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High-Temperature Deformation Behavior and Microstructural Characterization of Ti-35421 Titanium Alloy

机译:Ti-35421钛合金高温变形行为及微观结构表征

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摘要

A self-designed Ti-35421 (Ti-3Al-5Mo-4Cr-2Zr-1Fe wt%) titanium alloy is a new type of low-cost high strength titanium alloy. In order to understand the hot deformation behavior of Ti-35421 alloy, isothermal compression tests were carried out under a deformation temperature range of 750–930 °C with a strain rate range of 0.01–10 s−1 in this study. Electron backscatter diffraction (EBSD) was used to characterize the microstructure prior to and post hot deformation. The results show that the stress–strain curves have obvious yielding behavior at a high strain rate (>0.1 s−1). As the deformation temperature increases and the strain rate decreases, the α phase content gradually decreases in the α + β phase region. Meanwhile, spheroidization and precipitation of α phase are prone to occur in the α + β phase region. From the EBSD analysis, the volume fraction of recrystallized grains was very low, so dynamic recovery (DRV) is the dominant deformation mechanism of Ti-35421 alloy. In addition to DRV, Ti-35421 alloy is more likely to occur in continuous dynamic recrystallization (CDRX) than discontinuous dynamic recrystallization (DDRX).
机译:自行设计的Ti-35421(Ti-3Al-5Mo-4Cr-2Zr-1Fewt%)钛合金是一种新型的低成本高强度钛合金。为了了解Ti-35421合金的热变形行为,在750-930℃的变形温度范围内进行等温压缩试验,在本研究中应变速率范围为0.01-10S-1。电子反向散射衍射(EBSD)用于在热变形之前表征微结构。结果表明,应力 - 应变曲线在高应变率(> 0.1S-1)处具有明显的产生行为。随着变形温度的增加并且应变率降低,α相含量在α+β相区域逐渐减小。同时,在α+β相区域中易患α相的球化和沉淀。从EBSD分析中,重结晶晶粒的体积分数非常低,因此动态恢复(DRV)是Ti-35421合金的主要变形机制。除DRV外,TI-35421合金更可能发生在连续的动态再结晶(CDRX)中,而不是不连续的动态再结晶(DDRX)。

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