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Combined near- and far-field high-energy diffraction microscopy dataset for Ti-7Al tensile specimen elastically loaded in situ

机译:现场弹性加载的Ti-7Al拉伸试样的近场和远场高能衍射组合显微镜数据集

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摘要

High-energy diffraction microscopy (HEDM) constitutes a suite of combined X-ray characterization methods, which hold the unique advantage of illuminating the microstructure and micromechanical state of a material during concurrent in situ mechanical deformation. The data generated from HEDM experiments provides a heretofore unrealized opportunity to validate meso-scale modeling techniques, such as crystal plasticity finite element modeling (CPFEM), by explicitly testing the accuracy of these models at the length scales where the models predict their response. Combining HEDM methods with in situ loading under known and controlled boundary conditions represents a significant challenge, inspiring the recent development of a new high-precision rotation and axial motion system for simultaneously rotating and axially loading a sample. In this paper, we describe the initial HEDM dataset collected using this hardware on an alpha-titanium alloy (Ti-7Al) under in situ tensile deformation at the Advanced Photon Source, Argonne National Laboratory. We present both near-field HEDM data that maps out the grain morphology and intragranular crystallographic orientations and far-field HEDM data that provides the grain centroid, grain average crystallographic orientation, and grain average elastic strain tensor for each grain. Finally, we provide a finite element mesh that can be utilized to simulate deformation in the volume of this Ti-7Al specimen. The dataset supporting this article is available in the National Institute of Standards and Technology (NIST) repository (http://hdl.handle.net/11256/599).
机译:高能衍射显微镜(HEDM)构成了一套组合的X射线表征方法,它们具有在同时发生的原位机械变形过程中照亮材料的微观结构和微机械状态的独特优势。通过在模型预测其响应的长度尺度上明确测试这些模型的准确性,从HEDM实验生成的数据为验证中尺度建模技术(例如晶体可塑性有限元建模(CPFEM))提供了前所未有的机会。在已知和受控的边界条件下将HEDM方法与原位加载相结合是一项重大挑战,这激发了用于同时旋转和轴向加载样本的新型高精度旋转和轴向运动系统的最新发展。在本文中,我们描述了在阿贡国家实验室的高级光子源下在原位拉伸变形下使用该硬件在α-钛合金(Ti-7Al)上收集的初始HEDM数据集。我们既提供了映射晶粒形态和晶粒内结晶取向的近场HEDM数据,又提供了提供每个晶粒的晶粒质心,晶粒平均晶体学取向和晶粒平均弹性应变张量的远场HEDM数据。最后,我们提供了可用于模拟此Ti-7Al试样体积变形的有限元网格。美国国家标准技术研究院(NIST)信息库(http://hdl.handle.net/11256/599)中提供了支持本文的数据集。

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