PSI - Issue 28
Evangelia Nektaria Palkanoglou et al. / Procedia Structural Integrity 28 (2020) 1286–1294 E. Palkanoglou et al./ Structural Integrity Procedia 00 (2019) 000–000
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McLaughlin, P.V., Frishmuth, R.E., 1976. Failure Analysis of Cast Irons under General Three Dimensions Stress State. Journal of Engineering Materials and Technology, 69–75. Nicoletto, G., Collini, L., Konečná, R., Bujnová, P., 2009. Strain Heterogeneity and Damage Localization in Nodular Cast Iron Microstructures. Materials Science Forum 482, 255–58. Qiu, Y., Pang, J.C., Li, S.X., Yang, E.N., Fu, W.O., Liang, M.X., Zhang, Z.F. 2016. Influence of Thermal Exposure on Microstructure Evolution and Tensile Fracture Behaviors of Compacted Graphite Iron. Materials Science and Engineering A 664, 75-85. Qiu, Y., Pang, J.C., Yang, E.N., Li, S. X., Zhang, Z.F., 2016. Transition of Tensile Strength and Damaging Mechanisms of Compacted Graphite Iron with Temperature. Materials Science and Engineering A 677, 290-301. Seldin, E. J. 1966. Stress-Strain Properties of Polycrystalline Graphites in Tension and Compression at Room Temperature. Carbon 4, 177–91. Zhang, Y.Y., Pang J.C., Shen R.L., Qui, Y., Li, S.X., Zhang Z.F., 2018. Investigation on Tensile Deformation Behavior of Compacted Graphite Iron Based on Cohesive Damage Model. Materials Science and Engineering A 713, 260-68.
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