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Work Hardening Behavior of Medium Mn TWIP+TRIP Steel with a Bimodal Microstructure

机译:具有双峰组织的中锰TWIP + TRIP钢的加工硬化行为

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摘要

The work hardening behavior of intercritically annealed 6% Mn steel with a bimodal microstructure was investigated.After intercritical annealing,the steel contained coarse-grained δ-ferrite and ultrafine-grained ferrite and retained austenite.Ductile ultra-high strength behavior was achieved by the combined activation of the twinning-induced (TWIP) and transformation-induced (TRIP) plasticity-enhancing mechanisms.The composition and stacking fault energy (SFE) of the retained austenite,both of which depend on the intercritical annealing temperature,are the key factors which determine the work hardening behavior of the steel.An excellent strength-ductility balance of approximately 26000~52000 MPa·% was achieved after intercritical annealing in the 740~880℃ temperature range.
机译:研究了具有双峰组织的临界退火6%Mn钢的加工硬化行为。临界退火后,该钢包含δ-铁素体粗晶粒和超细晶粒铁素体并保留了奥氏体。孪生诱发(TWIP)和相变诱发(TRIP)塑性增强机制的共同激活。残余奥氏体的组成和堆垛层错能(SFE)均取决于临界退火温度,这是关键因素在740〜880℃的温度范围内进行临界退火后,达到了约26000〜52000 MPa·%的优异的强度-延性平衡。

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