Ti-6Al-4V合金在不同工藝條件下水淬后的組織演變(英文)
發(fā)布時(shí)間:2021-10-08 23:45
為了獲得Ti-6A1-4V合金最佳的機(jī)械性能,重點(diǎn)在于了解在不同工藝條件下水淬后的微觀結(jié)構(gòu)演變?墒褂脽崮M機(jī)進(jìn)行Ti-6A1-4V合金的熱模擬。結(jié)果表明,試樣經(jīng)過(guò)固溶處理后可獲得完全的馬氏體組織。固溶后水淬導(dǎo)致硬度增加,這歸因于α’和α"的存在。試樣在850℃等溫保溫且進(jìn)行水淬后形成層狀結(jié)構(gòu),硬度進(jìn)一步提高。850℃下經(jīng)變形后水淬出現(xiàn)等軸晶,由于晶界的強(qiáng)化,維氏硬度(HV)達(dá)到最大值(5840 MPa)。試樣在850℃變形后等溫保持在600℃時(shí),組織由α相,層狀α/β和等軸晶粒組成。變形后的冷卻及等溫保溫處理導(dǎo)致α相及晶粒尺寸增大,其尺寸范圍在324~706 nm之間,導(dǎo)致硬度降低。
【文章來(lái)源】:稀有金屬材料與工程. 2020,49(09)北大核心EISCICSCD
【文章頁(yè)數(shù)】:7 頁(yè)
【文章目錄】:
1 Experiment
2 Results and Discussion
2.1 Hardness and stress-strain curve
2.1.1 Vickers hardness
2.1.2 Stress-strain curve
2.2 Microstructures of the specimens
2.2.1 Optical microscopy microstructure
2.2.2 SEM and TEM observation
2.2.3 XRD analysis
2.3 Microstructural evolution under different processing conditions
3 Conclusions
本文編號(hào):3425208
【文章來(lái)源】:稀有金屬材料與工程. 2020,49(09)北大核心EISCICSCD
【文章頁(yè)數(shù)】:7 頁(yè)
【文章目錄】:
1 Experiment
2 Results and Discussion
2.1 Hardness and stress-strain curve
2.1.1 Vickers hardness
2.1.2 Stress-strain curve
2.2 Microstructures of the specimens
2.2.1 Optical microscopy microstructure
2.2.2 SEM and TEM observation
2.2.3 XRD analysis
2.3 Microstructural evolution under different processing conditions
3 Conclusions
本文編號(hào):3425208
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