Mechanical Properties and Their Dependence on Microstructure in Hot-Rolled 3rd Generation Advanced High Strength Steels

The Minerals, Metals and Materials Society
Meghan McGrath
Organization:
The Minerals, Metals and Materials Society
Pages:
9
File Size:
3552 KB
Publication Date:
Jan 1, 2010

Abstract

Third generation advance high strength steels with microstructures of acicular ferrite and retained austenite were investigated and meet mechanical property goals. A good combination of strength and ductility were achieved with duplex ferrite and austenite microstructures where cementite formation was suppressed. Transformation induced plasticity (TRIP) behavior produced rapid work hardening. The mechanical properties of two hot-rolled steels with duplex microstructures were compared and had the following compositions: (1) Fe-0.14C-13.87Mn-1.42Si-3.51Al; and (2) Fe-0.06C-14.2Mn-1.85Si-2.38Al. These steels were cast, homogenized, and hot rolled at 900ºC to obtain a refined microstructure with ultimate tensile strengths and elongations to failure of 865 MPa and 39% and 1,217 MPa and 28%, respectively. The amount of metastable austenite in both compositions decreased after tensile testing from 58% and 28% to 6% and 0%, respectively. Microstructures were characterized using optical microscopy, scanning electron microscopy (SEM), and x-ray diffraction.
Citation

APA: Meghan McGrath  (2010)  Mechanical Properties and Their Dependence on Microstructure in Hot-Rolled 3rd Generation Advanced High Strength Steels

MLA: Meghan McGrath Mechanical Properties and Their Dependence on Microstructure in Hot-Rolled 3rd Generation Advanced High Strength Steels. The Minerals, Metals and Materials Society, 2010.

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