首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Grain refinement and superplastic flow in friction stir processed Ti-15V-3Cr-3Sn-3Al alloy
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Grain refinement and superplastic flow in friction stir processed Ti-15V-3Cr-3Sn-3Al alloy

机译:摩擦搅拌加工的晶粒细化和超塑性流动Ti-15V-3Cr-3Sn-3Al合金

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摘要

The rolled Ti-15V-3Cr-3Sn-3Al (Ti-15-3) alloy (metastable beta titanium alloy) sheet with an average grain size of 44.0 mu m was subjected to friction stir processing (FSP) at a tool rotation speed of 250 rpm and a tool traverse speed of 100 mm/min (250-100). Thereafter, a fine-grained (similar to 6.6 mu m) and relatively equiaxed microstructure with a high angle grain boundary (HAGB) ratio of 74.5% was observed in the stir zone (SZ). Superplastic tensile tests were then conducted on this microstructure at the temperatures ranging from 600 degrees C to 800 degrees C and strain rates range of 1 x 10(-4)-1 x 10(-2) s(-1), and an excellent lowtemperature superplasticity (LTSP) with the elongation of 463% was obtained at 650 degrees C and 1 x 10(-4) s(-1). In addition, the microstructure in the gauge section of the tensile specimens interrupted at different engineering strains of 20%, 50%, 200%, and 463% (tensile fractured) at the optimal superplastic tensile condition of 650 degrees C and 1 x 10(-4) s(-1) was studied. It was found that the precipitated alpha phase increased with the increasing strain, which contributed to the achievement of an enhanced LTSP by inhibiting the grain growth. Moreover, the alpha grains with a finer grain size of 4.4 mu m was observed in the gauge section of the tensile fractured specimen and this was attributed to the occurrence of continuous dynamic recrystallization (CDRX). Therefore, the superplastic deformation mechanism of the Ti-15-3 alloy is recognized as grain boundaries sliding (GBS) accompanied with dislocation movement and CDRX at 650 degrees C and 1 x 10(-4) s(-1). (C) 2019 Published by Elsevier B.V.
机译:轧制的Ti-15V-3CR-3SN-3AL(TI-15-3)合金(Ti-15-3)合金(亚稳β钛合金)片平均晶粒尺寸为44.0μmM,以摩擦搅拌加工(FSP)以工具转速250 rpm和刀具横向速度为100 mm / min(250-100)。此后,在搅拌区(Sz)中观察到具有高角度晶界(HAGB)比的细粒(类似于6.6μm)和相对等式的微观结构。超塑性拉伸试验然后在此微结构在温度范围从600摄氏度到800摄氏度下进行和应变率的范围为1×10(-4)-1×10(-2)S(-1),和优异的在650℃和1×10(-4)S(-1)中获得伸长463%的低温超塑性(LTSP)。另外,在拉伸的计量段的微观结构在在650℃和1×10最佳超塑性拉伸条件的20%,50%,200%,和463%(拉伸断裂)不同的工程应变(标本中断-4)S(-1)是研究过的。发现沉淀的α相随菌株的增加而增加,这有助于通过抑制晶粒生长来实现增强的LTSP。此外,在拉伸断裂试样的计量段中观察到的alpha颗粒与4.4微米更细的晶粒尺寸和归因于连续动态再结晶(CDRX)的发生。因此,Ti-15-3合金的超塑性变形机制被认为是伴随着位错(GBS)的晶界(GB),并且在650℃和1×10(-4)S(-1)中的脱位运动和CDRX。 (c)2019年由elestvier b.v发布。

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