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Grain-Size Distribution Effects on the Attenuation of Laser-Generated Ultrasound in α-Titanium Alloy

机译:粒度分布对α-钛合金中激光产生的超声衰减的影响

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摘要

Average grain size is usually used to describe a polycrystalline medium; however, many investigations demonstrate the grain-size distribution has a measurable effect on most of mechanical properties. This paper addresses the experimental quantification for the effects of grain-size distribution on attenuation in α-titanium alloy by laser ultrasonics. Microstructures with different mean grain sizes of 26–49 μm are obtained via annealing at 800 °C for different holding times, having an approximately log-normal distribution of grain sizes. Experimental measurements were examined by using two different theoretical models: (i) the classical Rokhlin’s model considering a single mean grain size, and (ii) the improved Turner’s model incorporating a log-normal distribution of grain sizes in the attenuation evaluation. Quantitative agreement between the experiment and the latter model was found in the Rayleigh and the Rayleigh-to-stochastic transition regions. A larger attenuation level was exhibited than the classical theoretical prediction considering a single mean grain size, and the frequency dependence of attenuation reduced from a classical fourth power to an approximately second power due to a greater probability of large grains than the assumed Poisson statistics. The provided results would help support the use of laser ultrasound technology for the non-destructive evaluation of grain size distribution in polycrystalline materials.
机译:通常使用平均晶粒度来描述多晶介质。但是,许多研究表明,晶粒尺寸分布对大多数机械性能都有可测量的影响。本文研究了激光超声对晶粒尺寸分布对α-钛合金衰减的影响的实验量化。通过在800°C下进行不同保持时间的退火,可获得具有26-49μm不同平均晶粒尺寸的微结构,其晶粒尺寸近似为对数正态分布。通过使用两种不同的理论模型检查了实验测量结果:(i)考虑单个平均晶粒尺寸的经典Rokhlin模型,以及(ii)在衰减评估中结合了晶粒尺寸的对数正态分布的改进的Turner模型。实验与后一种模型之间的定量一致性在瑞利和瑞利向随机过渡区域中发现。考虑到单个平均晶粒尺寸,其衰减水平比经典理论预测要大,并且衰减的频率依赖性从经典的四次方降低到大约第二次方,这是由于大晶粒的概率大于假定的泊松统计。提供的结果将有助于支持使用激光超声技术对多晶材料中的晶粒尺寸分布进行无损评估。

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