Influences of crystal orientations and grain boundary on crack propagation behaviour at room temperature in a polycrystalline Ni-base superalloy

Author:

HIGAKI Mana1,SAKAGUCHI Motoki1,MATSUNAMI Masafumi1,KANEKO Hideaki2,KARATO Takanori2,SUZUKI Kenta2,INOUE Hirotsugu1

Affiliation:

1. Department of Mechanical Engineering, Tokyo Institute of Technology

2. Mitsubishi Heavy Industries, ltd.

Publisher

Japan Society of Mechanical Engineers

Reference25 articles.

1. ASTM E647-08, Standard test method for measurement of fatigue crack growth rates (2010), pp.669-713.

2. Castelluccio, G.M. and McDowell, D.L., A mesoscale approach for growth of 3D microstructurally small fatigue cracks in polycrystals, International Journal of Damage Mechanics, Vol.23, No.6 (2014), pp.791-818.

3. Castelluccio, G.M., Musinski, W.D. and McDowell, D.L., Recent developments in assessing microstructure-sensitive early stage fatigue of polycrystals, Current Opinion in Solid State and Materials Science, Vol.18, No.4 (2014), pp.180-187.

4. Dugdale, D.S., Yielding of steel sheets containing slits, Journal of the Mechanics and Physics of Solids, Vol.8, No.2 (1960), pp.100-104.

5. Henderson, M.B. and Martins, J.W., The influence of crystal orientation on high temperature fatigue crack growth Ni-based single crystal superalloy, Acta Metallurgica, Vol.44, No.1 (1996), pp.111-126.

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