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Microstructures and mechanical properties of pure tantalum processed by high-pressure torsion

机译:高压扭转加工纯钽的组织与力学性能

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摘要

A body-centred cubic (BCC) structure metal, tantalum, was processed by high- pressure torsion (HPT) at room temperature with different numbers of rotations. The microstructural evolution was studied by electron backscatter diffraction (EBSD). The grain sizes were significantly refined at the disk edge area in the early stages of deformation (N = 0.5) but tended to attain saturation after the numbers of rotations was increased to N = 5. As the deformation continued, some coarse grains appeared in the disk edge areas and it appeared that there was structural recovery at the expense of grain boundary migration in the tantalum during HPT processing. Microhardness measurements showed the hardness gradually evolved towards a more homogenized level across the disk surfaces as the numbers of rotations increased. The hardness level after N = 10 turns was slightly lower than after N = 5 turns, thereby indicating the occurrence of a recovery process after 5 turns
机译:在室温下通过不同旋转数的高压扭转(HPT)处理了以体心立方(BCC)结构的金属钽。通过电子背散射衍射(EBSD)研究了微观结构的演变。在变形的早期阶段(N = 0.5),晶粒尺寸在圆盘边缘区域显着细化,但在转数增加到N = 5之后趋于达到饱和。随着变形的继续,在变形过程中会出现一些粗大的晶粒。盘边缘区域,似乎在HPT处理过程中以钽中的晶界迁移为代价进行了结构恢复。显微硬度测量结果表明,随着转数的增加,整个磁盘表面的硬度逐渐趋于均匀化。 N = 10圈后的硬度水平略低于N = 5圈后的硬度水平,因此表明5圈后出现了恢复过程

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