130
Views
32
CrossRef citations to date
0
Altmetric
Research Articles

Modelling the effect of graphite morphology on the modulus of elasticity in cast irons

Pages 271-279 | Published online: 18 Jul 2013

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (4)

Rohollah Ghasemi, Jakob Olofsson, Anders E. W. Jarfors & Ingvar L. Svensson. (2017) Modelling and simulation of local mechanical properties of high silicon solution-strengthened ferritic compacted graphite iron. International Journal of Cast Metals Research 30:3, pages 125-132.
Read now
L. Ceschini, Al. Morri, An. Morri, E. Salsi, R. Squatrito, I. Todaro & L. Tomesani. (2015) Microstructure and mechanical properties of heavy section ductile iron castings: experimental and numerical evaluation of effects of cooling rates. International Journal of Cast Metals Research 28:6, pages 365-374.
Read now
M. König. (2010) Literature review of microstructure formation in compacted graphite Iron. International Journal of Cast Metals Research 23:3, pages 185-192.
Read now
D. M. Holmgren, A. Diószegi & I. L. Svensson. (2006) Effects of transition from lamellar to compacted graphite on thermal conductivity of cast iron. International Journal of Cast Metals Research 19:6, pages 303-313.
Read now

Articles from other publishers (28)

Minghua Cao, Konstantinos P. Baxevanakis & Vadim V. Silberschmidt. (2023) Effect of Graphite Morphology on the Thermomechanical Performance of Compacted Graphite Iron. Metals 13:3, pages 473.
Crossref
Ali Can Kaya, Paul Zaslansky & Claudia Fleck. (2021) Modeling of Complex Gray Cast Iron Open‐Cell Foams Revealing Insights on Failure and Deformation on Different Hierarchical Length‐Scales. Advanced Engineering Materials 24:1, pages 2100677.
Crossref
E. Kihlberg, V. Norman, P. Skoglund, P. Schmidt & J. Moverare. (2021) On the correlation between microstructural parameters and the thermo-mechanical fatigue performance of cast iron. International Journal of Fatigue 145, pages 106112.
Crossref
R Rizzoni, P Livieri & R Tovo. (2021) Multiscale three-dimensional stress analysis of voids clusters for the modelling of degenerated graphite in cast iron. IOP Conference Series: Materials Science and Engineering 1038:1, pages 012047.
Crossref
Tito Andriollo & Varvara Kouznetsova. (2021) A simplified formula to estimate the size of the cyclic plastic zone in metals containing elastic particles. Engineering Fracture Mechanics 241, pages 107428.
Crossref
R. Rizzoni, P. Livieri, R. Tovo & M. Cova. (2020) Development of a hierarchical model for voids clusters suitable for cast iron degenerated graphite. Theoretical and Applied Fracture Mechanics 109, pages 102731.
Crossref
Johan Jansson, Jakob Olofsson & Kent Salomonsson. (2019) On the use of heterogeneous thermomechanical and thermophysical material properties in finite element analyses of cast components. IOP Conference Series: Materials Science and Engineering 529:1, pages 012076.
Crossref
Jörg C. Sturm & Wilfried Schäfer. (2018) "Cast Iron - A Predictable Material” 25 Years of Modeling the Manufacture, Structures and Properties of Cast Iron. Materials Science Forum 925, pages 451-464.
Crossref
Ingvar L. Svensson & Kent Salomonsson. (2018) Mathematical Characterization of the Tensile Deformation Curve of Cast Iron Materials. Materials Science Forum 925, pages 444-450.
Crossref
F.J. Rodriguez, A.D. Boccardo, P.M. Dardati, D.J. Celentano & L.A. Godoy. (2018) Thermal expansion of a Spheroidal Graphite Iron: A micromechanical approach. Finite Elements in Analysis and Design 141, pages 26-36.
Crossref
Tito Andriollo, Kristina Hellström, Mads Rostgaard Sonne, Jesper Thorborg, Niels Tiedje & Jesper Hattel. (2018) Uncovering the local inelastic interactions during manufacture of ductile cast iron: How the substructure of the graphite particles can induce residual stress concentrations in the matrix. Journal of the Mechanics and Physics of Solids 111, pages 333-357.
Crossref
. 2017. Cast Iron Science and Technology. Cast Iron Science and Technology 511 515 .
. 2017. Cast Iron Science and Technology. Cast Iron Science and Technology 516 524 .
Kent Salomonsson & Jakob Olofsson. 2017. Proceedings of the 4th World Congress on Integrated Computational Materials Engineering (ICME 2017). Proceedings of the 4th World Congress on Integrated Computational Materials Engineering (ICME 2017) 217 225 .
Tito Andriollo, Jesper Thorborg & Jesper Hattel. (2016) Modeling the elastic behavior of ductile cast iron including anisotropy in the graphite nodules. International Journal of Solids and Structures 100-101, pages 523-535.
Crossref
Tito Andriollo, Jesper Thorborg, Niels Tiedje & Jesper Hattel. (2016) A micro-mechanical analysis of thermo-elastic properties and local residual stresses in ductile iron based on a new anisotropic model for the graphite nodules. Modelling and Simulation in Materials Science and Engineering 24:5, pages 055012.
Crossref
Tito Andriollo & Jesper Hattel. (2016) On the isotropic elastic constants of graphite nodules in ductile cast iron: Analytical and numerical micromechanical investigations. Mechanics of Materials 96, pages 138-150.
Crossref
Dequan Shi, Kaijiao Kang, Guili Gao & Shen Miao. (2016) System and Experiment on Fast Testing Vermicular Graphite Percent in Cast Iron Based on Ultrasonic Longitudinal Wave. MATERIALS TRANSACTIONS 57:4, pages 544-548.
Crossref
Jakob Olofsson, Kent Salomonsson & Ingvar L Svensson. 2015. TMS2015 Supplemental Proceedings. TMS2015 Supplemental Proceedings 1057 1064 .
Jakob Olofsson, Kent Salomonsson & Ingvar L Svensson. 2016. TMS 2015 144th Annual Meeting & Exhibition. TMS 2015 144th Annual Meeting & Exhibition 1057 1064 .
Peng Lan & Jiaquan Zhang. (2014) Study on the mechanical behaviors of grey iron mould by simulation and experiment. Materials & Design 53, pages 822-829.
Crossref
Jakob Olofsson & Ingvar L. Svensson. (2013) The effects of local variations in mechanical behaviour – Numerical investigation of a ductile iron component. Materials & Design 43, pages 264-271.
Crossref
Jakob Olofsson & Ingvar L Svensson. (2012) Casting and stress-strain simulations of a cast ductile iron component using microstructure based mechanical behavior. IOP Conference Series: Materials Science and Engineering 33, pages 012051.
Crossref
Jakob Olofsson & Ingvar L. Svensson. (2012) Incorporating predicted local mechanical behaviour of cast components into finite element simulations. Materials & Design 34, pages 494-500.
Crossref
Torsten Sjögren, Per Eric Persson & Peter Vomacka. (2010) Analysing the Deformation Behaviour of Compacted Graphite Cast Irons Using Digital Image Correlation Techniques. Key Engineering Materials 457, pages 470-475.
Crossref
Keitaro OHTAKI, Tetsuya UCHIMOTO & Toshiyuki TAKAGI. (2010) Material Characterization of Cast Irons with an EMAT/EC Dual Probe. Transactions of the Japan Society of Mechanical Engineers Series A TRANSACTIONS OF THE JAPAN SOCIETY OF MECHANICAL ENGINEERS Series A 76:767, pages 968-975.
Crossref
I. Svensson & T. Sjögren. (2015) On Modeling and Simulation of Mechanical Properties of Cast Irons with Different Morphologies of Graphite. International Journal of Metalcasting 3:4, pages 67-77.
Crossref
Torsten Sjögren & Ingvar L. Svensson. (2007) The Effect of Graphite Fraction and Morphology on the Plastic Deformation Behavior of Cast Irons. Metallurgical and Materials Transactions A 38:4, pages 840-847.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.