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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effect of cooling process on the formation of duplex microstructure in Zr-2.3Nb alloy
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Effect of cooling process on the formation of duplex microstructure in Zr-2.3Nb alloy

机译:冷却工艺对Zr-2.3Nb合金双相组织形成的影响

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摘要

The cooling process is important for the formation of duplex microstructure in Zr-Nb alloy. To further understand its effect on the microstructure, three cooling methods, furnace cooling, air cooling and water cooling, were carried out on the annealed specimens. The results show that the equiaxed microstructure can be obtained in furnace-cooled specimens with equiaxed alpha grains and residual beta phase, and the duplex microstructure can be obtained via the air cooling and water cooling processes, in spite of the different transformation mechanisms and phase constitutions. The duplex microstructure for the air cooling process was formed via diffusion-type transformation and consisted of primary alpha phase, secondary alpha phase, omega phase and the residual beta phase, while for the water cooling process it was formed via displacive-type transformation and consisted of primary alpha phase, alpha' phase and omega phase. There were many dislocations within the alpha' phase for the microstrain during the phase transformation. The strength increased and elongation decreased with increasing cooling rate. However, the air- and water-cooled specimens possessed a high value of product of strength and elongation, revealing a high security for the two duplex microstructures, in spite of their differences. (C) 2015 Elsevier B.V. All rights reserved.
机译:冷却过程对Zr-Nb合金中双相组织的形成很重要。为了进一步了解其对显微组织的影响,对退火后的试样进行了三种冷却方法,即炉冷,空冷和水冷。结果表明,尽管转变机理和相组成不同,但具有等轴α晶粒和残留β相的炉冷试样可以得到等轴显微组织,通过空冷和水冷过程可以得到双相显微组织。 。空冷过程的双相微观结构是通过扩散型转变形成的,由初生α相,次生α相,ω相和残留的β相组成,而水冷过程是通过置换型转变而形成的,由主要α相,α'相和ω相在相变过程中,微应变的α'相内有许多位错。随着冷却速率的增加,强度增加而伸长率降低。但是,风冷和水冷的标本具有很高的强度和伸长率乘积值,尽管存在差异,但对两个双相显微组织却显示出很高的安全性。 (C)2015 Elsevier B.V.保留所有权利。

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