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Simultaneous X-ray radioscopy/tomography and energy-dispersive diffraction applied to liquid aluminium alloy foams

机译:同时X射线放射镜检查/断层扫描和能量分散衍射施加到液体铝合金泡沫中

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摘要

High-speed X-ray imaging in two dimensions (radioscopy) and three dimensions (tomography) is combined with fast X-ray diffraction in a new experimental setup at the synchrotron radiation source BESSY II. It allows for in situ studies of time-dependent phenomena in complex systems. As a first application, the foaming process of an aluminium alloy was studied in three different experiments. Radioscopy, optical expansion measurements and diffraction were used to correlate the change of foam morphology to the various phases formed during heating of an AlMg15Cu10 alloy to 620°C in the first experiment. Radioscopy was then replaced by tomography. Acquiring tomograms and diffraction data at 2 Hz allows even more details of foam evolution to be captured, for example, bubble size distribution. In a third experiment, 4 Hz tomography yields dynamic insights into fast phenomena in evolving metal foam.
机译:两个尺寸(放射镜检查)和三维(断层扫描)中的高速X射线成像与Synchrotron辐射源Bessy II的新实验设置中的快速X射线衍射组合。 它允许在复杂系统中以依赖时间依赖现象的研究。 作为第一个应用,在三种不同的实验中研究了铝合金的发泡过程。 在第一实验中,使用放射透视,光学膨胀测量和衍射将泡沫形态的变化与在Almg15Cu10合金中加热至620℃形成的各种相中相关。 然后通过断层扫描更换放射镜检查。 在2 Hz上获取断层图像和衍射数据允许泡沫进化的更多细节待捕获,例如泡沫尺寸分布。 在第三个实验中,4 Hz断层摄影产生动态见解进化金属泡沫的快速现象。

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