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X-ray Monitoring of Solidification Phenomena in Al-Cu Alloys

机译:Al-Cu合金凝固现象的X射线监测

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In-situ synchrotron X-ray radiography has been used to study columnar and equiaxed dendritic growth in directional solidification of Al-Cu alloys employing a Bridgman furnace. Nominal spatial and temporal resolutions of 1.5 μm and 150 ms, respectively, were obtained with a 1.3 %1.3 mm~2 field of view, and a signal-to-noise above 99.5 %. Dedicated processing software has been developed to allow for quantitative extraction of data such as solid-liquid interface morphology, local propagation velocities and constitutional gradients from the images. The data collected also contain unprecedented in-situ observations on dendrite fragmentation. The limited field of view together with a slight sample position dependency in the heat transfer coefficients made it necessary to impose thermal gradients, G > 10 K/mm, to have reproducible solidification processes. Non-vanishing horizontal G-components contributed to convection that at some occasions resulted in observable effects on growing crystals or on liquid segregates.
机译:原位同步X射线射线造影已被用于研究采用Bridgman炉的Al-Cu合金的定向凝固柱状和等式的树突生长。获得1.5μm和150ms的标称空间和时间分辨率,获得1.3%1.3mm〜2的视野,信号对噪声高于99.5%。已经开发了专用的处理软件以允许从图像中定量提取诸如固液界面形态,局部传播速度和构成梯度的数据。收集的数据还包含关于树突碎片的前所未有的原位观察。在传热系数中的微小样品位置依赖性的有限视场使得需要施加热梯度G> 10 k / mm,以具有可再现的凝固过程。非消失的水平G-组分有助于对流,在某些情况下导致可观察的晶体或液体隔离物的效果。

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