IP Library Granted Patent US 10,076,789
Granted Patent B2
US 10,076,789 · App. 15/121,305 · Granted Sep 18, 2018

Surface-coated titanium carbonitride-based cermet cutting tool having excellent chipping resistance

Inventors: Makoto Igarashi (Naka, JP); Akihiro Murakami (Naka, JP)
Assignee: MITSUBISHI MATERIALS CORPORATION
B23B27/148C22C29/04C23C16/0281C23C16/30C23C16/32C23C16/34C23C16/36C23C16/44C23C28/321C23C28/34C23C28/341C23C28/347C23C28/3455B22F2005/001B23B2222/16B23B2224/28B23B2224/32B23B2224/36B23B2228/04B23B2228/105
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Quick Facts
Patent No.
US 10,076,789
App. No.
15/121,305
Granted
Sep 18, 2018
Kind
B2
Abstract

A surface-coated titanium carbonitride-based cermet cutting tool is a surface-coated TiCN-based cermet cutting tool in which a Ti compound layer that is a hard coating layer is deposited as a first layer on the surface of a TiCN-based cermet body containing W and Mo, and a Mo-enriched layer having an average thickness of 0.5 to 10 nm is formed at an interface between a TiCN phase of the body and the hard coating layer.

Claims (14)

1. A surface-coated TiCN-based cermet cutting tool, comprising:

a body made of a TiCN-based cermet containing a TiCN phase as a hard phase component and containing 1 to 10 at % of each of W and Mo; and

a hard coating layer which is a first layer deposited on a surface of the body made of the TiCN-based cermet and is formed of any of a Ti carbide, a Ti nitride, a Ti carbonitride, a Ti oxycarbide, and a Ti oxycarbonitride,

wherein a Mo-enriched layer having an average thickness of 0.5 to 10 nm is formed at an interface between the TiCN phase of the body and the hard coating layer.

2. The surface-coated TiCN-based cermet cutting tool according to claim 1 ,

wherein, in a case where the interface between the TiCN phase of the body and the hard coating layer is observed in a longitudinal section of the surface-coated TiCN-based cermet cutting tool, the Mo-enriched layer is formed at an interface having a length of 60% or more of that of the interface between the TiCN phase of the body and the hard coating layer.

3. The surface-coated TiCN-based cermet cutting tool according to claim 1 ,

wherein, in addition to the Mo-enriched layer, a W-enriched layer having an average thickness of 0.5 to 10 nm is formed at the interface between the TiCN phase of the body and the hard coating layer.

4. The surface-coated TiCN-based cermet cutting tool according to claim 3 ,

wherein, in a case where the interface between the TiCN phase of the body and the hard coating layer is observed in the longitudinal section of the surface-coated TiCN-based cermet cutting tool, the W-enriched layer is formed at an interface having a length of 60% or more of that of the interface between the TiCN phase of the body and the hard coating layer.

5. The surface-coated TiCN-based cermet cutting tool according to claim 2 ,

wherein, in addition to the Mo-enriched layer, a W-enriched layer having an average thickness of 0.5 to 10 nm is formed at the interface between the TiCN phase of the body and the hard coating layer.

6. The surface-coated TiCN-based cermet cutting tool according to claim 5 ,

wherein, in a case where the interface between the TiCN phase of the body and the hard coating layer is observed in the longitudinal section of the surface-coated TiCN-based cermet cutting tool, the W-enriched layer is formed at an interface having a length of 60% or more of that of the interface between the TiCN phase of the body and the hard coating layer.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 24, 2016
From: IGARASHI, MAKOTO; MURAKAMI, AKIHIRO
To: MITSUBISHI MATERIALS CORPORATION
Reel/Frame 039530/0142 →
Priority Claims (2)
JP 2014-035096 · Feb 26, 2014 · national
JP 2015-031363 · Feb 20, 2015 · national
Continuity (1)
Related Publication 20170008093A1 · Jan 12, 2017