Kinematics of deformation bands in an austenitic FeMnC TWIP steel

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منابع مشابه

TWIP-effect and thermo-mechanical treatment of a stable high-manganese austenitic stainless steel

Austenitic carbon steels that exhibit excellent mechanical properties due to the twinning-induced plasticity effect have been studied extensively. On the other hand, austenitic stainless steels usually achieve good strength and ductility via transformation-induced plasticity. However, relying on martensite transformation for strength may cause problems such as delayed cracking. Therefore, the t...

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Kinematics of Experimentally Produced Deformation Bands in Stibnite

McQueen, D.R., Kelly, W.C. and Clark, B.R., 1980. Kinematics of experimentally produced deformation bands in stibnite. In: W.M. Schwerdtner, P.J. Hudleston and J.M. Dixon (Editors), Analytical Studies in Structural Geology. Tectonophysics, 66 : 55-81. Using videotape techniques, we have observed the kinematic development of a variety of microstructures during experimental deformation of single ...

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Plastic strain due to twinning in austenitic TWIP steels

Twinning induced plasticity steels are austenitic alloys in which mechanical twinning is a prominent deformation mode, and which exhibit exceptional combinations of ductility, work hardening and ultimate strength. The authors develop in the present paper a crystallographic theory to enable the quantitative investigation of the role of mechanical twinning in enhancing the properties of these all...

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Effect of annealing process on microstructure and mechanical properties of high manganese austenitic TWIP steel

In the present study, the influence of annealing temperature on mechanical properties and the microstructure of a high manganese austenitic steel (Fe-30Mn-4Al-4Si-0.5C) was investigated. X-ray diffractometry, optical and scanning electron microscopy, hardness and tensile tests were used to analyze the relationship between mechanical properties and microstructure after annealing process. The res...

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Twin-Induced Plasticity of an ECAP-Processed TWIP Steel

The TWIP steels show high strain hardening rates with high ductility which results in high ultimate tensile strength. This makes their processing by equal channel angular pressing very difficult. Up to now, this has only been achieved at warm temperatures (above 200 C). In this paper, a FeMnCAl TWIP steel has been processed at room temperature and the resulted microstructure and mechanical prop...

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ژورنال

عنوان ژورنال: Journal of Physics: Conference Series

سال: 2010

ISSN: 1742-6596

DOI: 10.1088/1742-6596/240/1/012020