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Journal ArticleDOI

Fe-22Mn TRIP/TWIP钢拉伸过程组织、性能及晶体学行为分析

TLDR
In this paper, the mechanical properties and microstructure evolutions of Fe-22Mn-3Si-2Al TRIP/TWIP steel after tensile deformation were studied by mechanical tests and SEM analysis, and in particular, the crystallography of martensitic transformation was analyzed by EBSD technique.
Abstract
High manganese steels demonstrate significant potential for industrial application due to their remarkable TRIP/TWIP effects at room temperature.Thus,they attract interest of many researchers.In this work,mechanical properties and microstructure evolutions of an Fe-22Mn- 3Si-2Al TRIP/TWIP steel after tensile deformation were studied by mechanical tests and SEM analysis,and in particular,the crystallography of martensitic transformation was analyzed by EBSD technique.The results show that,plenty of harder thermale-martensite existed before deformation and transformed to a'-martensite during tensile deformation,namely the two kinds of martensite transformed asynchronously.During deformation,the TRIP effect by strain induced a'-martensite and the TWIP effect by deformation twinning coexisted,leading to good combination of strength and ductility in this steel,and furthermore,e-martensite didn't cause the low temperature brittleness.The thermal e-martensite showed tilting basal texture.When deformed,basal slip was an easy activity, whereas deformation twinning of 86°(1120) was also detected,which sometimes revealed 93°(7253) relationships by a combination of 30°(0001) misorientation due to mis-indexing of pseudosymmetry during EBSD measurement.During tensile deformationα'-martensite revealed a rotation around crystallographic (110) axis and scattered orientations,forming the phenomenon of comets trailing.Besides, austenitic orientations also rotated and increased low angle misorientations.And annealing twins in austenite was found to facilitate the martensitic transformation.

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Influence of Bridgman solidification on microstructures and magnetic behaviors of a non-equiatomic FeCoNiAlSi high-entropy alloy

TL;DR: The non-equiatomic FeCoNiAlSi alloy is prepared by the Bridgman solidification (BS) technique at different withdrawal velocities (V = 30, 100, and 200μm/s) as discussed by the authors.
Journal ArticleDOI

Nanocrystalline WC-Co composite with ultrahigh hardness and toughness

TL;DR: In this article, a new strategy of fabricating nanocrystalline composites, which consists of concurrent crystallization, carbonization, and sintering densification of the amorphous compound powder, was proposed.
Journal ArticleDOI

Analysis of the Transformation-induced Plasticity Effect during the Dynamic Deformation of High-manganese Steel

TL;DR: In this article, the transformation-induced plasticity (TRIP) effect and resistance characteristics to adiabatic shear failure at high strain rates of high-manganese steel were investigated by using scanning electron microscopy and electron backscattering diffraction.
Journal ArticleDOI

Gravity influence on solidification and segregation of CoCrFeNiCu/Y high entropy alloy

TL;DR: In this paper, the authors analyzed the gravity-induced changes of element-partition coefficients during the directional solidification of the CoCrFeNiCu/Y high entropy alloys.
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