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Ultrasonic assisted equal channel angular extrusion (UAE) as a novel hybrid method for continuous production of ultra-fine grained metals

机译:超声辅助等通道角挤压(UAE)作为连续生产超细晶粒金属的新型混合方法

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摘要

The propagation of high-intensity ultrasonic vibration (UV) into metals can influence on mechanical and microstructure properties. The main objective of this research is to introduce a new hybrid method for improving limitations of the conventional equal channel angular extrusion (CECAE) process by using superimposed ultrasonic vibration on billet in the plastic deformation zone (PDZ) directly. The experimental set-up was designed and fabricated for the UAE process of commercially pure aluminum (99.5%) with two distinct wave propagation directions as laterally (L-UAE) or vertically (V-UAE). By combining of high-intensity UV with the ECAE process, ultra-fine grained (UFG) aluminum with grain size about similar to 2 mu m was attained only with one pass, enabling even higher values of microhardness on processed samples. Moreover, the required load with UAE was about 30% lower than CECAE. Finite element simulations further confirmed the more plastic deformation during UAE than CECAE. The use of UV vertically against extrusion direction (V-UAE) showed better homogeneity in strain, grain size and hardness distributions. (C) 2016 Elsevier B.V. All rights reserved.
机译:高强度超声振动(UV)传播到金属中会影响机械和微观结构的性能。这项研究的主要目的是引入一种新的混合方法,通过直接在塑性变形区(PDZ)的坯料上叠加超声振动来改善常规等通道角挤压(CECAE)工艺的局限性。实验装置是为阿联酋工业纯铝(99.5%)工艺设计和制造的,具有两个不同的波传播方向,即横向(L-UAE)或垂直(V-UAE)。通过将高强度紫外线与ECAE工艺相结合,只需一次通过即可获得粒度约为2微米的超细晶粒(UFG)铝,从而使加工后的样品具有更高的显微硬度值。此外,阿联酋所需的负荷比CECAE低约30%。有限元模拟进一步证实了阿联酋比CECAE具有更大的塑性变形。垂直于挤出方向使用紫外线(V-UAE)在应变,晶粒尺寸和硬度分布方面显示出更好的均匀性。 (C)2016 Elsevier B.V.保留所有权利。

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