Microstructure Mechanisms Governing the Creep Life of Ultrafine-Grained Cu-0.2 wt%Zr Alloy

材料科学 微观结构 蠕动 合金 冶金
作者
Pétr Král,Milan Svoboda,Jiří Dvořák,Marie Kvapilová,Václav Sklenička
出处
期刊:Acta Physica Polonica A [Polish Academy of Sciences]
卷期号:122 (3): 457-460 被引量:17
标识
DOI:10.12693/aphyspola.122.457
摘要

Equal-channel angular pressing was conducted at room temperature and extrusion was performed up to 12 passes using route where the billets were rotated by 90 • in the same sense between consecutive passes.Tensile creep tests were performed at 473, 573 and 673 K at dierent constant applied stresses.It was observed that the original coarse grain size of unprocessed alloy was reduced to 0.3 µm after 8 equal-channel angular pressing passes and the grain growth during creep was restricted by precipitates with the mean diameter ≈ 4.0 nm.No signicant eect on creep resistance was found after one equal-channel angular pressing pass at 473 and 573 K.However, the longest time to fracture was exhibited by alloy after 2 equal-channel angular pressing passes at 573 and 673 K but with further increasing number of equal-channel angular pressing passes a decrease in the time to fracture was observed.Nevertheless, the benecial eect of equal-channel angular pressing on creep resistance was still documented after 8 passes for temperatures of 473 and 573 K.By contrast, creep tests performed at 673 K showed that the time to fracture of ultrane-grained material is shorter as compared with that for as-received state.The 3D laser measurement of surface showed that the creep fracture process is accelerated by formation of vertical surface step relief and cavitation at the intersection of the shear bands during creep.
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