首页> 外国专利> Surface-coated cubic boron nitride-based sintered material made cutting tools chipping resistance the hard coating layer excellent high-speed intermittent cutting of high hardness steel and exert a heat-resistant plastic deformation

Surface-coated cubic boron nitride-based sintered material made cutting tools chipping resistance the hard coating layer excellent high-speed intermittent cutting of high hardness steel and exert a heat-resistant plastic deformation

机译:表面被覆的立方氮化硼基烧结材料制成的切削工具具有抗崩刃性,硬涂层优异的高速间歇性切削高硬度钢并产生耐热塑性变形

摘要

PROBLEM TO BE SOLVED: To provide a cutting tool made of a surface coated cubic boron nitride sintered material with a hard coating layer exerting excellent chipping resistance and thermoplastic deformation resistance in high-speed intermittent cutting of high hardness steel.;SOLUTION: The cutting tool is constituted by forming the hard coating layer composed of the following upper and lower layers (a) and (b) on the surface of a tool body comprising a cubic boron nitride sintered material: (a) as the lower layer, a compound nitride layer of Ti, Al, and Si having an average layer thickness of 0.5-10 μm and satisfying a composition formula : [Ti1-(X+Z)AlXSiZ]N (wherein X shows 0.40 to 0.60 and Z shows 0.01 to 0.10 by atomic ratio), and (b) as the upper layer, a heat-transformed α-type Al2O3 layer formed by transforming a crystal structure of an Al2O3 layer having a κ-type or θ-type crystal structure into an α-type crystal structure by executing heat treatment on the surface of the Al2O3 layer, which has the κ-type or θ-type crystal structure and an average layer thickness of 0.5-10 μm in a state of being formed by vapor deposition, after a titanium oxide layer having an average layer thickness of 0.05-1 μm is formed on the surface of the Al2O3 layer by vapor deposition.;COPYRIGHT: (C)2006,JPO&NCIPI
机译:解决的问题:提供一种切削工具,该切削工具由表面涂层的立方氮化硼烧结材料制成,并具有坚硬的涂层,在高硬度钢的高速间歇切削中具有出色的抗崩裂性和抗热塑性变形性。通过在由立方氮化硼烧结材料制成的工具主体的表面上形成由以下上,下层(a)和(b)组成的硬涂层构成:(a)作为下层的是复合氮化物层Ti,Al和Si的平均层厚度为0.5-10μm且满足组成公式的元素:[Ti 1-(X + Z) Al X Si Z ] N(其中X表示原子比为0.40至0.60,Z表示0.01至0.10),并且(b)作为上层,是热转化的α型Al 2 O 3 层是通过转换具有κ型或&θ的Al 2 O 3 层的晶体结构而形成的;型晶体通过对具有κ型或θ型的Al 2 O 3 层的表面进行热处理,将其组织化为α型晶体结构在Al 3 表面上形成平均层厚度为0.05-1μm的氧化钛层之后,通过气相沉积形成的晶体结构和平均层厚度为0.5-10μm。通过气相沉积法形成Sub> 2 O 3 层;版权所有:(C)2006,JPO&NCIPI

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