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Towards Enhancement of Properties of UFG Metals amd Alloys by Grain Boundary Engineering Using SPD Processing

机译:利用SPD加工通过晶界工程提高UFG金属和合金的性能

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Nanostructuring of metals and alloys by severe plastic deformation techniques is an effective way of enhancing their mechanical and functional properties. The features of the nanostructured materials produced by severe plastic deformation are stipulated by forming of ultrafine-sized grains as well as by the state of grain boundaries. The concept of grain boundary engineering of ultra.ne-grained metals and alloys is developed for enhancement of their properties by tailoring grain boundaries of different types (low-angle and high-angle ones, special and random, equilibrium and nonequilibrium) and formation of grain boundary segregations and precipitations by severe plastic deformation processing. In this article, using this approach and varying regimes and routes of severe plastic deformation processing, we show for several light alloys (Al and Ti) the ability to produce ultrafine-grained materials with different grain boundaries, and this can have a drastic effect on the mechanical behavior of the processed materials. This article demonstrates also several new examples of attaining superior strength and ductility as well as enhanced superplasticity at low temperatures and high strain rates in various ultrafine-grained metals and alloys.
机译:通过严格的塑性变形技术对金属和合金进行纳米结构化是增强其机械和功能特性的有效方法。严重塑性变形产生的纳米结构材料的特征是由超细晶粒的形成以及晶界的状态决定的。超细晶粒金属和合金的晶界工程概念是为了通过调整不同类型(低角度和高角度,特殊和随机,平衡和非平衡)的晶界并形成合金来增强其性能而开发的。严重的塑性变形过程导致晶界偏析和析出。在本文中,使用这种方法以及严重塑性变形处理的不同方式和途径,我们证明了几种轻合金(Al和Ti)具有生产具有不同晶界的超细晶粒材料的能力,并且可以对合金产生巨大的影响。加工材料的机械性能。本文还演示了在各种超细晶粒金属和合金中在低温和高应变率下获得卓越的强度和延展性以及增强的超塑性的几个新实例。

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