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Cavitation Behavior of Ultra-Fine Grained Ti-6Al-4V Alloy Produced by Equal-Channel Angular Pressing

机译:通过相等通道角压制产生的超细颗粒Ti-6Al-4V合金的空化行为

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Cavitation behavior during superplastic flow of ultra-fine grained (UFG) Ti-6Al-4V alloy was established with the variation of grain size and misorientation. After imposing an effective strainup to 8 via equal-channel angular pressing (ECAP) at 873 K, alpha-phase grains were markedly refined from 11 μm to ≈ 0.3 μm, and misorientation angle was increased. Uniaxial-tension tests were conducted for initial coarse grained (CG) and two UFG alloys (ε = 4 and 8) at temperature of 973 K and strain rate of 10{sup}(-4) s{sup}(-1). Quantitative measurements of cavitation evidenced that both the average size and the area fraction of cavities significantly decreased with decreasing grain size and/or increasing misorientation. It was also found that, when compared to CG alloy, cavitation as well as diffused necking was less prevalent in UFG alloys, which was presumably due to the higher value of strain-rate sensitivity. Based on the several theoretical models describing the cavity growth behavior, the cavity growth mechanism in UFG alloys was suggested.
机译:用晶粒尺寸和杂散的变化建立了超细晶粒(UFG)Ti-6Al-4V合金的超细晶粒(UFG)Ti-6Al-4V合金的耐气相流性。在873k处通过等通道角压(ECAP)将有效的过滤至8升至8,将α-阶段晶粒显着改进11μm至≈0.3μm,并且增加了错位角。在973k(-4)( - 4)S {sup}( - 1)的温度下,对初始粗粒(Cg)和两个UFG合金(ε= 4和8)进行单轴张力试验。空化的定量测量证明,随着晶粒尺寸和/或越来越多的杂志而显着降低了腔的平均尺寸和面积分数显着降低。还发现,与Cg合金相比,UFG合金中的空化以及扩散颈差异不太普遍,这可能是由于应变率灵敏度的值较高。基于描述腔生长行为的几种理论模型,提出了UFG合金中的腔生长机制。

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