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首页> 外文期刊>Philosophical magazine: structure and properties of condensed matter >The effect of severe plastic deformation and annealing conditions on mechanical properties and restoration phenomena in an ultrafine-grains Fe-28.5%Ni steel
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The effect of severe plastic deformation and annealing conditions on mechanical properties and restoration phenomena in an ultrafine-grains Fe-28.5%Ni steel

机译:超细晶粒Fe-28.5%Ni钢中严重塑性变形和退火条件对机械性能和恢复现象的影响

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The effect of annealing condition on the microstructure evolution, together with mechanical properties of Fe-28.5Ni steel processed by one and six cycles of accumulative roll bonding (ARB), was explored. The evolution of microstructure was studied by means of Electron Backscattered Diffraction method. The ARB-processed specimens were annealed for 30 minutes between 500°C and 600°C, and the effect of these annealing processes was elaborated. Results showed a significantly reduced martensite phase during ARB process cycles. Moreover, a refined and stabilised ultrafine structure was obtained in 6- cycle ARB-processed specimen. Results also show that by annealing the 1-cycle specimen at 550°C, no significant microstructural change and mechanical properties variation are identified. As such, no significant microstructural change and mechanical properties variation were notified for annealing of 6-cycle ARB-processed specimen at 500°C. However, annealing at 600°C in both conditions led to a complete recrystallisation of the deformed structure. Annealing at 550°C in 6-cycle ARB-processed specimen showed partial recrystallisation as well as an abnormal grain growth characteristic. The abnormal grain growth was seen by annealing of 1-cycle ARB-processed specimen at 600°C. The changing features of dislocations were discussed in these specimens in terms of changing the dynamics of lowand high-angle grain boundaries. Tensile test results also showed a significant increase in the yield/ultimate tensile strengths with the application of ARB cycles. Although ARB process led to a rapid reduction of total elongation, full restoration during high-temperature annealing returned this value back to the initial, non-deformed, condition.
机译:探讨了退火条件对微观结构演化的影响,以及由累积辊粘合(ARB)的一个和六个循环处理的Fe-28.5ni钢的机械性能。通过电子背散射衍射法研究了微观结构的演化。 arb处理的标本在500℃和600℃之间进行退火30分钟,并阐述了这些退火过程的效果。结果在ARB过程周期期间显示出显着降低的马氏体相。此外,在6-循环arb加工标本中获得了精制和稳定的超细结构。结果还表明,通过在550℃下退火1周期样品,鉴定了没有明显的微观结构变化和机械性能变化。因此,未在500℃下对6循环arb加工标本的退火通知显着的微观结构变化和机械性能变化。然而,在两个条件下在600℃下退火导致变形结构的完全重结晶。在550℃下在6周期的Arb处理样本中退火显示部分重结晶以及异常的晶粒生长特性。通过在600℃下退火1-循环arb加工标本来看出异常晶粒生长。在这些标本中讨论了脱位的变化特征,改变了低兰大角晶晶界的动态。拉伸试验结果还显示出在Areb循环的施用中产生的产量/极致拉伸强度的显着增加。虽然ARB过程导致总伸长率的快速减少,但高温退火期间的全部恢复将此值返回初始,非变形的条件。

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