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Real-time microstructure imaging by Laue microdiffraction: A sample application in laser 3D printed Ni-based superalloys

机译:Laue微衍射实时微结构成像:激光3D打印镍基高温合金的示例应用

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摘要

Synchrotron-based Laue microdiffraction has been widely applied to characterize the local crystal structure, orientation, and defects of inhomogeneous polycrystalline solids by raster scanning them under a microano focused polychromatic X-ray probe. In a typical experiment, a large number of Laue diffraction patterns are collected, requiring novel data reduction and analysis approaches, especially for researchers who do not have access to fast parallel computing capabilities. In this article, a novel approach is developed by plotting the distributions of the average recorded intensity and the average filtered intensity of the Laue patterns. Visualization of the characteristic microstructural features is realized in real time during data collection. As an example, this method is applied to image key features such as microcracks, carbides, heat affected zone, and dendrites in a laser assisted 3D printed Ni-based superalloy, at a speed much faster than data collection. Such analytical approach remains valid for a wide range of crystalline solids, and therefore extends the application range of the Laue microdiffraction technique to problems where real-time decision-making during experiment is crucial (for instance time-resolved non-reversible experiments).
机译:基于同步加速器的劳厄微衍射已被广泛应用于表征不均匀多晶固体的局部晶体结构,取向和缺陷,方法是在微/纳米聚焦多色X射线探针下通过光栅扫描它们。在一个典型的实验中,收集了大量劳厄衍射图样,这需要新颖的数据缩减和分析方法,特别是对于无法使用快速并行计算功能的研究人员而言。在本文中,通过绘制平均记录强度和劳厄模式平均滤波强度的分布图,开发了一种新颖的方法。特征微观结构特征的可视化在数据收集期间实时实现。例如,此方法应用于图像关键特征,例如微裂纹,碳化物,热影响区和激光辅助3D打印的镍基高温合金中的树枝状晶体,其速度要比数据收集快得多。这种分析方法对于各种结晶固体仍然有效,因此将Laue微衍射技术的应用范围扩展到了在实验过程中实时决策至关重要的问题(例如时间分辨不可逆实验)上。

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