Surface-coated cutting tool and method of producing the same

US10953473B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10953473-B2
Application numberUS-201616091612-A
CountryUS
Kind codeB2
Filing dateJun 22, 2016
Priority dateApr 14, 2016
Publication dateMar 23, 2021
Grant dateMar 23, 2021

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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Abstract

Official abstract text for this publication.

A surface-coated cutting tool includes a base material and a coating. A hard layer in the coating includes a plurality of crystal grains having a sodium chloride-type crystal structure. The crystal grain has a layered structure in which a first layer composed of nitride or carbonitride of Al x Ti 1-x and a second layer composed of nitride or carbonitride of Al y Ti 1-y are alternately stacked. The total thickness of the first layer and the second layer adjacent to each other is 3 nm or more and 40 nm or less. An angle of intersection between a normal direction to (111) plane that is a crystal plane of the crystal grain and the normal direction to the surface of the base material, an area ratio of the crystal grains having the angle of intersection of 0 degree or more to less than 10 degrees is 40% or more.

First claim

Opening claim text (preview).

The invention claimed is: 1. A surface-coated cutting tool comprising a base material and a coating formed on said base material, said coating including a hard layer, said hard layer including a plurality of crystal grains having a sodium chloride-type crystal structure, wherein said crystal grain has a layered structure in which a first layer composed of nitride or carbonitride of Al x Ti 1-x (where 0.6≤x<1) and a second layer composed of nitride or carbonitride of Al y Ti 1-y (where 0.45≤y<0.6) are alternately stacked, a total thickness of said first layer and said second layer adjacent to each other is 3 nm or more and 40 nm or less, and when crystal orientation of each of said plurality of crystal grains is analyzed using an electron backscatter diffraction system for a plane of said hard layer that is parallel to a surface of said base material to measure an angle of intersection between a normal direction to (111) plane that is a crystal plane of said crystal grain and a normal direction to the surface of said base material, an area ratio of said crystal grains having said angle of intersection of 0 degree or more to less than 10 degrees is 40% or more, wherein boundaries of said crystal grains include CSL boundaries and general boundaries, and the length of Σ3 grain boundaries of said CSL boundaries is less than 50% of the length of Σ3-29 grain boundaries that is a sum of respective lengths of Σ3 grain boundaries, Σ5 grain boundaries, Σ7 grain boundaries, Σ9 grain boundaries, Σ11 grain boundaries, Σ13 grain boundaries, Σ15 grain boundaries, Σ17 grain boundaries, Σ19 grain boundaries, Σ21 grain boundaries, Σ23 grain boundaries, Σ25 grain boundaries, Σ27 grain boundaries, and Σ29 grain boundaries included in said CSL boundaries, and 70% or more of said crystal grain has a grain diameter of 0.5 μm or less. 2. The surface-coated cutting tool according to claim 1 , wherein said hard layer has a thickness of 1 μm or more and 15 μm or less. 3. The surface-coated cutting tool according to claim 1 , wherein said hard layer has an indentation hardness by nanoindentation of 30 GPa or more and 40 GPa or less. 4. The surface-coated cutting tool according to claim 1 , wherein said hard layer has an absolute value of compression residual stress of 0.5 GPa or more and 3.0 GPa or less. 5. The surface-coated cutting tool according to claim 1 , wherein a largest value of a difference between said x and said y is 0.26 or more and 0.5 or less. 6. A method of producing the surface-coated cutting tool of claim 1 , the method comprising: a first step of preparing said base material; and a second step of forming said hard layer by chemical vapor deposition, said second step including a step of growing said crystal grains while modulating a flow rate of both or one of AlCl 3 gas and TiCl 4 gas.

Assignees

Inventors

Classifications

  • C23C16/34Primary

    Nitrides {(C23C16/303 takes precedence)} · CPC title

  • on hard metal substrates · CPC title

  • characterized by the composition of the alternating layers · CPC title

  • coatings specially adapted for cutting tools or wear applications · CPC title

  • including a refractory ceramic layer, e.g. refractory metal oxides, ZrO2, rare earth oxides · CPC title

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What does patent US10953473B2 cover?
A surface-coated cutting tool includes a base material and a coating. A hard layer in the coating includes a plurality of crystal grains having a sodium chloride-type crystal structure. The crystal grain has a layered structure in which a first layer composed of nitride or carbonitride of Al x Ti 1-x and a second layer composed of nitride or carbonitride of Al y Ti 1-y are alternately stacked…
Who is the assignee on this patent?
Sumitomo Electric Hardmetal Corp
What technology area does this patent fall under?
Primary CPC classification C23C16/34. Mapped technology areas include Chemistry & Metallurgy.
When was this patent published?
Publication date Tue Mar 23 2021 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).