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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Deformation behavior of carbon steel with dispersed fine voids at elevated temperatures
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Deformation behavior of carbon steel with dispersed fine voids at elevated temperatures

机译:高温下具有分散细小空隙的碳钢的变形行为

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A carbon steel containing dispersed fine voids, with diameters in the range of 3-5 μm, was deformed in compression at temperatures between 1063 K and 1153 K and at true strain rates from 4.2 ×10~(-5) s~(-1) to 4.2× 10~(-3)s~(-1). The deformation behavior did not differ much from that of a carbon steel without voids. The maximum stress and the corresponding maximum strain increased in the presence of a dispersion of voids, and, as a consequence the occurrence of dynamic recrystallization (DRX) was also slightly delayed. Furthermore, the yield stress and the steady-state stress increased by about 10%. The shape and distribution of voids changed depending upon strain, strain rate and temperature. With decreasing strain rate and increasing temperature, the aspect ratio of the voids decreased. These observed effect of voids on high temperature deformation behavior and the void shape change during deformation are discussed in relation with such mechanisms as DRX, grain boundary migration, grain boundary sliding and relaxation.
机译:直径为3-5μm的含有分散的细小空隙的碳钢在1063 K和1153 K之间的温度下以4.2×10〜(-5)s〜(-1)的真实应变率压缩变形)至4.2×10〜(-3)s〜(-1)。变形行为与没有空隙的碳钢没有太大差异。在存在空隙分散的情况下,最大应力和相应的最大应变增加,因此,动态重结晶(DRX)的出现也略有延迟。此外,屈服应力和稳态应力增加了约10%。空隙的形状和分布根据应变,应变速率和温度而变化。随着应变率的降低和温度的升高,空隙的纵横比减小。结合DRX,晶界迁移,晶界滑动和弛豫等机制,讨论了空隙对高温变形行为和变形过程中空隙形状变化的影响。

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