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Investigation of the grain size effect on mechanical properties of Ti-6A1-4V alloy with equiaxed and bimodal microstructures

机译:等轴双峰组织对Ti-6A1-4V合金力学性能的影响

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In this study, equiaxed microstructures with various grain sizes ranging from 6.0um to 0.3μm and bimodal microstructures with grain sizes of primary a ranging from 5.0um to 0.6nm were successfully fabricated by hot deformation and subsequent annealing in a+β two phase region in Ti-6A1-4V alloy having a martensite initial microstructure. The mechanical properties of both microstructures with different grain sizes were tested at room temperature. It was found that the strength (yield and tensile strength) of both microstructures increased with the decrease of the grain size. In the equiaxed microstructure, the uniform elongation gradually decreased with the decrease of the grain size, which was in consistent with the behavior of other metallic materials with ultrafine grains. However, in the bimodal microstructure, relatively large uniform elongation (-8%) was stably obtained regardless of the grain size. The unique and superior balance between strength and uniform elongation in bimodal microstructures was discussed, considering the contribution of interfaces between primary a grains (α_p) and transformed /β areas (/βtrans).
机译:在这项研究中,通过热变形并随后在a +β两相区中进行退火,成功地制造了具有从6.0um到0.3μm的各种晶粒尺寸的等轴微结构和从a到5.0um到0.6nm的晶粒尺寸的双峰微结构。具有马氏体初始微观结构的Ti-6A1-4V合金。在室温下测试了具有不同晶粒尺寸的两种微结构的机械性能。发现两种组织的强度(屈服强度和拉伸强度)都随着晶粒尺寸的减小而增加。在等轴组织中,均匀伸长率随着晶粒尺寸的减小而逐渐减小,这与其他具有超细晶粒的金属材料的行为是一致的。但是,在双峰微结构中,不管晶粒尺寸如何,都稳定地获得了较大的均匀伸长率(-8%)。考虑到原生a晶粒(α_p)和转变的/β面积(/βtrans)之间的界面作用,讨论了双峰微观结构中强度和均匀伸长率之间的独特而优​​越的平衡。

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