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Featured researches published by Dai Cheng-Da.


Chinese Physics Letters | 2005

Sound Velocity and Release Behaviour of Shock-Compressed LY12 Al

Yu Yu-Ying; Tan Hua; Dai Cheng-Da; Hu Jian-Bo; Chen Danian

A velocity interferometer system for any reflector (VISAR) is used to measure the sound velocity of LY12 Al shock-compressed to peak pressures of 20, 32, 55 and 71 GPa. Unloading wave velocities from these pressures are obtained from the observed particle velocity profiles at the LY12 Al/LiF window interface; and the longitudinal, bulk and shear sound velocities at the initial Hugoniot state are well determined. The histories of stress, strain, density or volume, and particle velocity along the release paths are calculated by the impedance-matching method based on the unloading sound velocity data. It is revealed that the release behaviour of shocked LY12 Al departures obviously from the elastic perfectly-plastic response.


Chinese Physics B | 2008

Shear modulus of shock-compressed LY12 aluminium up to melting point

Yu Yu-Ying; Tan Hua; Hu Jian-Bo; Dai Cheng-Da

Asymmetric plate impact experiments are conducted on LY12 aluminium alloy in a pressure range of 85–131 GPa. The longitudinal sound speeds are obtained from the time-resolved particle speed profiles of the specimen measured with Velocity Interferometer System for Any Reflector (VISAR) technique, and they are shown to be good agreement with our previously reported data of this alloy in a pressure range of 20–70 GPa, and also with those of 2024 aluminium reported by McQueen. Using all of the longitudinal speeds and the corresponding bulk speeds calculated from the Gruneisen equation of state (EOS), shear moduli of LY12 aluminium alloy are obtained. A comparison of the shear moduli in the solid phase region with those estimated from the Steinberg model demonstrate that the latter are systematically lower than the measurements. By re-analysing the pressure effect on the shear modulus, a modified equation is proposed, in which the pressure term of P/η1/3 in the Steinberg model is replaced by a linear term. Good agreement between experiments and the modified equation is obtained, which implies that the shear modulus of LY12 aluminium varies linearly both with pressure and with temperature throughout the whole solid phase region. On the other hand, shear modulus of aluminium in a solid-liquid mixed phrase region decreases gradually and smoothly, a feature that is very different from the drastic dropping at the melting point under static conditions.


Chinese Physics B | 2015

Dynamic strength behavior of a Zr-based bulk metallic glass under shock loading*

Yu Yu-Ying; Xi Feng; Dai Cheng-Da; Cai Ling-Cang; Tan Ye; Li Xuemei; Wu Qiang; Tan Hua

Dynamic strength behavior of Zr51Ti5Ni10Cu25Al9 bulk metallic glass (BMG) up to 66 GPa was investigated in a series of plate impact shock-release and shock-reload experiments. Particle velocity profiles measured at the sample/LiF window interface were used to estimate the shear stress, shear modulus, and yield stress in shocked BMG. Beyond confirming the previously reported strain-softening of shear stress during the shock loading process for BMGs, it is also shown that the softened Zr-BMG still has a high shear modulus and can support large yield stress when released or reloaded from the shocked state, and both the shear modulus and the yield stress appear as strain-hardening behaviors. The work provides a much clearer picture of the strength behavior of BMGs under shock loading, which is useful to comprehensively understand the plastic deformation mechanisms of BMGs.


Archive | 2014

Dual-mode superspeed moving object movement speed measurement device and method

Weng Jidong; Wang Xiang; Tao Tianjiong; Wang Wei; Ma Heli; Liu Shenggang; Chen Hong; Dai Cheng-Da; Liu Cangli; Wu Qiang; Tan Hua; Li Jianfeng; Cai Ling-Cang; Ye Suhua; Wang Xiaosong; Jia Lufeng


Archive | 2014

Device and method used for measuring deformation of diamond anvil under high temperature high pressure condition

Liu Shenggang; Weng Jidong; Ma Heli; Tao Tianjiong; Jing Qiumin; Zhang Yi; Liu Lei; Wang Xiang; Bi Yan; Dai Cheng-Da; Cai Ling-Cang; Tan Hua; Wu Qiang; Liu Cangli


Archive | 2014

Device for measuring deformation of diamond anvil cell under extreme high-temperature and high-pressure conditions

Liu Shenggang; Weng Jidong; Ma Heli; Tao Tianjiong; Jing Qiumin; Zhang Yi; Liu Lei; Wang Xiang; Bi Yan; Dai Cheng-Da; Cai Ling-Cang; Tan Hua; Wu Qiang; Liu Cangli


Archive | 2014

All optical fiber frequency domain interference absolute distance measurement method and device

Weng Jidong; Ma Heli; Tao Tianjiong; Liu Shenggang; Wang Xiang; Chen Hong; Dai Cheng-Da; Liu Cangli; Wu Qiang; Tan Hua; Li Jianfeng; Cai Ling-Cang; Wang Wei; Ye Suhua; Wang Xiaosong; Jia Lufeng


Archive | 2011

Measurement of low-pressure Hugoniot data for bismuth with reverse-impact geometry

Tan Ye; Yu Yuying; Dai Cheng-Da; Tan Hua; Wang Qing-Song; Wang Xiang


Archive | 2011

Sound velocity and shock melting of low porosity aluminum

Song Ping; Wang Qing-Song; Dai Cheng-Da; Cai Ling-Cang; Zhang Yi; Weng Jidong


Archive | 2008

Effective shear modulus in shock-compressed aluminum

Yu Yuying; Tan Hua; Hu Jian-Bo; Dai Cheng-Da; Chen Danian; Wang Huanran

Collaboration


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Tan Hua

China Academy of Engineering Physics

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Cai Ling-Cang

Chinese Academy of Engineering

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Hu Jian-Bo

China Academy of Engineering Physics

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Yu Yu-Ying

China Academy of Engineering Physics

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Wang Xiang

China Academy of Engineering Physics

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Wu Qiang

China Academy of Engineering Physics

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Liu Cangli

China Academy of Engineering Physics

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Liu Shenggang

University of Electronic Science and Technology of China

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Zhang Yi

University of Science and Technology of China

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