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Heterogeneous lamella structure unites ultrafine-grain strength with coarse-grain ductility

机译:非均质薄片结构将超细颗粒强度与粗颗粒延展性结合在一起

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摘要

Grain refinement can make conventional metals several times stronger, but this comes at dramatic loss of ductility. Here we report a heterogeneous lamella structure in Ti produced by asymmetric rolling and partial recrystallization that can produce an unprecedented property combination: as strong as ultrafine-grained metal and at the same time as ductile as conventional coarse-grained metal. It also has higher strain hardening than coarse-grained Ti, which was hitherto believed impossible. The heterogeneous lamella structure is characterized with soft micrograined lamellae embedded in hard ultrafine-grained lamella matrix. The unusual high strength is obtained with the assistance of high back stress developed from heterogeneous yielding, whereas the high ductility is attributed to back-stress hardening and dislocation hardening. The process discovered here is amenable to large-scale industrial production at low cost, and might be applicable to other metal systems.
机译:晶粒细化可以使常规金属的强度提高几倍,但这会大大降低延展性。在这里,我们报告了通过不对称轧制和部分再结晶而在Ti中产生的非均质薄片结构,该组织可产生前所未有的性能组合:与超细晶粒金属一样坚固,同时又与常规粗晶粒金属一样具有韧性。它也比迄今认为不可能的粗晶粒Ti具有更高的应变硬化。非均质薄片结构的特征在于,将软的微颗粒薄片嵌入硬的超细颗粒薄片基质中。借助异质屈服产生的高背应力可获得异常的高强度,而高延展性归因于背应力硬化和位错硬化。此处发现的工艺适合于低成本大规模工业生产,并且可能适用于其他金属系统。

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