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Published in: Journal of Materials Engineering and Performance 6/2017

09-05-2017

Effects of Casting Size on Microstructure and Mechanical Properties of Spheroidal and Compacted Graphite Cast Irons: Experimental Results and Comparison with International Standards

Authors: L. Ceschini, Alessandro Morri, Andrea Morri

Published in: Journal of Materials Engineering and Performance | Issue 6/2017

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Abstract

The aim of this research was to investigate the effects of casting size (10-210 mm) on the microstructure and mechanical properties of spheroidal (SGI) and compacted (CGI) graphite cast irons. A comparison of the experimental mechanical data with those specified by ISO standards is presented and discussed. The study highlighted that the microstructure and mechanical properties of SGI (also known as ductile or nodular cast iron) are more sensitive to casting size than CGI (also known as vermicular graphite cast irons). In particular, in both types of cast iron, hardness, yield strength and ultimate tensile strength decreased, with increasing casting size, by 27% in SGI and 17% in CGI. Elongation to failure showed, instead, an opposite trend, decreasing from 5 to 3% in CGI, while increasing from 5 to 11% in SGI. These results were related to different microstructures, the ferritic fraction being more sensitive to the casting size in SGI than CGI. Degeneration of spheroidal graphite was observed at casting size above 120 mm. The microstructural similarities between degenerated SGI and CGI suggested the proposal of a unified empirical constitutional law relating the most important microstructural parameters to the ultimate tensile strength. An outstanding result was also the finding that standard specifications underestimated the mechanical properties of both cast irons (in particular SGI) and, moreover, did not take into account their variation with casting size, at thicknesses over 60 mm.

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Literature
1.
go back to reference Cast Iron, in ASM hanbooks, Vol 15 (ASM International, 2016), pp. 785–908 Cast Iron, in ASM hanbooks, Vol 15 (ASM International, 2016), pp. 785–908
2.
go back to reference V.D. Shinde, B. Ravi, and K. Narasimhan, Solidification Behaviour and Mechanical Properties of Ductile Iron Castings with Varying Thickness, Int. J. Cast Met. Res, 2016, 25(6), p 364–373CrossRef V.D. Shinde, B. Ravi, and K. Narasimhan, Solidification Behaviour and Mechanical Properties of Ductile Iron Castings with Varying Thickness, Int. J. Cast Met. Res, 2016, 25(6), p 364–373CrossRef
3.
go back to reference F. Bonollo and A. Tiziani, La solidificazione delle ghise, in Ghisa 2000 Tradizione + Innovazione (2000), pp. 19–32 F. Bonollo and A. Tiziani, La solidificazione delle ghise, in Ghisa 2000 Tradizione + Innovazione (2000), pp. 19–32
4.
go back to reference L. Ceschini, A. Morri, A. Morri, E. Salsi, R. Squatrito, I. Todaro, and L. Tomesani, Microstructure and Mechanical Properties of Heavy Section Ductile Iron Castings: Experimental and Numerical Evaluation of Effects of Cooling Rates, Int. J. Cast Met. Res., 2015, 28(6), p 365–374CrossRef L. Ceschini, A. Morri, A. Morri, E. Salsi, R. Squatrito, I. Todaro, and L. Tomesani, Microstructure and Mechanical Properties of Heavy Section Ductile Iron Castings: Experimental and Numerical Evaluation of Effects of Cooling Rates, Int. J. Cast Met. Res., 2015, 28(6), p 365–374CrossRef
5.
go back to reference L. Ceschini, G. Minak, A. Morri, A. Morri, L. Tomesani, N. Radovic, E. Salsi, and R. Squatrito, Modellazione di Processo, Previsione di Microstruttura e Proprietà Meccaniche di Ghise Sferoidali Colate in Sabbia, La Metall. Ital., 2013, 1, p 2–11 L. Ceschini, G. Minak, A. Morri, A. Morri, L. Tomesani, N. Radovic, E. Salsi, and R. Squatrito, Modellazione di Processo, Previsione di Microstruttura e Proprietà Meccaniche di Ghise Sferoidali Colate in Sabbia, La Metall. Ital., 2013, 1, p 2–11
6.
go back to reference R. Källbom, K. Hamberg, and L.-E. Bjorkegren, Chunky Graphite in Ductile Iron Castings, in World Foundry Congress: Casting The Future, 2006, p 184/1–10 R. Källbom, K. Hamberg, and L.-E. Bjorkegren, Chunky Graphite in Ductile Iron Castings, in World Foundry Congress: Casting The Future, 2006, p 184/1–10
7.
go back to reference I. Asenjo, P. Larranaga, J. Sertucha, R. Suarez, J.M. Gomez, I. Ferrer, and J. Lacaze, Effect of Mould Inoculation on Formation of Chunky Graphite in Heavy Section Spheroidal Graphite Cast Iron Parts, Int. J. Cast Met. Res., 2007, 20, p 319–324CrossRef I. Asenjo, P. Larranaga, J. Sertucha, R. Suarez, J.M. Gomez, I. Ferrer, and J. Lacaze, Effect of Mould Inoculation on Formation of Chunky Graphite in Heavy Section Spheroidal Graphite Cast Iron Parts, Int. J. Cast Met. Res., 2007, 20, p 319–324CrossRef
8.
go back to reference R. Elliott, Cast Iron Technology, Butterworths, London, 1988 R. Elliott, Cast Iron Technology, Butterworths, London, 1988
9.
go back to reference J.A. Javaid and C.R. Loper, AFS Trans., 1995, 103, p 50–135 J.A. Javaid and C.R. Loper, AFS Trans., 1995, 103, p 50–135
10.
go back to reference R. Kallbom, K. Hamberg, L.E. Bjorkegren, Proc. Gjutdesign 2005 Final Semin., 2005, p 1–25. R. Kallbom, K. Hamberg, L.E. Bjorkegren, Proc. Gjutdesign 2005 Final Semin., 2005, p 1–25.
11.
go back to reference H.W. Hoover, AFS Trans., 1986, 94, p 601–608 H.W. Hoover, AFS Trans., 1986, 94, p 601–608
12.
go back to reference J. Sertucha, J. Lacaze, S. Armendariz, and P. Larranaga, Statistical Analysis of the Influence of Some Trace Elements on Chunky Nodular Iron Castings, Met. Mat. Trans., 2013, 44A, p 1159–1162CrossRef J. Sertucha, J. Lacaze, S. Armendariz, and P. Larranaga, Statistical Analysis of the Influence of Some Trace Elements on Chunky Nodular Iron Castings, Met. Mat. Trans., 2013, 44A, p 1159–1162CrossRef
13.
go back to reference S. Boonmee and D.M. Stefanescu, Occurrence and Effect of Casting Skin in Compacted Graphite Iron Occurrence and Effect of Casting Skin in Compacted Graphite Iron, Int. J. Cast Met. Res., 2016, 29, p 47–54CrossRef S. Boonmee and D.M. Stefanescu, Occurrence and Effect of Casting Skin in Compacted Graphite Iron Occurrence and Effect of Casting Skin in Compacted Graphite Iron, Int. J. Cast Met. Res., 2016, 29, p 47–54CrossRef
14.
go back to reference G. Alonso, D.M. Stefanescu, P. Larrañaga, and R. Suarez, Understanding Compacted Graphite Iron Solidification Through Interrupted Solidification Experiments, Int. J. Cast Met. Res., 2016, 29, p 1–10CrossRef G. Alonso, D.M. Stefanescu, P. Larrañaga, and R. Suarez, Understanding Compacted Graphite Iron Solidification Through Interrupted Solidification Experiments, Int. J. Cast Met. Res., 2016, 29, p 1–10CrossRef
15.
go back to reference S. Dawson and T. Schroeder, Practical Applications for Compacted Graphite Iron, AFS Trans., 2004, 5(47), p 1–9 S. Dawson and T. Schroeder, Practical Applications for Compacted Graphite Iron, AFS Trans., 2004, 5(47), p 1–9
16.
go back to reference N.X.D.J. Liu, Effect of Type and Amount of Treatment Alloy on Compacted Graphite Produced by the Flotret Process, AFS Trans., 1985, 93, p 675–688 N.X.D.J. Liu, Effect of Type and Amount of Treatment Alloy on Compacted Graphite Produced by the Flotret Process, AFS Trans., 1985, 93, p 675–688
17.
go back to reference S. Charoenvilaisiri, D.M. Stefanescu, R. Ruxanda, and T.S. Piwonka, Thin Wall Compacted Graphite Iron Castings, AFS Trans., 2002, 110, p 1113–1130 S. Charoenvilaisiri, D.M. Stefanescu, R. Ruxanda, and T.S. Piwonka, Thin Wall Compacted Graphite Iron Castings, AFS Trans., 2002, 110, p 1113–1130
19.
go back to reference A. B. and S. C. Mishra, New Solution for Property Improvement of Automobile Parts, in Proceedings of Advances in Simulation & Optimization Techniques in Mechanical Engineering, NASOME, 2012, pp. 1–5. A. B. and S. C. Mishra, New Solution for Property Improvement of Automobile Parts, in Proceedings of Advances in Simulation & Optimization Techniques in Mechanical Engineering, NASOME, 2012, pp. 1–5.
20.
go back to reference S.D.W. Guesser and T. Schroeder, Production Experience with Compacted Graphite Iron Automotive Components, AFS Trans, 2001, 71, p 1–11 S.D.W. Guesser and T. Schroeder, Production Experience with Compacted Graphite Iron Automotive Components, AFS Trans, 2001, 71, p 1–11
21.
go back to reference H. Qiu and Z. Chen, Forty Years of Vermicular Graphite Cast Iron Development in China (Part III), China Foundry, 2007, p 261–269 H. Qiu and Z. Chen, Forty Years of Vermicular Graphite Cast Iron Development in China (Part III), China Foundry, 2007, p 261–269
22.
go back to reference I.C.L. Sofroni and I. Riposan, Some Considerations on the Crystallization Features of Cast Irons with Intermediate-Shaped Graphite (Vermicular Type), in Proceedings of the 2nd International Symposium on the Metallurgy of Cast Iron, 1974, p 179–196. I.C.L. Sofroni and I. Riposan, Some Considerations on the Crystallization Features of Cast Irons with Intermediate-Shaped Graphite (Vermicular Type), in Proceedings of the 2nd International Symposium on the Metallurgy of Cast Iron, 1974, p 179–196.
23.
go back to reference M. Gorny and M. Kawalec, Effects of Titanium Addition on Microstructure and Mechanical Properties of Thin-Walled Compacted Graphite Iron Castings, J. Mater. Eng. Perform., 2013, 22(5), p 1519–1524CrossRef M. Gorny and M. Kawalec, Effects of Titanium Addition on Microstructure and Mechanical Properties of Thin-Walled Compacted Graphite Iron Castings, J. Mater. Eng. Perform., 2013, 22(5), p 1519–1524CrossRef
24.
go back to reference M. Górny, M. Kawalec, G. Sikora, and H. Lopez, Effect of Cooling Rate and Titanium Additions on Microstructure of Thin-Walled Compacted Graphite Iron Castings, 2014, 54(10), p 2288–2293. M. Górny, M. Kawalec, G. Sikora, and H. Lopez, Effect of Cooling Rate and Titanium Additions on Microstructure of Thin-Walled Compacted Graphite Iron Castings, 2014, 54(10), p 2288–2293.
25.
go back to reference E. Foglio, D. Lusuardi, A. Pola, G.M. La Vecchia, and M. Gel, Fatigue Design of Heavy Section Ductile Irons: Influence of Chunky Graphite, 2016, 111, p 353–361 E. Foglio, D. Lusuardi, A. Pola, G.M. La Vecchia, and M. Gel, Fatigue Design of Heavy Section Ductile Irons: Influence of Chunky Graphite, 2016, 111, p 353–361
26.
go back to reference F.B.A. Gierek, Mater. Sci. Eng., 1975, 21, p 253–259. (Received July 14, 1975; in revised form September 5, 1975) F.B.A. Gierek, Mater. Sci. Eng., 1975, 21, p 253–259. (Received July 14, 1975; in revised form September 5, 1975)
27.
go back to reference M. Bazdar, H.R. Abbasi, A.H. Yaghtin, and J. Rassizadehghani, Effect of Sulfur on Graphite Aspect Ratio and Tensile Properties in Compacted Graphite Irons, J. Mater. Process. Technol., 2009, 209(4), p 1701–1705 CrossRef M. Bazdar, H.R. Abbasi, A.H. Yaghtin, and J. Rassizadehghani, Effect of Sulfur on Graphite Aspect Ratio and Tensile Properties in Compacted Graphite Irons, J. Mater. Process. Technol., 2009, 209(4), p 1701–1705  CrossRef
Metadata
Title
Effects of Casting Size on Microstructure and Mechanical Properties of Spheroidal and Compacted Graphite Cast Irons: Experimental Results and Comparison with International Standards
Authors
L. Ceschini
Alessandro Morri
Andrea Morri
Publication date
09-05-2017
Publisher
Springer US
Published in
Journal of Materials Engineering and Performance / Issue 6/2017
Print ISSN: 1059-9495
Electronic ISSN: 1544-1024
DOI
https://doi.org/10.1007/s11665-017-2714-7

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