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Construction of processing maps to evaluate the hot forgeability of DIN 38MnSiVS5 steel

Grant number: 13/23007-0
Support Opportunities:Scholarships abroad - Research Internship - Master's degree
Start date: March 03, 2014
End date: September 02, 2014
Field of knowledge:Engineering - Mechanical Engineering - Manufacturing Processes
Principal Investigator:Sergio Tonini Button
Grantee:Rudimylla da Silva Septímio
Supervisor: Chester John Van Tyne
Host Institution: Faculdade de Engenharia Mecânica (FEM). Universidade Estadual de Campinas (UNICAMP). Campinas , SP, Brazil
Institution abroad: Colorado School of Mines, United States  
Associated to the scholarship:12/23273-0 - STUDY OF MULTI-DIRECTIONAL PRECISION FORGING, BP.MS

Abstract

Microalloyed steels are gaining increasing importance to substitute carbon steels because they present higher mechanical properties such as strength and toughness. Despite the industrial importance, few works are available in the recent literature concerning to the hot workability of microalloyed steels in metal forming processes. Hence, it is important to understand the effect of initial grain size and phase constituents on flow stress during hot working in order to establish the ideal processing conditions, which avoid the formation of defects and improve mechanical properties. The aim of this project is to construct a processing map to evaluate the hot workability of 38MnSiVS5 microalloyed steel from data of isothermal compression tests, to define the constitutive behavior of the material under hot working conditions and to identify the best parameters, which define the safe regions for metalworking. (AU)

News published in Agência FAPESP Newsletter about the scholarship:
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Scientific publications
(References retrieved automatically from Web of Science and SciELO through information on FAPESP grants and their corresponding numbers as mentioned in the publications by the authors)
DA SILVA SEPTIMIO, RUDIMYLLA; BUTTON, SERGIO TONINI; VAN TYNE, CHESTER JOHN. Processing maps for the analysis of hot workability of microalloyed steels 38MnSiVS5 and 0.39C1.47Mn. Journal of Materials Science, v. 51, n. 5, p. 2512-2528, . (12/23273-0, 13/23007-0)