Research on Stress Intensity Factor of the Interface Crack in the Hard Cladding Material Structure under Mechanical Impact Load

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Abstract:

In the paper, the crack parallel to and lying on the interface in the hard cladding material structure is regarded as the research object, theoretical model of the stress intensity factor (SIF) of the interface crack under the mechanical impact load is built. Based on it, the SIF of the crack parallel to and lying on the interface in the cermet cladding material structure under the mechanical impact load is investigated by using finite element analysis method. The influences of the cladding thickness ratio and mechanical impact stress amplitude on the interface SIF are investigated. The research results show that, at a certain moment, the interface SIFs decrease with increasing cladding thickness ratio when the mechanical impact stress amplitude is a constant and increase as the mechanical impact stress amplitude increases when the cladding thickness ratio is a constant.

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Key Engineering Materials (Volumes 589-590)

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384-389

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October 2013

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] P. A. Mataga, L. B. Freund and J. W. Hutchinson: Solids. Vol. 48 (1987), pp.985-1005.

Google Scholar

[2] Liviu Marsavina, Tomasz Sadowski and Nicolae Faur: Journal of Mechanical Science and Technology. Vol. 25 (2011), pp.309-315.

Google Scholar

[3] Gupta Sachin, Abotula Sandeep, Chalivendra Vijaya, Shukla Arun and Chona Ravi: Acta Mech. Vol. 223 (2012), pp.1485-1506.

DOI: 10.1007/s00707-012-0661-9

Google Scholar

[4] Khandelwal R. and J.M.C. Kishen: Journal of Applied Mechanics, Transactions ASME. Vol. 76 (2009), pp.1-10.

Google Scholar

[5] Yang Junru, Li Zhaoqian, Huang Chuanzhen, Zhang Yuekan and Qian Kangkang: Key Engineering Materials. Vol. 375-376 (2008), pp.118-122.

Google Scholar

[6] Junru Yang, Gongling Chen and LiLi Zhang: Advanced Materials Research. Vol. 308-310 (2011) pp.224-227.

Google Scholar

[7] Cheng Jin and Zhao Shushan: Fracture Mechanics (Science Press, Beijing 2006).

Google Scholar

[8] Fan Tianyou: Theory and Application of Fracture dynamic Mechanical(Beijing Institute of Technology Press, Beijing 2006).

Google Scholar

[9] Dundurs J.: Mathematical Theory of Dislocation(American Society of Mechanical Engineer, Now York: 1969).

Google Scholar

[10] Yang Junru: Study on Design Theory and Reliability of Cermet Hard Cladding Parts( Shandong University Doctoral Dissertation, 2006).

Google Scholar

[11] Edit Committee of Handbook of Property Data of Materials for Mechanical Engineering: Handbook of Property Data of Materials for Mechanical Engineering(China Machine Press, Beijing 1995).

Google Scholar

[12] Zhang Chaohui: ANSYS 12. 0 Resolving Example on Structure Analyses Engineering Application (China Machine Press, Beijing 2010).

Google Scholar