenolic resin, epoxy resin, melamine resin, thermosetting resin such as polyimide resin and NBR, SBR, Binders including rubber compositions such as IR, friction modifiers such as cashew dust, antimony trisulfide, molybdenum disulfide, graphite, fillers such as barium sulfate, calcium carbonate, magnesium carbonate and the like. Metal powder such as bronze, tin, and zinc is added.

【0009】上記における繊維状物質の含有量は、全組
成物中に10〜45重量%含有することが好ましく、1
5〜40重量%含有することがより好ましく、20〜3
5重量%含有することがさらに好ましい。結合剤の含有
量は、全組成物中に5〜15重量%含有することが好ま
しく、6〜13重量%含有することがより好ましく、7
〜11重量%含有することがさらに好ましい。摩擦調整
剤の含有量は、全組成物中に4〜25重量%含有するこ
とが好ましく、7〜22重量%含有することがより好ま
しく、10〜19重量%含有することがさらに好まし
い。
The content of the fibrous substance in the above composition is preferably from 10 to 45% by weight in the whole composition,
More preferably, the content is 5 to 40% by weight.
More preferably, the content is 5% by weight. The content of the binder is preferably 5 to 15% by weight, more preferably 6 to 13% by weight, and more preferably 7 to 13% by weight in the whole composition.
More preferably, the content is about 11% by weight. The content of the friction modifier is preferably 4 to 25% by weight, more preferably 7 to 22% by weight, even more preferably 10 to 19% by weight in the whole composition.

【0010】四三酸化鉄を除いた充填剤の含有量は、全
組成物中に20〜60重量%含有することが好ましく、
25〜50重量%含有することがより好ましく、30〜
40重量%含有することがさらに好ましい。さらに必要
に応じて添加する金属粉の含有量は、全組成物中に1〜
8重量%含有することが好ましく、2〜7重量%含有す
ることがより好ましく、3〜6重量%含有することがさ
らに好ましい。これらの成分は、全組成物が100重量
%となるように配合される。
The content of the filler excluding triiron tetroxide is preferably 20 to 60% by weight in the whole composition.
More preferably, the content is 25 to 50% by weight, and 30 to 50% by weight.
More preferably, the content is 40% by weight. Further, the content of the metal powder to be added as needed is 1 to
The content is preferably 8% by weight, more preferably 2 to 7% by weight, even more preferably 3 to 6% by weight. These components are blended so that the total composition becomes 100% by weight.

【0011】本発明になるディスクブレーキパッドは、
摩擦材組成物を所定の形状に予備成形し、次いで金型内
に裏金及び予備成形体を挿設した後、加熱加圧成形法で
成形し、その後加熱処理を行って得られる。なお必要に
応じ、加熱処理後にさらに400〜800℃の高温で成
形体の表面を焼き付けてもよい。成形する際の加熱温度
は130〜180℃が好ましく、140〜170℃がさ
らに好ましい。圧力は30〜70MPaが好ましく、45
〜55MPaがさらに好ましい。加熱処理温度は100〜
300℃が好ましく、150〜250℃がさらに好まし
い。
[0011] The disc brake pad according to the present invention comprises:
The friction material composition is preformed into a predetermined shape, and then the back metal and the preformed body are inserted into a mold, and then molded by a heat and pressure molding method, followed by a heat treatment. If necessary, the surface of the molded body may be further baked at a high temperature of 400 to 800 ° C. after the heat treatment. The heating temperature during molding is preferably from 130 to 180 ° C, more preferably from 140 to 170 ° C. The pressure is preferably 30 to 70 MPa, and 45
~ 55 MPa is more preferred. Heat treatment temperature is 100 ~
300 ° C is preferable, and 150 to 250 ° C is more preferable.

【0012】[0012]

【実施例】以下本発明の実施例を説明する。 実施例1〜4、比較例1〜2 表1に示す成分を配合し、混合機で均一に混合して摩擦
材組成物を得た。次いで摩擦材組成物を所定の形状に予
備成形した後、金型内に裏金及び予備成形体を挿設し、
140℃±5℃及び50MPaの条件で10分間加熱加圧
成形し、さらに250℃で5時間加熱処理を行い、冷却
後研磨してディスクブレーキパッドを得た。
Embodiments of the present invention will be described below. Examples 1 to 4 and Comparative Examples 1 and 2 The components shown in Table 1 were blended and uniformly mixed with a mixer to obtain a friction material composition. Next, after preforming the friction material composition into a predetermined shape, a backing metal and a preformed body are inserted into a mold,
It was heated and pressed at 140 ° C. ± 5 ° C. and 50 MPa for 10 minutes, further heated at 250 ° C. for 5 hours, cooled and polished to obtain a disc brake pad.

【0013】[0013]

【表1】 [Table 1]

【0014】次に本発明の実施例になるディスクブレー
キパッドと比較例のディスクブレーキパッドについて、
高速・高温ジャダー(トルク変動)、ブレーキ鳴き及び
ディスクロータ摩耗量の比較試験を行った。その結果を
表2に示す。なお試験条件は下記の通りである。
Next, a disc brake pad according to an embodiment of the present invention and a disc brake pad according to a comparative example will be described.
Comparative tests of high-speed and high-temperature judder (torque fluctuation), brake squeal and disk rotor wear were conducted. Table 2 shows the results. The test conditions are as follows.

【0015】 高速・高温ジャダー ダイナモメーターを使用し、下記の制動条件でブレーキ
試験を行い、制度時のトルク変動を測定し、高速・高温
ジャダーの比較をした。 制動条件:制動前車速…200km/h、制動前ローター温
度…200℃及び300℃の2条件、制動減速度…0.
3G一定 なおブレーキ型式は、日産自動車(株)製、車種名:プリ
メーラ(P11)のブレーキを使用した。 ブレーキ鳴き 日産自動車(株)製、車種名:プリメーラ(P11)を用
い、JASO C 402−79に従って実車試験を行
い、試験中の鳴きを測定し、75dB以上の鳴きの発生率
を求めた。 摩耗量 上記のと同様の実車試験を行い、試験前後におけるデ
ィスクロータの厚みの差から摩耗量を測定し、耐摩耗性
の比較をした。
Using a high-speed and high-temperature judder dynamometer, a brake test was performed under the following braking conditions, and the torque fluctuation at the time of regulation was measured. Braking conditions: vehicle speed before braking: 200 km / h, rotor temperature before braking: two conditions of 200 ° C. and 300 ° C., braking deceleration: 0.
3G constant The brake model used was Nissan Motor Co., Ltd., model name: Primera (P11). Brake squeal An actual vehicle test was performed using Nissan Motor Co., Ltd., model name: Primera (P11) according to JASO C 402-79, squeal during the test was measured, and the occurrence rate of squeal of 75 dB or more was determined. Abrasion amount The same actual vehicle test as described above was performed, and the abrasion amount was measured from the difference in thickness of the disk rotor before and after the test, and the abrasion resistance was compared.

【0016】[0016]

【表2】 [Table 2]

【0017】表2に示すように、本発明の実施例になる
ディスクブレーキパッドは、トルク変動、即ち高速・高
温ジャダーが低く、ブレーキ鳴きの発生率及びディスク
ロータ摩耗量が少ないことがわかる。これに対し比較例
1のディスクブレーキパッドは、高速・高温ジャダーが
高く、さらに比較例2のディスクブレーキパッドは、高
速・高温ジャダーが高く、ブレーキ鳴き発生率及びディ
スクロータ摩耗量が多いことがわかる。
As shown in Table 2, it can be seen that the disk brake pad according to the embodiment of the present invention has a low torque fluctuation, that is, a high-speed / high-temperature judder, and has a low brake squealing rate and a small disk rotor wear amount. On the other hand, the disc brake pad of Comparative Example 1 has a high-speed / high-temperature judder, and the disc brake pad of Comparative Example 2 has a high-speed / high-temperature judder, a high brake squealing rate and a large disc rotor wear amount. .

【0018】[0018]

【発明の効果】請求項1、2及び3記載の発明は、高速
・高温ジャダーを防止又は低減でき、かつブレーキ鳴き
を防止又は低減できると共にディスクロータの摩耗量の
少ない摩擦材に適した摩擦材組成物を提供することがで
きる。請求項4記載の発明は、高速・高温ジャダーを防
止又は低減でき、かつブレーキ鳴きを防止又は低減でき
ると共にディスクロータの摩耗量の少ない摩擦材を提供
することができる。
According to the first, second and third aspects of the present invention, a friction material suitable for a friction material capable of preventing or reducing high-speed / high-temperature judder, preventing or reducing brake squeal, and having a small wear amount of a disk rotor. A composition can be provided. According to the fourth aspect of the present invention, it is possible to provide a friction material that can prevent or reduce high-speed / high-temperature judder, prevent or reduce brake squeal, and reduce the amount of wear of the disk rotor.

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Claims (4)

【特許請求の範囲】[Claims] 【請求項1】 全組成物中に四三酸化鉄を0.5〜23
重量%含有してなる摩擦材組成物。
1. A composition comprising 0.5 to 23 iron trioxide in the total composition.
A friction material composition containing about 100% by weight.
【請求項2】 四三酸化鉄の平均粒径が0.4μm以下
である請求項1記載の摩擦材組成物。
2. The friction material composition according to claim 1, wherein the average particle size of the triiron tetroxide is 0.4 μm or less.
【請求項3】 四三酸化鉄が多面体形及び針状形のいず
れか一方又は両方を含む四三酸化鉄である請求項1又は
2記載の記載の摩擦材組成物。
3. The friction material composition according to claim 1, wherein the triiron tetroxide is triiron tetroxide containing one or both of a polyhedral form and a needle form.
【請求項4】 請求項1、2又は3記載の摩擦材組成物
を加熱加圧成形してなる摩擦材。
4. A friction material formed by heating and pressing the friction material composition according to claim 1, 2 or 3.
JP35438398A 1998-12-14 1998-12-14 Friction material composition and friction material made by using the composition Pending JP2000178538A (en)

Priority Applications (1)

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Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP35438398A JP2000178538A (en) 1998-12-14 1998-12-14 Friction material composition and friction material made by using the composition

Publications (1)

Publication Number Publication Date
JP2000178538A true JP2000178538A (en) 2000-06-27

Family

ID=18437197

Family Applications (1)

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Country Status (1)

Country Link
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Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1482203A1 (en) 2003-05-28 2004-12-01 Nisshinbo Industries, Inc. Friction material
CN103603905A (en) * 2013-11-19 2014-02-26 青岛广联达精密机械有限公司 Motor vehicle disc-type brake pad
JP2016079248A (en) * 2014-10-14 2016-05-16 日本ブレーキ工業株式会社 Friction material composition, friction material, and friction member
WO2016103974A1 (en) * 2014-12-24 2016-06-30 日本ブレーキ工業株式会社 Friction material composition, friction material using same, and friction member
WO2017170532A1 (en) * 2016-03-30 2017-10-05 戸田工業株式会社 Iron oxide particle powder for friction material
JP2019151854A (en) * 2019-05-17 2019-09-12 日本ブレーキ工業株式会社 Friction material composition, friction material, and friction member

Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1482203A1 (en) 2003-05-28 2004-12-01 Nisshinbo Industries, Inc. Friction material
CN103603905A (en) * 2013-11-19 2014-02-26 青岛广联达精密机械有限公司 Motor vehicle disc-type brake pad
JP2016079248A (en) * 2014-10-14 2016-05-16 日本ブレーキ工業株式会社 Friction material composition, friction material, and friction member
WO2016103974A1 (en) * 2014-12-24 2016-06-30 日本ブレーキ工業株式会社 Friction material composition, friction material using same, and friction member
JP2016121246A (en) * 2014-12-24 2016-07-07 日本ブレーキ工業株式会社 Friction material composition, and friction material and friction member using the same
CN107109194A (en) * 2014-12-24 2017-08-29 日本制动工业株式会社 Friction material composition, friction material and friction means using the friction material composition
KR20170101253A (en) * 2014-12-24 2017-09-05 니혼 브레이크 고오교 가부시키가이샤 A friction material composition, a friction material and a friction member using the friction material composition
WO2017170532A1 (en) * 2016-03-30 2017-10-05 戸田工業株式会社 Iron oxide particle powder for friction material
JPWO2017170532A1 (en) * 2016-03-30 2019-02-28 戸田工業株式会社 Iron oxide particle powder for friction material
JP2019151854A (en) * 2019-05-17 2019-09-12 日本ブレーキ工業株式会社 Friction material composition, friction material, and friction member

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