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Acta Metall Sin  1990, Vol. 26 Issue (3): 61-65    DOI:
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EFFECT OF DUCTILE-BRITTLE TRANSITION TEMPERATURE OF Al-Si COATING ON FATIGUE PROPERTIES OF Ni-BASE SUPERALLOYS
ZHANG Detang Beijing Institute of Aeronautical Materials
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ZHANG Detang Beijing Institute of Aeronautical Materials. EFFECT OF DUCTILE-BRITTLE TRANSITION TEMPERATURE OF Al-Si COATING ON FATIGUE PROPERTIES OF Ni-BASE SUPERALLOYS. Acta Metall Sin, 1990, 26(3): 61-65.

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Abstract  The effect of Al content on the ductile-brittle transition temperatureof Al-Si coating and the effect of fracture behaviour of the Al-Si coating on thefatigue properties of Ni-base superalloys have been investigated to propose the the-oretical basis of search for an optimum of mechanical properties of the high tem-perature coating on Ni-base alloys.
Key words:  Al-Si coating      Ni-base superalloy      ductile-brittle transition temperature      fatigue     
Received:  18 March 1990     
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1 Wells C H, Sullivan C P. ASM Trans Q, 1968; 61: 149
2 Goward G W. J Met, 1970; 22 (10) : 31
3 Holmes D R, Rahmel A. Materials and Coating to Resist High Temperature Corrosion, London: Applied Science 1978: 233
4 Vogel D J. Naval Postgradute School, Thesis, 1985
5 Paskiet G F, Boone D H. Sullivan C P. J Iust Met, 1972; 100: 58
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