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首页> 外文期刊>Materials Science and Engineering >Deformation heterogeneity and its effect on recrystallization behavior in commercially pure titanium: Comparative study on initial microstructures
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Deformation heterogeneity and its effect on recrystallization behavior in commercially pure titanium: Comparative study on initial microstructures

机译:商业纯钛的变形异质性及其对重结晶行为的影响:初始微观结构的比较研究

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摘要

Commercially pure titanium (CP-Ti) has seen major applications in medical and chemical equipment. However, improving its strength in its coarse-grained state is expected to extend its usage in structural applications. This study demonstrated that tailoring bimodal grain structures (in terms of grain size or shape) in CP-Ti offers a new way to enhance its mechanical properties. For this, an extensive effort was made to clarify the relationship between the initial microstructures and the deformation heterogeneities of a CP-Ti (Gr. 2). Samples with initially equiaxed (EQ), bimodal (BM), and lamellar (LM) microstructures were cold-rolled and subjected to annealing at different temperatures. The results showed that variations in initial grain orientation, size, and morphology result in different deformation heterogeneities during the plastic deformation, which in turn play an important role in determining the recrystallization kinetics during annealing as well as the resulting mechanical properties. The initial BM and EQ microstructures yielded better mechanical performances in both their initial and cold-rolled states than the initial LM microstructure. Furthermore, the initial BM microstructure exhibited the best strength ductility combination in both their partially and fully recrystallized states.
机译:商业纯钛(CP-Ti)已在医疗和化学设备中获得了主要应用。但是,提高其在粗颗粒状态下的强度有望扩展其在结构应用中的用途。这项研究表明,在CP-Ti中定制双峰晶粒结构(就晶粒尺寸或形状而言)提供了增强其机械性能的新方法。为此,付出了巨大的努力来阐明CP-T​​i的初始微观结构与变形异质性之间的关系(图2)。将具有初始等轴(EQ),双峰(BM)和层状(LM)微结构的样品冷轧,并在不同温度下进行退火。结果表明,初始晶粒取向,尺寸和形态的变化会导致塑性变形过程中不同的变形异质性,进而在确定退火过程中的再结晶动力学以及所产生的机械性能方面起着重要作用。初始的BM和EQ微观结构在初始和冷轧状态下均比初始的LM微观结构产生更好的机械性能。此外,初始的BM显微组织在部分和完全重结晶状态下均表现出最佳的强度延性组合。

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