Mechanical Properties and Oxidation Resistance of Ti₁−xWxN Coatings
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- KITAMIKA Yudai
- Graduate School of Science & Engineering, Saga University
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- SHINGU Hayato
- Graduate School of Science & Engineering, Saga University
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- TANIGAWA Shuhei
- Graduate School of Science & Engineering, Saga University
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- HASEGAWA Hiroyuki
- Graduate School of Science & Engineering, Saga University
書誌事項
- タイトル別名
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- Mechanical Properties and Oxidation Resistance of Ti<sub>1-<i>X</i></sub>W<sub><i>X</i></sub>N Coatings
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説明
<p>Titanium-based hard coatings have been developed by adding different metals to TiN in order to obtain mechanical, tribological, and thermal properties that are superior to those of TiN. In this study, Ti1-XWXN films were synthesized from Ti1-X-WX alloy targets(X=0, 0.25, 0.35, 0.5, 0.75, and 1.0)by radio-frequency magnetron sputtering. X-ray diffraction analysis indicated that all of the prepared films were solid solutions with a NaCl-type structure, and their interplanar spacing changed as the W content(X)was varied. The microhardness gradually increased from 21 GPa(at X=0)to 28 GPa(at X=0.66)and then decreased to 22 GPa(at X=1.0). The average coefficient of friction varied between 0.4 and 0.8, and the wear track had a depth below 0.15 μm in the films with X=0-0.66. The exothermic peak of differential thermal analysis shifted from 814 ℃(at X=0)to 846 ℃(at X=0.34)during dynamic oxidation. Correspondingly, the film with X=0.34 showed the smallest mass gain during isothermal oxidation at 600-700 ℃, and its resistance against oxidation was better than that exhibited by TiN(at X=0). The surface properties in terms of microstructure, microhardness, tribological properties, and oxidation resistance were also characterized as functions of the W content.</p>
収録刊行物
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- 表面技術
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表面技術 69 (11), 517-520, 2018-11-01
一般社団法人 表面技術協会
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詳細情報 詳細情報について
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- CRID
- 1390564238088346624
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- NII論文ID
- 130007641053
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- NII書誌ID
- AN1005202X
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- ISSN
- 18843409
- 09151869
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- NDL書誌ID
- 029350387
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- 本文言語コード
- en
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