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Effect of shrinkage porosity on mechanical properties of ferritic ductile iron 被引量:3

Effect of shrinkage porosity on mechanical properties of ferritic ductile iron
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摘要 Casting defects could largely affect the mechanical properties of casting products. A number of test pieces made of ductile iron (EN-GJS-400-18-LT) with different levels of shrinkage porosity were prepared and then tensile and fatigue tests were performed to investigate the impact of shrinkage porosity on their mechanical properties. The results showed that the tensile strength decreases linearly with increasing of the shrinkage porosity. The tensile elongation decreases sharply with the increase of the shrinkage porosity mainly due to the non-uniform plastic deformation. The fatigue life also dramatically declines with increasing of the porosity and follows a power law relationship with the area percentage of porosity. The existence of the shrinkage porosity made the fatigue fracture complex. The shrinkage pores, especially those close to the surface usually became the crack initiation sites. For test pieces with less porosity, the fatigue fracture was clearly composed of crack initiation, propagation, and overloading. While for samples with high level of porosity, multiple crack initiation sites were observed. Casting defects could largely affect the mechanical properties of casting products. A number of test pieces made of ductile iron (EN-GJS-400-18-LT) with different levels of shrinkage porosity were prepared and then tensile and fatigue tests were performed to investigate the impact of shrinkage porosity on their mechanical properties. The results showed that the tensile strength decreases linearly with increasing of the shrinkage porosity. The tensile elongation decreases sharply with the increase of the shrinkage porosity mainly due to the non-uniform plastic deformation. The fatigue life also dramatically declines with increasing of the porosity and follows a power law relationship with the area percentage of porosity. The existence of the shrinkage porosity made the fatigue fracture complex. The shrinkage pores, especially those close to the surface usually became the crack initiation sites. For test pieces with less porosity, the fatigue fracture was clearly composed of crack initiation, propagation, and overloading. While for samples with high level of porosity, multiple crack initiation sites were observed.
出处 《China Foundry》 SCIE CAS 2013年第3期141-147,共7页 中国铸造(英文版)
基金 supported by the Fund Project for Transformation of Science&Technology Achievements from Jiangsu Province(No.BA2009022) the National Innovation Fund for Small and Medium Technology Based Firms(No.10C26213204040)
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  • 1Bonora Nicola and Ruggiero Andrew. Micromechanical modeling of ductile cast iron incorporating damage. Part I: Ferritic ductile cast iron. International Journal of Solids and Structures, 2005, 42: 1401-1424,.
  • 2Tokaji K, Uematsu Y, Horie T, et al. Fatigue behaviour of cast irons with spheroidal vanadium carbides dispersed within martensitic matrix microstructure. Materials Science and Engineering A, 2006, 418: 326-334.
  • 3Collini L, Pirondi A, Bianchi R, et al. Influence of casting defects on fatigue crack initiation and fatigue limit of ductile cast iron. Engineering Procedia., 2011, 10: 2898-2903.
  • 4lacoviello F, Di Bartolomeo O, Di Cocco V, et al. Damaging micro-mechanisms in ferritic-pearlitic ductile cast irons. Materials Science and Engineering A, 2008, 478(1-2): 181- 186.
  • 5Kobayashi Toshiro and Yamada Shinya. Evaluation of static and dynamic fracture toughness in ductile cast iron. Metall. Mater. Trans. A, 1994, 25: 2427-2437.
  • 6Rao P P and Putatunda S K. Influence of microstructure on fracture toughness of austempered ductile iron. Metall. Mater. Trans. A, 1997, 28A: 1457-1470.
  • 7Luo J, Harding R A, and Bowen P. Evaluation of the fatigue behavior of ductile irons with various matrix microstructures. Metall. Mater. Trans. A, 2002, 33: 3719-3730.
  • 8Nadot Y, Mendez J, and Ranganathan N. Influence of casting defects on the fatigue limit of nodular cast iron. International Journal of Fatigue, 2004, 26: 311-319.
  • 9Pyttel B, Brunner I, Schwerdt D, et al. Influence of defects on fatigue strength and failure mechanisms in the VHCF- region for quenched and tempered steel and nodular cast iron. International Journal of Fatigue, 2012, 41: 107-118.
  • 10Nilsson K F and Vokal V. Analysis of ductile cast iron tensile tests to relate ductility variation to casting defects and material microstructure. Materials Science and Engineering A, 2009, 502: 54-63.

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