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首页> 外文期刊>Intermetallics >B2 grain growth and particle pinning effect of Ti-22Al-25Nb orthorhombic intermetallic alloy during heating process
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B2 grain growth and particle pinning effect of Ti-22Al-25Nb orthorhombic intermetallic alloy during heating process

机译:Ti-22Al-25Nb正交晶金属间合金B2晶粒长大及加热过程中的钉扎效应

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摘要

The B2 grain growth kinetic of Ti-22Al-25Nb alloys has been studied. The grain sizes at different heat treatment temperatures and holding time have been obtained by means of the image analysis software. Generally, the grain size increases with the increasing heating temperature. However, the growth velocity is confirmed not the same for the heating temperature below and above B2-transus. The pinning effect of the α_2 particles significantly plays an important role for controlling the grain growth. When the alloy was heated in B2 single phase region, the activation energy was increased with extending the holding time. When the heating temperature is below 1060 °C, the pinning effect of α_2 particles sharply influenced the B2 grain growth. Zener model is a reliable model to predict the experimental data after taking m = 1, β= 4/9 into account However, for the Ti-22Al-25Nb alloy with initial particle size of 180 μm, it can only predict the B2 particle size when the volume fraction of the precipitations is lower than 1.48%.
机译:研究了Ti-22Al-25Nb合金的B2晶粒生长动力学。已经通过图像分析软件获得了不同热处理温度和保持时间下的晶粒尺寸。通常,晶粒尺寸随着加热温度的升高而增加。然而,对于低于和高于B2-transus的加热温度,证实了生长速度不同。 α_2粒子的钉扎作用在控制晶粒长大方面起着重要作用。当合金在B2单相区加热时,活化能随保持时间的延长而增加。当加热温度低于1060°C时,α_2粒子的钉扎效应会严重影响B2晶粒的生长。齐纳模型是在考虑m = 1,β= 4/9后预测实验数据的可靠模型。但是,对于初始粒径为180μm的Ti-22Al-25Nb合金,它只能预测B2粒径当沉淀的体积分数低于1.48%时。

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