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Microstructure Characteristics of an Fe-Mn-C TWIP Steel After Deformation 被引量:3

Microstructure Characteristics of an Fe-Mn-C TWIP Steel After Deformation
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摘要 The microstructure characteristics of an Fe-Mn-C TWIP steel after deformation are investigated. The results show that the hot-rolled, cold-rolled and then annealed sample of the Fe-Mn-C TWIP steel has excellent mechanical properties, and the true stress-true strain curve from tension tests exhibits repeated serrations. The deformed microstructure exhibits the typical planar glide characteristics such as no cell formation, dislocation pile-ups on a single slip plane, mechanical twins and stacking faults. There are equiaxial and deep dimple structures in the fractograph, indicative of a ductile fracture. Microcracks initiate from inclusions and twin-twin intersections. Deformation and fracture processes are the formation, growth and coalescence of microvoids. The microstructure characteristics of an Fe-Mn-C TWIP steel after deformation are investigated. The results show that the hot-rolled, cold-rolled and then annealed sample of the Fe-Mn-C TWIP steel has excellent mechanical properties, and the true stress-true strain curve from tension tests exhibits repeated serrations. The deformed microstructure exhibits the typical planar glide characteristics such as no cell formation, dislocation pile-ups on a single slip plane, mechanical twins and stacking faults. There are equiaxial and deep dimple structures in the fractograph, indicative of a ductile fracture. Microcracks initiate from inclusions and twin-twin intersections. Deformation and fracture processes are the formation, growth and coalescence of microvoids.
出处 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2010年第9期53-59,共7页 钢铁研究学报(英文版)
基金 Item Sponsored by National High-Technology Research and Development Program(2008AA03E502) National Natural Science Foundation of China(50575022)
关键词 planar glide deformed twinning stack fault energy ductile fracture planar glide deformed twinning stack fault energy ductile fracture
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