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Effects of annealing on microstructure and mechanical properties of nano-grained titanium produced by combination of asymmetric and symmetric rolling

机译:退火对非对称和对称轧制纳米晶钛组织和力学性能的影响

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摘要

Nano-grained (NG) commercially pure (CP, grade 2) Ti with average grain size of 80 nm was produced by the combination of asymmetric and symmetric rolling at room temperature. The effects of annealing on mechanical properties and microstructure of this NG Ti were investigated systematically. Examination using transmission electron microscopy (TEM) revealed that the annealed Ti samples possessed ultrafine-grained (UFG) structure in which grain size was below 200 nm even though annealed at 400℃ for 30 min, which suggested considerable thermal stability of the microstructure. X-ray diffraction (XRD) results showed that the preferred orientations along the (0 0 0 2) and (1 0 1 3) crystal plane were formed in the NG Ti and both the two preferred orientation were slightly decreased with the increase of annealing temperature. It was found that annealing of this NG Ti with appropriate temperature and time resulted in the abnormal effect that the microhardness, strength and ductility were simultaneously enhanced as compared to the as-processed state. Further increasing of the annealing temperature and time leads to the decrease of microhardness and strength. Strain rate jump tests revealed that the strain-rate sensitivity (SRS) parameter m of the NG Ti was slightly enhanced with the increase of annealing temperature. The mechanisms of variations in mechanical properties were analyzed based on microstructure evolution of the annealed NG Ti.
机译:通过在室温下进行不对称轧制和对称轧制,生产出平均粒径为80 nm的纳米级(NG)商业纯钛(CP,等级2)Ti。系统研究了退火对这种NG Ti的力学性能和组织的影响。用透射电子显微镜(TEM)检查发现,即使在400℃下退火30min,退火后的Ti样品仍具有超细晶(UFG)结构,其晶粒尺寸小于200nm,这表明该组织具有相当大的热稳定性。 X射线衍射(XRD)结果表明,在NG Ti中沿(0 0 0 2)和(1 0 1 3)晶面形成了择优取向,并且随着退火的增加,这两个择优取向均略有减小。温度。发现在适当的温度和时间下对该NG Ti进行退火导致异常效果,与加工状态相比,其同时提高了显微硬度,强度和延展性。退火温度和时间的进一步增加导致显微硬度和强度的降低。应变速率跳跃测试表明,随着退火温度的升高,NG Ti的应变速率灵敏度(SRS)参数m略有提高。基于退火后的NG Ti的组织演变分析了力学性能变化的机理。

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