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Microstructural evaluation of high oxidation resistant CrAlSiN hard coating at elevated temperature in air atmosphere
Conference paper   Peer reviewed

Microstructural evaluation of high oxidation resistant CrAlSiN hard coating at elevated temperature in air atmosphere

Shih-Kang Tien, Chih-Hsiung Lin, Yan-Zuo Tsai and Jenq-Gong Duh
Key Engineering Materials, Vol.373-374, pp.446-451
2008

Abstract

AES CrAlSiN Hard coating Oxidation resistance TEM
CrAlSiN hard coatings were fabricated on the Si substrate from metallurgical Cr 0.45 Al 0.45 Si 0.10 alloy target by reactive r.f. magnetron sputtering. The oxidation resistance of CrAlSiN coatings was investigated after annealing at temperatures between 900 and 1100°C for 1 hr in air. The phase identification and microstructure of CrAlSiN coatings after heat treatment were analyzed by X-ray diffraction (XRD). The hardness of CrAlSiN coating after heat treatment at 900°C for Ihr in air is slightly decreased from 30.2GPa to 28.3±1.3GPa, which was caused by the thin oxide formation on the surface of the film. The microstructure of CrAlSiN coating after heat treatment at 1000°C from 1 hr analyzed by TEM revealed two types of layer feature, including the nanocrystalline grain embedded in the Al-riched amorphous layer and reaction interface with relative high content of Si.

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