JPH081408A - Cutting tool made of surface-covered tungsten carbide base cemented carbide having excellent in-layer adhesion of hard covered layer - Google Patents

Cutting tool made of surface-covered tungsten carbide base cemented carbide having excellent in-layer adhesion of hard covered layer

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Publication number
JPH081408A
JPH081408A JP6156842A JP15684294A JPH081408A JP H081408 A JPH081408 A JP H081408A JP 6156842 A JP6156842 A JP 6156842A JP 15684294 A JP15684294 A JP 15684294A JP H081408 A JPH081408 A JP H081408A
Authority
JP
Japan
Prior art keywords
layer
cemented carbide
crystal structure
cutting tool
titanium
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.)
Granted
Application number
JP6156842A
Other languages
Japanese (ja)
Other versions
JP3230372B2 (en
Inventor
Hironori Yoshimura
寛範 吉村
Akira Osada
晃 長田
Kenichi Unou
健一 宇納
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.)
Mitsubishi Materials Corp
Original Assignee
Mitsubishi Materials 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 Mitsubishi Materials Corp filed Critical Mitsubishi Materials Corp
Priority to JP15684294A priority Critical patent/JP3230372B2/en
Priority to US08/398,533 priority patent/US5920760A/en
Priority to EP95103339A priority patent/EP0685572B1/en
Priority to DE69518039T priority patent/DE69518039T2/en
Priority to KR1019950006333A priority patent/KR0163654B1/en
Priority to CN95103640A priority patent/CN1070540C/en
Priority to TW084105472A priority patent/TW308609B/zh
Publication of JPH081408A publication Critical patent/JPH081408A/en
Priority to US09/210,460 priority patent/US6093479A/en
Application granted granted Critical
Publication of JP3230372B2 publication Critical patent/JP3230372B2/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Abstract

PURPOSE:To provide a cutting tool made of surface-covered cemented carbide having excellent in-layer adhesion of the hard covered layer. CONSTITUTION:A hard covered layer of the prescribed mean thickness within 3-30mum consisting of a first layer consisting of TiN having the granular crystalline structure, a second layer consisting of the TiCN sectioned layer having a plurality of longitudinal growing crystal structure which is sectioned by the TiN sectioned layer consisting of one or two or more layers having the granular crystalline structure, a third layer consisting of Al2O3 having the structure mainly of the kappa type crystal, and a fourth layer consisting of TiN having the granular crystalline structure as necessary is formed on the surface of a cemented carbide base body.

Description

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

【0001】[0001]

【産業上の利用分野】この発明は、硬質被覆層がすぐれ
た層間密着性を有し、したがって切削抵抗の大きい、例
えば軟鋼などの切削に用いた場合に長期に亘ってすぐれ
た切削性能を発揮する表面被覆炭化タングステン基超硬
合金製切削工具(以下、被覆超硬切削工具という)に関
するものである。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention has a hard coating layer having excellent interlayer adhesion, and therefore exhibits excellent cutting performance over a long period of time when used for cutting, for example, mild steel having a large cutting resistance. The present invention relates to a surface-coated tungsten carbide based cemented carbide cutting tool (hereinafter referred to as a coated cemented carbide cutting tool).

【0002】[0002]

【従来の技術】従来、例えば特公昭57−1585号公
報や特公昭59−52703号公報に記載されるよう
に、全体的に均質な炭化タングステン基超硬合金基体
や、結合相形成成分としての例えばCoなどの含有量が
基体内部に比して相対的に高い表面部、すなわち表面部
に結合相富化帯域を有する炭化タングステン基超硬合金
基体(以下、これらを総称して超硬合金基体という)の
表面に、化学蒸着法や物理蒸着法を用いて、窒化チタン
(以下、TiNで示す)からなる第1層、炭窒化チタン
(以下、TiCNで示す)からなる第2層、および酸化
アルミニウム(以下、Al2 3 で示す)からなる第3
層、さらに必要に応じてTiNからなる第4層で構成さ
れた硬質被覆層を3〜30μmの範囲内の所定の平均層
厚で形成してなる被覆超硬切削工具が、主に合金鋼や鋳
鉄の旋削やフライス切削などに用いられていることは良
く知られるところである。
2. Description of the Related Art Conventionally, as described in, for example, JP-B-57-1585 and JP-B-59-52703, a tungsten carbide-based cemented carbide substrate as a whole, For example, a tungsten carbide-based cemented carbide substrate having a surface portion having a relatively high content of Co or the like as compared with the inside of the substrate, that is, a tungsten carbide-based cemented carbide substrate having a binder phase enriched zone on the surface portion (hereinafter, collectively referred to as a cemented carbide substrate) ), A first layer made of titanium nitride (hereinafter, shown as TiN), a second layer made of titanium carbonitride (hereinafter, shown as TiCN), A third material made of aluminum (hereinafter, referred to as Al 2 O 3 )
Coated hard cutting tool formed by forming a hard coating layer composed of a layer and, if necessary, a fourth layer made of TiN with a predetermined average layer thickness in the range of 3 to 30 μm, is mainly made of alloy steel or It is well known that it is used for turning or milling cast iron.

【0003】[0003]

【発明が解決しようとする課題】一方、近年の切削機械
のFA化はめざましく、かつ切削加工の省力化の要求と
相まって、切削工具には汎用性が求められる傾向にある
が、上記の従来被覆超硬切削工具においては、これを合
金鋼や鋳鉄などの切削に用いた場合には問題はないが、
特に切削抵抗の高い軟鋼などの切削に用いた場合、硬質
被覆層の層間密着性が十分でないために、硬質被覆層に
層間剥離やチッピングが発生し易く、これが原因で比較
的短時間で使用寿命に至るのが現状である。
On the other hand, in recent years, the use of FA in cutting machines has been remarkable, and in conjunction with the demand for labor saving in cutting work, cutting tools tend to be required to be versatile. For carbide cutting tools, there is no problem if this is used for cutting alloy steel or cast iron, etc.
Particularly when used for cutting mild steel with high cutting resistance, the interlayer adhesion of the hard coating layer is not sufficient, so that the hard coating layer is liable to delamination and chipping, which causes a relatively short service life. At present.

【0004】[0004]

【課題を解決するための手段】そこで、本発明者等は、
上述のような観点から、上記の従来被覆超硬切削工具に
着目し、これを構成する硬質被覆層の層間密着性の向上
をはかるべく研究を行なった結果、 (a) 上記の従来被覆超硬切削工具を構成する硬質被
覆層において、超硬合金基体に対する第1層のTiN層
の密着性に問題はないが、前記第1層と第2層のTiC
N層、および前記第2層と第3層のAl2 3 層、さら
に前記第3層と第4層のTiN層の層間密着性がいずれ
も低く、これが原因で層間剥離やチッピングが発生し易
くなること。 (b) 上記の従来被覆超硬切削工具を構成する硬質被
覆層において、第1層のTiN層、第2層のTiCN
層、および必要に応じて形成される第4層のTiN層は
いずれも粒状結晶組織をもち、第3層のAl2 3 層は
アルファ型結晶組織をもつこと。 (c) 上記の従来被覆超硬切削工具を構成する硬質被
覆層において、第2層のTiCN層を縦長成長結晶組織
とし、かつ第3層のAl2 3 層をカッパー型結晶を主
体とする組織(望ましくは、カッパー型結晶が50容量
%以上を占め、残りがアルファ型結晶からなる混合組
織、または実質的にカッパー型結晶からなる組織)とす
ると、この結果の硬質被覆層はいずれの層間密着性も著
しく向上したものになり、したがって切削抵抗の高い被
削材の切削にも層間剥離のチッピングの発生がなく、す
ぐれた切削性能を長期に亘って発揮すること。 (d) 上記(c)の硬質被覆層の第2層を構成する縦
長成長結晶組織を有するTiCN層を1層または2層以
上の粒状結晶組織を有するTiN層で複数層に分割す
る、すなわち前記TiN分割層の上下両面側に前記Ti
CN区分層が存在する構造をもつものにすると、特に高
送り切削や高切込み切削などの重切削での切刃の耐欠損
性が著しく向上するようになること。以上(a)〜
(d)に示される研究結果を得たのである。
Therefore, the present inventors have
From the above-mentioned viewpoint, the above-mentioned conventional coated carbide cutting tool was focused on, and a study was conducted to improve the interlayer adhesion of the hard coating layer constituting the cutting tool. In the hard coating layer constituting the cutting tool, there is no problem in the adhesion of the first TiN layer to the cemented carbide substrate, but the TiC of the first layer and the second layer
The N layer, the Al 2 O 3 layer of the second layer and the third layer, and the interlayer adhesion of the TiN layer of the third layer and the fourth layer are all low, which causes delamination or chipping. Be easy. (B) In the hard coating layer constituting the conventional coated carbide cutting tool, the first TiN layer and the second TiCN layer
Each of the layer and the fourth TiN layer formed as necessary has a granular crystal structure, and the third Al 2 O 3 layer has an alpha-type crystal structure. (C) In the hard coating layer constituting the above-mentioned conventional coated carbide cutting tool, the second TiCN layer has a vertically elongated crystal structure, and the third Al 2 O 3 layer mainly includes a copper type crystal. Assuming a structure (preferably, a mixed structure in which copper-type crystals occupy 50% by volume or more and the remainder is composed of alpha-type crystals, or a structure substantially consisting of copper-type crystals), the resulting hard coating layer has any interlayer. Adhesion is also remarkably improved. Therefore, even when cutting a work material having a high cutting resistance, chipping due to delamination does not occur, and excellent cutting performance is exhibited over a long period of time. (D) The TiCN layer having a vertically elongated crystal structure that constitutes the second layer of the hard coating layer of (c) is divided into a plurality of layers by one or more TiN layers having a granular crystal structure, that is, The Ti is formed on both the upper and lower sides of the TiN dividing layer.
When the structure having the CN division layer is present, the fracture resistance of the cutting edge is remarkably improved particularly in heavy cutting such as high feed cutting and high depth cutting. Above (a) ~
The research results shown in (d) were obtained.

【0005】この発明は、上記の研究結果にもとづいて
なされたものであって、超硬合金基体の表面に、粒状結
晶組織を有するTiNからなる第1層、同じく粒状結晶
組織を有するTiCNからなる第2層、およびアルファ
型結晶組織を有するAl2 3 からなる第3層、さらに
必要に応じて形成される粒状結晶組織を有するTiNか
らなる第4層で構成された硬質被覆層を、通常の化学蒸
着法および/または物理蒸着法を用い、3〜30μmの
範囲内の所定の平均層厚で形成してなる被覆超硬切削工
具において、上記第2層を、粒状結晶組織を有する1層
または2層以上のTiN分割層で区分された複数の縦長
成長結晶組織を有するTiCN区分層からなるものと
し、かつ第3層のAl2 3 層をカッパ型結晶を主体と
した組織とすることにより硬質被覆層の層間密着性を向
上せしめた被覆超硬切削工具に特徴を有するものであ
る。
The present invention has been made on the basis of the above-mentioned research results, and comprises a first layer of TiN having a granular crystal structure on the surface of a cemented carbide substrate, and TiCN also having a granular crystal structure. A hard coating layer composed of a second layer, a third layer made of Al 2 O 3 having an alpha-type crystal structure, and a fourth layer made of TiN having a granular crystal structure, which is formed as necessary, is usually used. In the coated cemented carbide cutting tool formed by using the chemical vapor deposition method and / or the physical vapor deposition method of 3 to have a predetermined average layer thickness within the range of 3 to 30 μm, the second layer is a single layer having a granular crystal structure. Or a TiCN partition layer having a plurality of vertically elongated crystal structures partitioned by two or more TiN partition layers, and the third Al 2 O 3 layer has a structure mainly composed of kappa-type crystals To Ri and has a characteristic to the coated cemented carbide cutting tool allowed improved interlayer adhesion of the hard coating layer.

【0006】なお、この発明の被覆超硬切削工具を構成
する硬質被覆層のうちの第2層を構成する縦長成長結晶
組織を有するTiCN区分層は、例えば特開平6−80
10号公報に記載される通り、 反応ガス組成:容量%で、TiCl4 :1〜10%、C
3 CN:0.1〜5%、N2 :0〜35%、H2 :残
り、 反応温度:850〜950℃、 雰囲気圧力:30〜200torr、 の条件で形成するのが望ましい。一方、粒状結晶組織を
有するTiCN層は、通常、 反応ガス組成:容量%で、TiCl4 :1〜5%、CH
4 :2〜7%、N2 :15〜35%、H2 :残り、 反応温度:950〜1050℃、 雰囲気圧力:30〜200torr、 の条件で形成される。また、カッパー型結晶を主体とす
る組織を有するAl2 3 層は、 反応ガス:容量%で、初期段階の1〜120分を、Al
Cl3 :1〜20%、必要に応じてHCl:1〜20%
および/またはH2 S:0.05〜5%、H2:残り、
とし、以後、AlCl3 :1〜20%、CO2 :0.5
〜30%、必要に応じてHCl:1〜20%および/ま
たはH2 S:0.05〜5%、H2 :残り、 反応温度:850〜1000℃、 雰囲気圧力:30〜200torr、 の条件で形成される。
A TiCN partition layer having a vertically elongated crystal structure, which constitutes the second layer of the hard coating layers constituting the coated cemented carbide cutting tool of the present invention, is disclosed in, for example, JP-A-6-80.
As described in Japanese Patent Publication No. 10, the reaction gas composition: volume%, TiCl 4 : 1 to 10%, C
H 3 CN: 0.1 to 5%, N 2 : 0 to 35%, H 2 : residual, reaction temperature: 850 to 950 ° C., atmospheric pressure: 30 to 200 torr. On the other hand, a TiCN layer having a granular crystal structure usually has a reaction gas composition: volume%, TiCl 4 : 1 to 5%, CH
4: 2~7%, N 2: 15~35%, H 2: remainder, reaction temperature: 950 to 1050 ° C., atmospheric pressure: 30~200Torr, is formed by the conditions. Further, the Al 2 O 3 layer having a structure mainly composed of a copper-type crystal is composed of a reaction gas: volume% and an Al phase of 1 to 120 minutes in the initial stage.
Cl 3: 1-20%, HCl if necessary: 1-20%
And / or H 2 S: 0.05~5%, H 2: remainder,
Thereafter, AlCl 3 : 1 to 20%, CO 2 : 0.5
-30%, if necessary HCl: 1-20% and / or H 2 S: 0.05-5%, H 2 : remaining, reaction temperature: 850-1000 ° C., atmospheric pressure: 30-200 torr, conditions Is formed by.

【0007】また、この発明の被覆超硬切削工具を構成
する硬質被覆層は、超硬合金基体の表面に、まず第1層
のTiN層を蒸着し、ついで第2層のTiCN区分層と
TiN分割層、および第3層のAl2 3 層、さらに必
要に応じて第4層のTiN層を順次蒸着することによっ
て形成されるが、前記第2層以降の形成に際して、前記
第1層のTiN層中に前記超硬合金基体中のC成分が拡
散固溶する場合があり、この場合の第1層は硬質被覆層
形成後TiCN層として存在することになる。
In the hard coating layer constituting the coated cemented carbide cutting tool of the present invention, the TiN layer of the first layer is first deposited on the surface of the cemented carbide substrate, and then the TiCN section layer of the second layer and the TiN layer. It is formed by sequentially depositing a dividing layer, an Al 2 O 3 layer of a third layer, and a TiN layer of a fourth layer if necessary, but when forming the second and subsequent layers, In some cases, the C component in the cemented carbide substrate may diffuse and form a solid solution in the TiN layer, and in this case, the first layer exists as the TiCN layer after the hard coating layer is formed.

【0008】さらに、上記硬質被覆層の平均層厚は3〜
30μmとするのがよく、これは、その平均層厚が3μ
m未満では所望のすぐれた耐摩耗性を確保することがで
きず、一方その平均層厚が30μmを越えると耐欠損性
が急激に低下するようになるという理由によるものであ
り、また第1層のTiN層の平均層厚は0.1〜5μ
m、第2層のTiCN区分層およびTiN分割層のそれ
は3〜20μmおよび0.1〜5μm、第3層のAl2
3 層は0.1〜15μm、さらに第4層のTiN層は
0.1〜5μmの平均層厚とするのが望ましい。
Further, the hard coating layer has an average layer thickness of 3 to 3.
Preferably, the average layer thickness is 3 μm.
If the average layer thickness is less than 30 μm, the chipping resistance will rapidly decrease, and if the average layer thickness exceeds 30 μm, the first layer will not be able to secure desired wear resistance. The average thickness of the TiN layer is 0.1 to 5 μm.
m of the second layer, TiCN partition layer and TiN partition layer are 3 to 20 μm and 0.1 to 5 μm, and the third layer of Al 2
It is desirable that the O 3 layer has an average layer thickness of 0.1 to 15 μm and the fourth TiN layer has an average layer thickness of 0.1 to 5 μm.

【0009】[0009]

【実施例】つぎに、この発明の被覆超硬切削工具を実施
例により具体的に説明する。原料粉末として、平均粒
径:3μmを有する中粒WC粉末、同5μmの粗粒WC
粉末、同1.5μmの(Ti,W)C(重量比で、以下
同じ、TiC/WC=30/70)粉末、同1.2μm
の(Ti,W)CN(TiC/TiN/WC=24/2
0/56)粉末、同1.3μmの(Ta,Nb)C(T
aC/NbC=90/10)粉末、および同1.2μm
のCo粉末を用意し、これら原料粉末を表1に示される
配合組成に配合し、ボールミルで72時間湿式混合し、
乾燥した後、ISO・CNMG120408(超硬合金
基体A〜D用)および同SEEN42AFTN1(超硬
合金基体E用)に定める形状の圧粉体にプレス成形し、
この圧粉体を同じく表1に示される条件に真空焼結する
ことにより超硬合金基体A〜Eを製造した。さらに、上
記超硬合金基体Bに対して、100torrのCH4 ガス雰
囲気中、温度:1400℃に1時間保持後、徐冷の滲炭
処理を施し、処理後、基体表面に付着するカーボンとC
oを酸およびバレル研磨で除去することにより、表面か
ら10μmの位置で最大Co含有量:15重量%、深
さ:40μmのCo富化帯域を基体表層部に形成した。
また、上記超硬合金基体AおよびDには、焼結したまま
で、表層部に表面から15μmの位置で最大Co含有
量:9重量%、深さ:20μmのCo富化帯域が形成さ
れており、残りの超硬合金基体CおよびEには、前記C
o富化帯域の形成がなく、全体的に均質な組織をもつも
のであった。さらに、表1には上記超硬合金基体A〜E
の内部硬さ(ロックウエル硬さAスケール)をそれぞれ
示した。
Next, the coated carbide cutting tool of the present invention will be described in detail with reference to examples. As the raw material powder, a medium-grain WC powder having an average particle diameter of 3 μm and a coarse-grain WC having the same particle diameter of 5 μm
Powder, 1.5 μm (Ti, W) C (weight ratio, same below, TiC / WC = 30/70) powder, 1.2 μm
(Ti, W) CN (TiC / TiN / WC = 24/2)
0/56) powder, 1.3 μm (Ta, Nb) C (T
aC / NbC = 90/10) powder and 1.2 μm
Are prepared, and these raw material powders are blended in the composition shown in Table 1, and wet-mixed for 72 hours by a ball mill.
After being dried, it is press-molded into a green compact having a shape defined by ISO / CNMG120408 (for cemented carbide base bodies A to D) and SEEN42AFTN1 (for cemented carbide base body E),
Cemented carbide base bodies A to E were manufactured by vacuum-sintering the green compact under the conditions shown in Table 1. Further, the cemented carbide substrate B is kept in a 100 torr CH 4 gas atmosphere at a temperature of 1400 ° C. for 1 hour, and then subjected to a slow cooling carburizing treatment. After the treatment, carbon and carbon adhering to the substrate surface are removed.
By removing o by acid and barrel polishing, a Co-enriched zone having a maximum Co content of 15% by weight and a depth of 40 μm was formed at a position 10 μm from the surface in the surface layer portion of the substrate.
In the cemented carbide substrates A and D, a Co-enriched zone having a maximum Co content of 9% by weight and a depth of 20 μm was formed on the surface layer at a position 15 μm from the surface while being sintered. The remaining cemented carbide substrates C and E have the above C
o There was no formation of enriched zones, and there was an overall homogeneous structure. Further, Table 1 shows that the cemented carbide substrates A to E
Of each sample (Rockwell hardness A scale).

【0010】ついで、これらの超硬合金基体A〜Eの表
面に、ホーニングを施した状態で、通常の化学蒸着装置
を用い、表2に示される条件で、表3〜7に示される組
成および結晶組織、さらに平均層厚の硬質被覆層を形成
することにより本発明被覆超硬切削工具1〜7および従
来被覆超硬切削工具1〜7をそれぞれ製造した。つぎ
に、上記本発明被覆超硬切削工具1〜5および従来被覆
超硬切削工具1〜5について、 被削材:軟鋼の丸棒、 切削速度:200m/min.、 送り:0.40mm/rev.、 切込み:2mm、 切削時間:30min.、 の条件での軟鋼の高送り連続切削試験、および、 被削材:軟鋼の丸棒、 切削速度:200m/min.、 送り:0.25mm/rev.、 切込み:4mm、 切削時間:40min.、 の条件での軟鋼の高切込み連続切削試験を行ない、いず
れの切削試験でも切刃の逃げ面摩耗幅を測定した。これ
らの測定結果を表5,7に示した。また、上記本発明被
覆超硬切削工具6,7および従来被覆超硬切削工具6,
7については、 被削材:軟鋼の角材、 切削速度:250m/min.、 送り:0.35mm/刃、 切込み:3mm、 切削時間:40min.、 の条件で軟鋼のフライス切削を行ない、切刃の逃げ面摩
耗幅を測定した。この測定結果も表5,7に示した。
Then, the surfaces of these cemented carbide substrates A to E were subjected to honing, using a conventional chemical vapor deposition apparatus, under the conditions shown in Table 2 under the conditions shown in Table 2 and the compositions shown in Tables 3 to 7 The coated carbide cutting tools 1 to 7 of the present invention and the coated carbide cutting tools 1 to 7 of the related art were manufactured by forming a crystal structure and a hard coating layer having an average layer thickness. Next, regarding the above-mentioned coated carbide cutting tools 1 to 5 of the present invention and conventional coated carbide cutting tools 1 to 5, work material: round bar of mild steel, cutting speed: 200 m / min., Feed: 0.40 mm / rev ., Depth of cut: 2 mm, cutting time: 30 min., High-feed continuous cutting test of mild steel, and work material: round bar of mild steel, cutting speed: 200 m / min., Feed: 0.25 mm / rev ., Depth of cut: 4 mm, Cutting time: 40 min., A high-cut continuous cutting test of mild steel was performed, and the flank wear width of the cutting edge was measured in each cutting test. The results of these measurements are shown in Tables 5 and 7. Further, the coated carbide cutting tools 6, 7 of the present invention and the conventional coated carbide cutting tools 6, 7 described above.
For No. 7, mild steel milling is performed under the following conditions: Work material: Mild steel square bar, Cutting speed: 250 m / min., Feed: 0.35 mm / blade, Depth of cut: 3 mm, Cutting time: 40 min. The flank wear width was measured. The measurement results are also shown in Tables 5 and 7.

【0011】[0011]

【表1】 [Table 1]

【0012】[0012]

【表2】 [Table 2]

【0013】[0013]

【表3】 [Table 3]

【0014】[0014]

【表4】 [Table 4]

【0015】[0015]

【表5】 [Table 5]

【0016】[0016]

【表6】 [Table 6]

【0017】[0017]

【表7】 [Table 7]

【0018】[0018]

【発明の効果】表3〜7に示される結果から、本発明被
覆超硬切削工具1〜7は、いずれも切削抵抗の高い軟鋼
の切削にもかかわらず、硬質被覆層に層間剥離やチッピ
ングの発生なく、すぐれた耐摩耗性を示すのに対して、
従来被覆超硬切削工具1〜7は、硬質被覆層における層
間密着性が不十分なために、軟鋼の切削では層間剥離や
チッピングが発生し、比較的短時間で使用寿命に至るこ
とが明らかである。上述のように、この発明の被覆超硬
切削工具は、これを構成する硬質被覆層がすぐれた層間
密着性を有するので、合金鋼や鋳鉄などの切削は勿論の
こと、切削抵抗の高い軟鋼などの切削に用いた場合にも
長期に亘ってすぐれた切削性能を発揮するのである。
From the results shown in Tables 3 to 7, the coated carbide cutting tools 1 to 7 of the present invention are not susceptible to delamination or chipping of the hard coating layer despite the cutting of mild steel having high cutting resistance. While it does not occur and shows excellent wear resistance,
Conventionally, the coated carbide cutting tools 1 to 7 clearly show that the interlayer adhesion in the hard coating layer is insufficient, and delamination and chipping occur in the cutting of mild steel, resulting in a relatively short service life. is there. As described above, the coated cemented carbide cutting tool according to the present invention has a hard coating layer having excellent interlayer adhesion, so that it can cut not only alloy steel and cast iron, but also mild steel having a high cutting resistance. Even when used for cutting, excellent cutting performance is exhibited over a long period of time.

Claims (2)

【特許請求の範囲】[Claims] 【請求項1】 全体的に均質な炭化タングステン基超硬
合金基体、または表層部に結合相富化帯域を有する炭化
タングステン基超硬合金基体の表面に、粒状結晶組織を
有する窒化チタンからなる第1層、同じく粒状結晶組織
を有する炭窒化チタンからなる第2層、およびアルファ
型結晶組織を有する酸化アルミニウムからなる第3層で
構成された硬質被覆層を3〜30μmの範囲内の所定の
平均層厚で形成してなる表面被覆炭化タングステン基超
硬合金製切削工具において、 上記第2層を、粒状結晶組織を有する1層または2層以
上の窒化チタン分割層で区分された複数の縦長成長結晶
組織を有する炭窒化チタン区分層からなるものとし、か
つ上記第3層の酸化アルミニウム層をカッパー型結晶を
主体とした組織とすることを特徴とする硬質被覆層がす
ぐれた層間密着性を有する表面被覆炭化タングステン基
超硬合金製切削工具。
1. A titanium carbide-based cemented carbide substrate that is wholly homogeneous, or a titanium carbide-based cemented carbide substrate that has a binder phase enriched zone in the surface layer and is made of titanium nitride having a granular crystal structure. A hard coating layer composed of one layer, a second layer made of titanium carbonitride also having a granular crystal structure, and a third layer made of aluminum oxide having an alpha type crystal structure was provided with a predetermined average value within a range of 3 to 30 μm. In a surface-coated tungsten carbide-based cemented carbide cutting tool formed to have a layer thickness, a plurality of longitudinal growths in which the second layer is divided into one or two or more titanium nitride dividing layers having a granular crystal structure. A hard coating characterized by comprising a titanium carbonitride partition layer having a crystalline structure, and the aluminum oxide layer of the third layer having a structure mainly composed of copper crystals. A surface-coated tungsten carbide-based cemented carbide cutting tool with excellent interlayer adhesion.
【請求項2】 全体的に均質な炭化タングステン基超硬
合金基体、または表層部に結合相富化帯域を有する炭化
タングステン基超硬合金基体の表面に、粒状結晶組織を
有する窒化チタンからなる第1層、同じく粒状結晶組織
を有する炭窒化チタンからなる第2層、アルファ型結晶
組織を有する酸化アルミニウムからなる第3層、および
粒状結晶組織を有する窒化チタンからなる第4層で構成
された硬質被覆層を3〜30μmの範囲内の所定の平均
層厚で形成してなる表面被覆炭化タングステン基超硬合
金製切削工具において、 上記第2層を、粒状結晶組織を有する1層または2層以
上の窒化チタン分割層で区分された複数の縦長成長結晶
組織を有する炭窒化チタン区分層からなるものとし、か
つ上記第3層の酸化アルミニウム層をカッパー型結晶を
主体とした組織とすることを特徴とする硬質被覆層がす
ぐれた層間密着性を有する表面被覆炭化タングステン基
超硬合金製切削工具。
2. A titanium carbide-based cemented carbide substrate that is wholly homogeneous, or a titanium carbide-based cemented carbide substrate that has a binder phase-enriched zone in the surface layer. Hard composed of one layer, a second layer made of titanium carbonitride also having a granular crystal structure, a third layer made of aluminum oxide having an alpha type crystal structure, and a fourth layer made of titanium nitride having a granular crystal structure. A surface-coated tungsten carbide-based cemented carbide cutting tool comprising a coating layer having a predetermined average layer thickness within the range of 3 to 30 μm, wherein the second layer is one layer or two or more layers having a granular crystal structure. Of titanium nitride layers having a plurality of vertically elongated crystal structures divided by the titanium nitride dividing layer, and the aluminum oxide layer of the third layer is copper-type bonded. A surface-coated tungsten carbide-based cemented carbide cutting tool having an excellent interlaminar adhesion with a hard coating layer, which has a structure mainly composed of crystals.
JP15684294A 1994-05-31 1994-06-15 Surface-coated tungsten carbide-based cemented carbide cutting tool with excellent interlayer adhesion and fracture resistance with a hard coating layer Expired - Lifetime JP3230372B2 (en)

Priority Applications (8)

Application Number Priority Date Filing Date Title
JP15684294A JP3230372B2 (en) 1994-06-15 1994-06-15 Surface-coated tungsten carbide-based cemented carbide cutting tool with excellent interlayer adhesion and fracture resistance with a hard coating layer
US08/398,533 US5920760A (en) 1994-05-31 1995-03-06 Coated hard alloy blade member
DE69518039T DE69518039T2 (en) 1994-05-31 1995-03-08 Coated carbide alloy blade
EP95103339A EP0685572B1 (en) 1994-05-31 1995-03-08 Coated hard-alloy blade member
KR1019950006333A KR0163654B1 (en) 1994-05-31 1995-03-24 Coated hard alloy blade member
CN95103640A CN1070540C (en) 1994-05-31 1995-04-06 Coated hard alloy blade member
TW084105472A TW308609B (en) 1994-05-31 1995-05-30
US09/210,460 US6093479A (en) 1994-05-31 1998-12-14 Coated hard alloy blade member

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP15684294A JP3230372B2 (en) 1994-06-15 1994-06-15 Surface-coated tungsten carbide-based cemented carbide cutting tool with excellent interlayer adhesion and fracture resistance with a hard coating layer

Publications (2)

Publication Number Publication Date
JPH081408A true JPH081408A (en) 1996-01-09
JP3230372B2 JP3230372B2 (en) 2001-11-19

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Country Link
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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7021056B2 (en) 2001-12-03 2006-04-04 Tokyo Electric Power Company Exhaust heat recovery system
US7172807B2 (en) 2003-02-17 2007-02-06 Kyocera Corporation Surface-coated member
JP2013166226A (en) * 2012-02-16 2013-08-29 Mitsubishi Materials Corp Surface coated cutting tool that demonstrates chipping resistance with excellent hard coating layer
CN106536102A (en) * 2014-05-30 2017-03-22 三菱综合材料株式会社 Surface-coated cutting tool

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7021056B2 (en) 2001-12-03 2006-04-04 Tokyo Electric Power Company Exhaust heat recovery system
US7172807B2 (en) 2003-02-17 2007-02-06 Kyocera Corporation Surface-coated member
JP2013166226A (en) * 2012-02-16 2013-08-29 Mitsubishi Materials Corp Surface coated cutting tool that demonstrates chipping resistance with excellent hard coating layer
CN106536102A (en) * 2014-05-30 2017-03-22 三菱综合材料株式会社 Surface-coated cutting tool
US10456844B2 (en) 2014-05-30 2019-10-29 Mitsubishi Materials Corporation Surface-coated cutting tool

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