2010Cailiao daobaoRequires access

Current Situation of the TWIP Steel

Shu Kang-ying

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Abstract

The present situation and progress in research on twinning induced plasticity (TWIP) steel are summarized. Based on the introduction of alloying elements for TWIP effect, the distinguishing features, such as microstructures and mechanical properties of the different compositions series of TWIP steels, i.e. Fe-Mn-Si-Al、Fe-Mn-C and Fe-Mn-C-Al are focused on. The effects of the annealing processes and deformation conditions on the microstructures as well as the mechanical properties of Fe-Mn-Si-Al system alloy are presented. The relationships between stacking fault energy and deformation mechanisms of TWIP steel are also illustrated, together with several methods for calculation or measurement of stacking fault energy.

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What this paper is about

The present situation and progress in research on twinning induced plasticity (TWIP) steel are summarized. Based on the introduction of alloying elements for TWIP effect, the distinguishing features, such as microstructures and mechanical properties of the different compositions series of TWIP steels, i.e. Fe-Mn-Si-Al、Fe-Mn-C and Fe-Mn-C-Al are focused on. The effects of the annealing processes and deformation conditions on the microstructures as well as the mechanical properties of Fe-Mn-Si-Al system alloy are presented. The relationships between stacking fault energy and deformation mechanisms of TWIP steel are also illustrated, together with several methods for calculation or measurement of stacking fault energy.

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Available abstract

The present situation and progress in research on twinning induced plasticity (TWIP) steel are summarized. Based on the introduction of alloying elements for TWIP effect, the distinguishing features, such as microstructures and mechanical properties of the different compositions series of TWIP steels, i.e. Fe-Mn-Si-Al、Fe-Mn-C and Fe-Mn-C-Al are focused on. The effects of the annealing processes and deformation conditions on the microstructures as well as the mechanical properties of Fe-Mn-Si-Al system alloy are presented. The relationships between stacking fault energy and deformation mechanisms of TWIP steel are also illustrated, together with several methods for calculation or measurement of stacking fault energy.

Key concepts: Twip, Stacking-fault energy, Materials science, Crystal twinning, Metallurgy, Microstructure, Plasticity, Alloy

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