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In situ experimental techniques to study the mechanical behavior of materials using X-ray synchrotron tomography

机译:使用X射线同步加速器层析成像技术研究材料力学行为的原位实验技术

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In situ X-ray synchrotron tomography is an excellent technique for understanding deformation behavior of materials in 4D (the fourth dimension here is time). However, performing in situ experiments in synchrotron is challenging, particularly in regard to the design of the mechanical testing stage. Here, we report on several in situ testing methods developed by our group in collaboration with Advanced Photon source at Argonne National Laboratory used to study the mechanical behavior of materials. The issues associated with alignment during mechanical testing along with the improvements made to the in situ mechanical testing devices, over time, are described. In situ experiments involving corrosion-fatigue and stress corrosion cracking in various environments are presented and discussed. These include fatigue loading of metal matrix composites (MMCs), corrosion-fatigue, and stress corrosion cracking of Al 7075 alloys.
机译:原位X射线同步加速器层析成像是一种了解4D材料变形行为的出色技术(此处的第四维是时间)。但是,在同步加速器中进行原位实验具有挑战性,特别是在机械测试台的设计方面。在这里,我们报告了我们小组与Argonne国家实验室的Advanced Photon光源合作开发的几种原位测试方法,用于研究材料的机械性能。描述了与机械测试过程中的对准相关的问题,以及随时间推移对原位机械测试设备进行的改进。提出并讨论了在各种环境下涉及腐蚀疲劳和应力腐蚀开裂的原位实验。其中包括金属基复合材料(MMC)的疲劳载荷,Al 7075合金的腐蚀疲劳和应力腐蚀开裂。

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