Effect of Cryogenic Treatment on Improving the Fracture Toughness of TiN Coated Cemented Carbide

Author:

Nie Chao Yin1,Deng Ya1,Ding Ying2,Li Ning1,Zhou Xiao Gang1,Wei Li Dan1

Affiliation:

1. Southwest University

2. Guangdong University of Petrochemical Technology,

Abstract

The 2μm thick TiN coatings were deposited by arc ion plating on YW2 cemented carbide substrate, and the system of TiN/YW2 was treated with cryogenic treatment at -196°C for 30 hours. The change of the Rockwell indentation's morphology of the system (the form and density of cracks, the spalling state of the coating)before and after the treatment were investigated by means of the Rockwell hardness tester. With metallurgical microscope and SEM, the change of the microstructure of the substrate and its influence on the fracture toughness of the system were investigated. The results show that after the treatment, the density of the radiated cracks in the substrate were obviously reduced, but the main cracks hadn’t any change, the spalling of the TiN coating along the indentation was lightened. After the cryogenic treatment the dispersed granular γ phase obviously decreased or even disappeared, the pores became smaller and the microstructure of YW2 became more compact,and the microcracks were merged during the cryogenic treatment. These are beneficial to improve the fracture toughness of YW2 substrate and the coating/substrate system.

Publisher

Trans Tech Publications, Ltd.

Subject

General Engineering

Reference22 articles.

1. S. Harish, A. Bensely, D. Mohan Lal, et al. Journal of Materials Progressing Technology 2009, 209: 3351-3357.

2. A. Bensely, A. Prabhakaran, D. Mohan Lal, et al. Cryogenics, 2006, 45: 747-754.

3. Wang Qiucheng, Zhang Zhaoming, Wang Lu, Luo Liqiang. Cryogenics, 2008, 6: 24-27. (in Chinese).

4. DUAN Chun-zheng, WANG Min-jie, CAI Yu-jun. Materials for Mechanical Engineering, 2008, 32(5): 23-25. (in Chinese).

5. A. Bensely, S. Venkatesh, D. Mohan Lal. et al. Materials Science and Engineering A 2008, 479: 229-235.

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