30
Views
21
CrossRef citations to date
0
Altmetric
Articles

Use of austenitising temperature in control of austempering of an Mn-Mo-Cu alloyed ductile iron

Pages 1007-1015 | Published online: 19 Jul 2013

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

Read on this site (11)

C. Hakan Gür, Melika Ozer & Mehmet Erdogan. (2008) Investigation of the Variations in Microstructure and Mechanical Properties of Dual-Matrix Ductile Iron by Magnetic Barkhausen Noise Analysis. Research in Nondestructive Evaluation 19:1, pages 44-60.
Read now
V. Kilicli & M. Erdogan. (2006) Tensile properties of partially austenitised and austempered ductile irons with dual matrix structures. Materials Science and Technology 22:8, pages 919-928.
Read now
D.C. Putman & R.C. Thomson. (2003) Microstructural and mechanical property modelling of austempered ductile iron. International Journal of Cast Metals Research 16:1-3, pages 191-196.
Read now
M. A. Yescas. (2003) Prediction of the Vickers hardness in austempered ductile irons using neural networks. International Journal of Cast Metals Research 15:5, pages 513-521.
Read now
S. Yazdani, H. Bayati & R. Elliott. (2001) The influence of cobalt on the austempering reaction in ductile cast iron. International Journal of Cast Metals Research 13:6, pages 317-326.
Read now
Yong-Joon Huh, M. H. Arroyo, A. L. Rimmer & R. Elliott. (1999) Austempering kinetics of a Mn-Mo-Cu ductile iron with a high nodule count. International Journal of Cast Metals Research 11:4, pages 237-245.
Read now
G. Cooper, A. Roebuck, Hamid Bayati & R. Elliott. (1999) The influence of nodule count on the austempering kinetics of a Mn-Cu ductile iron. International Journal of Cast Metals Research 11:4, pages 227-235.
Read now
B. T. Sim & R. Elliott. (1998) Relationship between mechanical properties and structure in austempered alloyed compacted graphite cast iron. Materials Science and Technology 14:3, pages 241-244.
Read now

Articles from other publishers (10)

J. O. Olawale & K. M. Oluwasegun. (2016) Austempered Ductile Iron (ADI): A Review. Materials Performance and Characterization 5:1, pages 20160053.
Crossref
Jong-Gyu Ha, Sang-Yun Shin, Do-Hoon Lee & Byung-Joon Ye. (2015) Mechanical Properties of Austempered Fe-2.0wt.%Si-0.3wt.%Mn Steel with various Carbon Contents. Journal of Korea Foundry Society 35:1, pages 1-7.
Crossref
Volkan Kilicli & Mehmet Erdogan. (2009) The Nature of the Tensile Fracture in Austempered Ductile Iron with Dual Matrix Microstructure. Journal of Materials Engineering and Performance 19:1, pages 142-149.
Crossref
Mehmet Erdogan, Volkan Kilicli & Bilge Demir. (2009) Transformation characteristics of ductile iron austempered from intercritical austenitizing temperature ranges. Journal of Materials Science 44:5, pages 1394-1403.
Crossref
Mehmet Erdogan, Volkan Kilicli & Bilge Demir. (2008) The influence of the austenite dispersion on phase transformation during the austempering of ductile cast iron having a dual matrix structure. International Journal of Materials Research 99:7, pages 751-760.
Crossref
Volkan Kilicli & Mehmet Erdogan. (2007) The Strain-Hardening Behavior of Partially Austenitized and the Austempered Ductile Irons with Dual Matrix Structures. Journal of Materials Engineering and Performance 17:2, pages 240-249.
Crossref
Y. Sahin, M. Erdogan & V. Kilicli. (2007) Wear behavior of austempered ductile irons with dual matrix structures. Materials Science and Engineering: A 444:1-2, pages 31-38.
Crossref
Kadir Kocatepe, Melika Cerah & Mehmet Erdogan. (2007) The tensile fracture behaviour of intercritically annealed and quenched+tempered ferritic ductile iron with dual matrix structure. Materials & Design 28:1, pages 172-181.
Crossref
Kadir Kocatepe, Melika Cerah & Mehmet Erdogan. (2006) Effect of martensite volume fraction and its morphology on the tensile properties of ferritic ductile iron with dual matrix structures. Journal of Materials Processing Technology 178:1-3, pages 44-51.
Crossref
M.A Yescas, H.K.D.H Bhadeshia & D.J MacKay. (2001) Estimation of the amount of retained austenite in austempered ductile irons using neural networks. Materials Science and Engineering: A 311:1-2, pages 162-173.
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.