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首页> 外文期刊>Journal of Korean Institute of Metal and Materials >Effect of Microstructural Factors on Fatigue and Fatigue Crack Propagation Behaviors of Mill-Annealed Ti-6Al-4V Alloy
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Effect of Microstructural Factors on Fatigue and Fatigue Crack Propagation Behaviors of Mill-Annealed Ti-6Al-4V Alloy

机译:微观结构因素对研磨 - 6AL-4V合金疲劳和疲劳裂纹谱分化的影响

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摘要

To understand the effect of microstructural factors (i.e., the size of alpha phase, equiaxed vs bimodal structure) on high cycle fatigue (HCF) and fatigue crack propagation (FCP) behaviors of mill-annealed Ti-6Al-4V (Ti64) alloy, three specimens of EQ (equiaxed)-8 (8 indicates the size of alpha grain), BM (bimodal)-8, and BM-16 were studied. The uniaxial HCF and FCP tests were conducted at an R ratio of 0.1 under sinusoidal fatigue loading. The microstructural influence (i.e., EQ vs BM) was not significant on the tensile properties of millannealed Ti64 alloy, and showed an increase in tensile strength and elongation with decreasing gauge thickness from 50 mm to 1.3 mm. The microstructure, on the other hand, affected the resistance to HCF substantially. It was found that the EQ structure in mill-annealed Ti64 has better resistance to HCF than the BM structure, as a result of different crack initiation mechanism. Unlike HCF behavior, the effect of microstructural features on the FCP behavior of mill-annealed Ti64 was not significant. Among the three specimens, BM-16 specimen showed the highest near-threshold Delta K value, probably because it had the greatest slip reversibility with large alpha grains. The effect of microstructural factors on the HCF and FCP behaviors of mill-annealed Ti64 alloy are discussed based on fractographic and micrographic observations.
机译:要了解微观结构因子(即,α相尺寸,等式轴的尺寸,等轴的Vs Bimodal结构)对研磨退火的Ti-6Al-4V(Ti64)合金的高循环疲劳(HCF)和疲劳裂纹繁殖(FCP)行为,研究了三种(Equiaxed)-8(8表示α粒的尺寸),研究了BM(Bimodal)-8和BM-16。单轴HCF和FCP试验以窦侧疲劳负载下的0.1的R比进行。微观结构影响(即,EQ VS BM)对米兰的Ti64合金的拉伸性能并不显着,并且表现出拉伸强度和伸长率的增加,测量值厚度从50mm至1.3mm。另一方面,微观结构基本上影响了对HCF的抵抗力。结果发现,由于不同的裂纹引发机制,研磨退火的Ti64中的EQ结构具有比BM结构更好地对HCF的抵抗力。与HCF行为不同,微观结构特征对轧机退火TI64的FCP行为的影响并不显着。在三个标本中,BM-16试样显示出最高的近阈值ΔK值,可能是因为它具有最大的滑移可逆性与大型α谷物。基于法规和显微观测,讨论了微观结构因子对轧机退火Ti64合金的HCF和FCP行为的影响。

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