CROSS-DISCIPLINARY PHYSICS AND RELATED AREAS OF SCIENCE AND TECHNOLOGY |
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Measurement on Effective Shear Viscosity Coefficient of Iron under Shock Compression at 100GPa |
LI Yi-Lei1,3, LIU Fu-Sheng1, ZHANG Ming-Jian1, MA Xiao-Juan1, LI Ying-Lei2, ZHANG Ji-Chun3 |
1Laboratory of High Pressure Physics, Southwest Jiaotong University, Chengdu, 6100312Institute of Fluid Physics, China Academy of Engineering Physics, Mianyang 6219003School of Civil Engineering, Southwest Jiaotong University, Chengdu 610031 |
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Cite this article: |
LI Yi-Lei, LIU Fu-Sheng, ZHANG Ming-Jian et al 2009 Chin. Phys. Lett. 26 038301 |
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Abstract The oscillatory damping curve of a shock front propagating in iron shocked to 103GPa is measured by use of two-stage light-gas gun and electric pin techniques. The corresponding effective shear viscosity coefficient is deduced to be about 2000 Pa12539;s from Miller and Ahrens' formula. The result is consistent with that of Mineev's data at 31GPa, while it is higher by five orders than the predictions based on the static measurements at about 5GPa and 2000K and molecular dynamic simulation up to 135-375GPa and 4300-6000K, and the discussions are presented.
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Keywords:
83.85.Jn
62.50.-p
83.60.Fg
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Received: 22 October 2008
Published: 19 February 2009
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PACS: |
83.85.Jn
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(Viscosity measurements)
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62.50.-p
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(High-pressure effects in solids and liquids)
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83.60.Fg
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(Shear rate dependent viscosity)
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