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Low-temperature superplasticity of ultra-fine-grained Ti-6Al-4V processed by equal-channel angular pressing

机译:等通道转角挤压超细晶粒Ti-6Al-4V的低温超塑性

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摘要

The low-temperature superplasticity of ultra-fine-grained (UFG) Ti-6Al-4V was established as a function of temperature and strain rate. The equiaxed-alpha grain size of the starting material was reduced from 11 to 0.3 µm (without a change in volume fraction) by imposing an effective strain of ∼4 via isothermal, equal-channel angular pressing (ECAP) at 873 K. The ultrafine microstructure so produced was relatively stable during annealing at temperatures up to 873 K. Uniaxial tension and load-relaxation tests were conducted for both the starting (coarse-grained (CG)) and UFG materials at temperatures of 873 to 973 K and strain rates of 5 × 10−5 to 10−2 s−1. The tension tests revealed that the UFG structure exhibited considerably higher elongations compared to those of the CG specimens at the same temperature and strain rate. A total elongation of 474 pct was obtained for the UFG alloy at 973 K and 10−4 s−1. This fact strongly indicated that low-temperature superplasticity could be achieved using an UFG structure through an enhancement of grain-boundary sliding in addition to strain hardening. The deformation mechanisms underlying the low-temperature superplasticity of UFG Ti-6Al-4V were also elucidated by the load-relaxation tests and accompanying interpretation based on inelastic deformation theory.
机译:建立了超细晶粒(UFG)Ti-6Al-4V的低温超塑性,它是温度和应变速率的函数。通过在873 K下通过等温,等通道角挤压(ECAP)施加〜4的有效应变,可以将起始材料的等轴α晶粒尺寸从11减小至0.3 µm(体积分数不变)。如此产生的微观结构在温度高达873 K的退火过程中相对稳定。在873至973 K的温度下,对初始(粗晶粒(CG))和UFG材料进行了单轴拉伸和负载松弛测试。 5×10−5 至10−2 s-1 。拉伸试验表明,在相同温度和应变速率下,UFG结构比CG样品具有更高的伸长率。 UFG合金在973 K和10-4 s-1 下的总伸长率为474 pct。这一事实强烈表明,使用UFG结构,除了应变硬化外,还可以通过增强晶界滑动来实现低温超塑性。 UFG Ti-6Al-4V低温超塑性的变形机理也通过载荷松弛试验以及基于非弹性变形理论的解释得到了阐明。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2006年第2期|381-391|共11页
  • 作者单位

    the Department of Materials Science and Engineering Pohang University of Science and Technology 790-784 Pohang Korea;

    the Department of Materials Science and Engineering Pohang University of Science and Technology 790-784 Pohang Korea;

    the Department of Metallurgy and Materials Science Hanyang University 425-791 Gyeonggi-Do Korea;

    the Air Force Research Laboratory AFRL/MLLM 45433-7817 Wright-Patterson AFB OH;

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