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通过同步加速器X射线表征与模拟相结合的方法量化疲劳失效的微观驱动因素。

Quantifying microscale drivers for fatigue failure via coupled synchrotron X-ray characterization and simulations.

作者信息

Gustafson Sven, Ludwig Wolfgang, Shade Paul, Naragani Diwakar, Pagan Darren, Cook Phil, Yildirim Can, Detlefs Carsten, Sangid Michael D

机构信息

School of Aeronautics and Astronautics, Purdue University, 701W. Stadium Ave, West Lafayette, IN, 47906, USA.

University Lyon I, MATEIS, UMR5510 CNRS, 25 av. J. Capelle, 69621, Villeurbanne, France.

出版信息

Nat Commun. 2020 Jun 24;11(1):3189. doi: 10.1038/s41467-020-16894-2.

Abstract

During cyclic loading, localization of intragranular deformation due to crystallographic slip acts as a precursor for crack initiation, often at coherent twin boundaries. A suite of high-resolution synchrotron X-ray characterizations, coupled with a crystal plasticity simulation, was conducted on a polycrystalline nickel-based superalloy microstructure near a parent-twin boundary in order to understand the deformation localization behavior of this critical, 3D microstructural configuration. Dark-field X-ray microscopy was spatially linked to high energy X-ray diffraction microscopy and X-ray diffraction contrast tomography in order to quantify, with cutting-edge resolution, an intragranular misorientation and high elastic strain gradients near a twin boundary. These observations quantify the extreme sub-grain scale stress gradients present in polycrystalline microstructures, which often lead to fatigue failure.

摘要

在循环加载过程中,由于晶体滑移导致的晶内变形局部化常作为裂纹萌生的前兆,通常发生在共格孪晶界处。为了了解这种关键的三维微观结构配置的变形局部化行为,对靠近母孪晶界的多晶镍基高温合金微观结构进行了一系列高分辨率同步加速器X射线表征,并结合晶体塑性模拟。暗场X射线显微镜在空间上与高能X射线衍射显微镜和X射线衍射对比层析成像相联系,以便以前沿分辨率量化孪晶界附近的晶内取向差和高弹性应变梯度。这些观察结果量化了多晶微观结构中存在的极端亚晶粒尺度应力梯度,这种应力梯度常常导致疲劳失效。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7db1/7314802/d8efdbb0aefc/41467_2020_16894_Fig1_HTML.jpg

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