Correlation between microstructure and room-temperature deformation behavior of the hydrogenated Ti-6Al-4V alloy
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摘要: 應用壓縮實驗研究置氫Ti-6Al-4V合金的室溫力學行為,采用OM、SEM分析了氫對鈦合金組織的影響和斷口形貌特征,探討了置氫鈦合金組織和室溫變形行為之間的相關性.結果表明:氫的固溶強化作用使置氫Ti-6Al-4V合金硬化效應增加,但適量的氫可以顯著降低其壓縮屈服強度和彈性模量,且斷裂時發生的變形量增加,此時合金組織為α+β的雙態組織,當合金中產生粗大的β晶粒時,斷裂時發生的變形量顯著降低;氫的加入促進了合金中斜方馬氏體α″的生成;置氫Ti-6Al-4V合金的室溫壓縮斷口為延性沿晶斷裂或脆性沿晶斷裂和解理型穿晶斷裂兩種斷裂方式的混合斷口.Abstract: The room temperature behavior of the hydrogenated Ti-6Al-4V alloy was investigated by compression test ences of hydrogen on the microstructure and the morphology of fracture were analyzed. The correlation between room-temperature plasticity of the hydrogenated Ti-6Al-4V alloy was explored. The results show that the hardening effect of the hy-drogenated Ti-6Al-4V alloy is enhanced due to the solution strengthening function of hydrogen, but the addition of appropriate hydrogen to the Ti-6Al-4V alloy can dramatically decrease the yield strength and elastic modulus and can increase the compression ratio of the alloy with the α + β binary microstructure. The compression ratio wiU fall largely when there are coarse β grains in the alloy. Moreover, the addition of hydrogen can promote the generation of orthorhombic martensite α″. The fracture of the hydrogenated Ti-6Al-4V alloy generally displays as compounded one of ductile or brittle intercrystalline fracture and transcrystalline fracture.
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Key words:
- titanium alloy /
- hydrogenation /
- microstructure /
- room-temperature deformation
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