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摘要:
Characterizing the microstructure and deformation mechanism associated with the performances and properties of metallic materials is of great importance in understanding the microstructure-property relationship.The past few decades have wit-nessed the rapid development of characterization techniques from optical microscopy to electron microscopy,although these conventional methods are generally limited to the sample surface because of the intrinsic opaque nature of metallic materi-als.Advanced synchrotron radiation (SR) facilities can produce X-rays with strong penetrability and high spatiotemporal resolution,and thereby enabling the non-destructive visualization of full-field structural information in three dimensions.Tremendous endeavors were devoted to the 3rd generation SR over the past three decades,in which X-ray beams have been focused down to 100 nm.In this paper,recent progresses on SR-related characterization technologies were reviewed,with particular emphases on the fundamentals of synchrotron X-ray imaging and synchrotron X-ray diffraction,as well as their applications in the in situ observations of material preparation (e.g.,in situ dendrite growth during solidification) and service under extreme environment (e.g.,in situ mechanics).Future innovations toward next-generation SR and newly emerging SR-based technologies such as dark-field X-ray microscopy and Bragg coherent X-ray diffraction imaging were also advocated.
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篇名 Recent Progress of Synchrotron X-Ray Imaging and Diffraction on the Solidification and Deformation Behavior of Metallic Materials
来源期刊 金属学报(英文版) 学科
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年,卷(期) 2022,(1) 所属期刊栏目 Special Issue: Application of Synchrotron Radiation in Materials Research
研究方向 页码范围 3-24
页数 22页 分类号
字数 语种 英文
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金属学报(英文版)
月刊
1006-7191
21-1361/TG
16开
沈阳文化路72号
1988
eng
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2302
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