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      Effect of martensite volume fraction on mechanical properties of dual-phase treated AISI-4012 sheet steels

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          Abstract

          Hot rolled AISI-4012 sheet steels have been heat treated to obtain a ductile dual phase microstructure. The specimens were heat treated in the ferrite (α) and austenite (γ) phase region at temperatures of 740, 760, 790 and 820 °C and corresponding time intervals of 15, 30, 60 and 90 min and then quenched into water. Hardness measurements, tensile, bending, and impact tests were performed in order to determine the mechanical properties of the dual phase steel. These were examined with respect to the martensite volume fraction. Both the flow and tensile stresses increased whereas elongation decreased with increasing dual phase treatment temperature and martensite volume fraction. The optimum mechanical properties and the appropriate dual-phase microstructure are achieved at 740 and 760 °C annealing with subsequent water quenching. From examinations it was deduced that ductile fracture occurred in the tested samples.

          Author and article information

          Journal
          ijmr
          International Journal of Materials Research
          Carl Hanser Verlag
          1862-5282
          2195-8556
          2010
          : 101
          : 5
          : 684-691
          Affiliations
          a Firat University, Faculty of Technical Education, Dept. of Mechanical Edu, Elazig, Turkey
          b Atilim University, Faculty of Engineering, Dept. of Mech. Eng, Ankara, Turkey
          Author notes
          [* ] Correspondence address, Prof. Dr. B. Aksakal, Firat University, Faculty of Tech. Edu, Dept. of Mech. EduElazig, Turkey. Tel.: +237 0000/4315, Fax: +90 424 236 7064, E-mail: b.aksakal@ 123456firat.edu.tr
          Article
          MK110328
          10.3139/146.110328
          e5b27a9c-8ac3-463c-8ce6-ca4f21552008
          © 2010, Carl Hanser Verlag, München
          History
          : 6 August 2008
          : 9 February 2010
          Page count
          References: 26, Pages: 8
          Categories
          Applied

          Materials technology,Materials characterization,Materials science
          Hot rolled sheets,Mechanical properties,Microstructure,Dual phase

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