High-speed X-ray PCI and XRD during Dynamic fracture

被引:4
作者
Chen, W. [1 ]
Guo, Z. [1 ]
Hudspeth, M. [1 ]
Parab, N. [1 ]
Sun, T. [2 ]
Fezzaa, K. [2 ]
机构
[1] Purdue Univ, W Lafayette, IN 47907 USA
[2] Argonne Natl Lab, Adv Photon Source, Argonne, IL 60439 USA
来源
DYMAT 23RD TECHNICAL MEETING - INTERNATIONAL CONFERENCE ON DYNAMIC FRACTURE OF DUCTILE MATERIALS | 2017年 / 197卷
关键词
Dynamic fracture; High-speed X-ray imaging; X-ray diffraction; Kolsky bar;
D O I
10.1016/j.proeng.2017.08.105
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
When a crack or a shear band propagates in a ductile material under impact loading, there is a severe stress concentration and/or strain localization near the tip of the discontinuity. It has been understood that the locally severe and fast deformation can lead to phase transformation and heat generation. The adiabatic conditions cause the local temperature to rise. However, it has been a challenge to experimentally measure the microstructural evolution, such as crystal d-spacing, texture evolution and material phase transitions, associated with the dynamic deformation and fracture process of ductile metallic materials. It is also a challenge for optical high-speed imaging techniques to image the details of the advancing crack tip with sufficient spatial resolution. In the dynamic experiments presented in this article, we used Kolsky bars integrated with a simultaneous X-ray phase contrast imaging (PCI) and diffraction (XRD) technique to study the dynamic deformation and fracture processes during high-rate loading. In such a Kolsky bar experiment, high-speed imaging of the specimen deformation and fracture processes and high-speed X-ray diffraction are recorded simultaneously in real time. The experimental setups and results on the dynamic fracture of an aluminum alloy and a bovine tibia bone are presented and discussed. (C) 2017 The Authors. Published by Elsevier Ltd.
引用
收藏
页码:278 / 284
页数:7
相关论文
共 7 条
[1]  
Freund LB, 1990, Dynamic fracture mechanics
[2]   Dynamic full field measurements of crack tip temperatures [J].
Guduru, PR ;
Zehnder, AT ;
Rosakis, AJ ;
Ravichandran, G .
ENGINEERING FRACTURE MECHANICS, 2001, 68 (14) :1535-1556
[3]   On x-ray phase imaging with a point source [J].
Gureyev, TE ;
Wilkins, SW .
JOURNAL OF THE OPTICAL SOCIETY OF AMERICA A-OPTICS IMAGE SCIENCE AND VISION, 1998, 15 (03) :579-585
[4]   Simultaneous X-ray diffraction and phase-contrast imaging for investigating material deformation mechanisms during high-rate loading [J].
Hudspeth, M. ;
Sun, T. ;
Parab, N. ;
Guo, Z. ;
Fezzaa, K. ;
Luo, S. ;
Chen, W. .
JOURNAL OF SYNCHROTRON RADIATION, 2015, 22 :49-58
[5]   High speed synchrotron x-ray phase contrast imaging of dynamic material response to split Hopkinson bar loading [J].
Hudspeth, M. ;
Claus, B. ;
Dubelman, S. ;
Black, J. ;
Mondal, A. ;
Parab, N. ;
Funnell, C. ;
Hai, F. ;
Qi, M. L. ;
Fezzaa, K. ;
Luo, S. N. ;
Chen, W. .
REVIEW OF SCIENTIFIC INSTRUMENTS, 2013, 84 (02)
[6]   Gas gun shock experiments with single-pulse x-ray phase contrast imaging and diffraction at the Advanced Photon Source [J].
Luo, S. N. ;
Jensen, B. J. ;
Hooks, D. E. ;
Fezzaa, K. ;
Ramos, K. J. ;
Yeager, J. D. ;
Kwiatkowski, K. ;
Shimada, T. .
REVIEW OF SCIENTIFIC INSTRUMENTS, 2012, 83 (07)
[7]  
Ravi-Chandar K., 2004, Dynamic Fracture