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The effect of twinning on the work-hardening behavior and microstructural evolution of hafnium

机译:孪晶对of的加工硬化行为和组织演变的影响

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The work-hardening behavior of hexagonal-close-packed (hcp) metals, such as hafnium, is influenced by temperature, strain rate, chemistry, and texture. In the case of hafnium, while slip on the prism and pyramidal planes is dominant during deformation, the propensity of deformation twinning is known to increase with decreasing temperature and increasing strain rate. In this study, hafnium was prestrained quasi-statically in compression at liquid nitrogen temperature (77 K), creating a heavily twinned microstructure. The specimens were then reloaded in compression at room temperature (298 K). Yield stress, flow stress, and work-hardening behaviors of the prestrained specimens were higher than room-temperature compression test data typical of the as-annealed material. The microstructure of each specimen was characterized optically and using a transmission electron microscope (TEM). Texture was measured by neutron diffraction and the texture evolution due to twinning, and the interaction of slip with the twins was seen to lead to higher work-hardening rates and flow stresses in the cold prestrained specimens.
机译:六方密排(hcp)金属(例如ha)的加工硬化行为受温度,应变速率,化学性质和织构的影响。在of的情况下,虽然在变形过程中棱镜和锥体平面上的滑动占主导,但众所周知,变形孪晶的倾向会随着温度降低和应变速率的增加而增加。在这项研究中,ha在液氮温度(77 K)的压缩中被准静态预压缩,从而形成了高度孪生的微观结构。然后在室温(298 K)下压缩加载样品。预应变试样​​的屈服应力,流动应力和加工硬化行为高于退火材料的典型室温压缩试验数据。使用透射电子显微镜(TEM)对每个样品的微观结构进行光学表征。通过中子衍射和孪晶引起的织构演变来测量织构,滑移与孪晶的相互作用被认为导致冷预应变试样​​中更高的加工硬化率和流动应力。

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