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Advances in Superplasticity of Ultrafine-Grained Alloys: Recent Research and Development

机译:超细颗粒合金超塑性的进展:最近的研发

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Recent studies have revealed that ultrafine-grained (UFG) metals and alloys produced by severe plastic deformation (SPD) can demonstrate extraordinary superplasticity at low temperatures and/or high strain rates. This work presents new results on superplasticity in several UFG Al and Ti alloys focusing on microstructural evolution and strain hardening, as well as the challenges of their application. Grain refinement in these alloys was accomplished using severe plastic deformation techniques, including new modifications of equal channel angular pressing (ECAP). Unusual behavior of UFG alloys originates both from the formation of ultrafine grain by SPD processing as well as the state of grain boundaries in these materials. It is established that superplastic deformation allowed not only to attain their efficient forming, but also to improve the ultrafine-grained structure and to obtain enhanced mechanical properties in the articles produced. The results demonstrate the possibilities of new applications of superplastic forming using bulk nanostructured materials.
机译:最近的研究表明,由严重塑性变形(SPD)产生的超细粒子(UFG)金属和合金可以在低温和/或高应变率下表现出非凡的超复制性。这项工作提出了几种UFG Al和Ti合金中的超塑性的新结果,其专注于微观结构演化和应变硬化,以及其应用的挑战。使用严重的塑性变形技术完成这些合金中的晶粒细化,包括相等通道角压(ECAP)的新修改。 UFG合金的不寻常行为来自通过SPD处理的超细晶粒的形成以及这些材料中的晶界状态。建立超塑性变形不仅允许其有效的成形,而且还允许改善超细颗粒结构,并在所产生的物品中获得增强的机械性能。结果证明了使用块状纳米结构材料的超塑性形成新应用的可能性。

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