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Mechanical Behavior of Twinning Induced Plasticity Steel Processed by Warm Forging and Annealing

机译:温锻和退火对孪生诱导塑性钢的力学行为

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The present study shows that warmly forged and low-temperature annealed twinning induced plasticity (TWIP) steel exhibited very high dislocation density and apparent yield-point phenomenon in addition to very high yield strength. The initial density of dislocations significantly affected the evolution of dislocations during the subsequent tensile deformation. Original high dense dislocations prompted the rapid increase of dislocations, and intensified the complexity of dislocation configurations. All these effects made the twinning deformation weakened but the dislocation deformation enhanced, leading to increased strength but decreased plasticity.
机译:本研究表明,除了非常高的屈服强度外,热锻和低温退火孪晶诱导塑性(TWIP)钢还表现出非常高的位错密度和明显的屈服点现象。位错的初始密度显着影响随后的拉伸变形过程中位错的演变。原始的高密度位错促使位错迅速增加,并加剧了位错构型的复杂性。所有这些作用使孪生变形减弱,而位错变形增强,导致强度增加但塑性降低。

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