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Featured researches published by Baoqin Fu.


Nuclear Fusion | 2014

Suppression of cavitation in melted tungsten by doping with lanthanum oxide

Yue Yuan; Ben Xu; Baoqin Fu; H. Greuner; B. Böswirth; H.Y. Xu; Chengliang Li; Y.Z. Jia; S.L. Qu; Guang-Nan Luo; Guang-Hong Lu; Wei Liu

Melting and boiling behaviour of pure tungsten and 1 wt% lanthanum-oxide-doped tungsten (WL10) are investigated, focusing on the material selection with respect to material loss induced by cavitation. Melting experiments under high heat loads are carried out in the high heat flux facility GLADIS. Pulsed hydrogen neutral beams with heat flux of 10 and 23 MW m−2 are applied onto the adiabatically loaded samples for intense surface melting. Melt layer of the two tungsten grades exhibit different microstructure characteristics. Substantive voids owning to cavitation in the liquid phase are observed in pure W and lead to porous resolidified material. However, little cavitation bubbles can be found in the dense resolidified layer of WL10. In order to find out the gaseous sources, vapour collection is performed and the components are subsequently detected. Based on the observations and analyses, the microstructure evolutions corresponding to melting and vapourization behaviour of the two tungsten grades are tentatively described, and furthermore, the underlying mechanisms of cavitation in pure W and its suppression in WL10 are discussed.


Chinese Physics B | 2016

Diffusion behavior of helium in titanium and the effect of grain boundaries revealed by molecular dynamics simulation

Gui-Jun Cheng; Baoqin Fu; Qing Hou; Xiao-Song Zhou; Jun Wang

The microstructures of titanium (Ti), an attractive tritium (T) storage material, will affect the evolution process of the retained helium (He). Understanding the diffusion behavior of He at the atomic scale is crucial for the mechanism of material degradation. The novel diffusion behavior of He has been reported by molecular dynamics (MD) simulation for the bulk hcp-Ti system and the system with grain boundary (GB). It is observed that the diffusion of He in the bulk hcp-Ti is significantly anisotropic (the diffusion coefficient of the [0001] direction is higher than that of the basal plane), as represented by the different migration energies. Different from convention, the GB accelerates the diffusion of He in one direction but not in the other. It is observed that a twin boundary (TB) can serve as an effective trapped region for He. The TB accelerates diffusion of He in the direction perpendicular to the twinning direction (TD), while it decelerates the diffusion in the TD. This finding is attributable to the change of diffusion path caused by the distortion of the local favorable site for He and the change of its number in the TB region.


AIP Advances | 2015

A molecular dynamics study of melting and dissociation of tungsten nanoparticles

Min Li; Jun Wang; Baoqin Fu; Qing Hou

Molecular dynamics simulations were conducted to study the melting and dissociation of free tungsten nanoparticles. For the various interatomic potentials applied, the melting points of the tungsten nanoparticles increased with increasing nanoparticle diameter. Combining these results with the melting point of bulk tungsten in the experiment, the melting point of nanoparticles with diameters ranging from 4 to 12 nm could be determined. As the temperature increases, free nanoparticles are subject to dissociation phenomena. The dissociation rate was observed to follow Arrhenius behavior, and the Meyer–Neldel rule was obeyed. These results are useful in understanding the behavior of tungsten dust generated in nuclear fusion devices as well as for the preparation, formation, and application of tungsten powders.


Journal of Nuclear Materials | 2013

Observations of orientation dependence of surface morphology in tungsten implanted by low energy and high flux D plasma

H.Y. Xu; Yubin Zhang; Yue Yuan; Baoqin Fu; A. Godfrey; G. De Temmerman; Wei Liu; Xiaoxu Huang


Journal of Nuclear Materials | 2015

Surface morphology and deuterium retention in tungsten exposed to high flux D plasma at high temperatures

Y.Z. Jia; G. De Temmerman; G.-N. Luo; H.Y. Xu; Chengliang Li; Baoqin Fu; Wei Liu


Journal of Nuclear Materials | 2014

Enhanced modification of tungsten surface by nanostructure formation during high flux deuterium plasma exposure

H.Y. Xu; G.-N. Luo; H. Schut; Yue Yuan; Baoqin Fu; A. Godfrey; Wei Liu; G. De Temmerman


Journal of Nuclear Materials | 2016

Blistering on tungsten surface exposed to high flux deuterium plasma

Hy Haiyan Xu; W Wendy Liu; Guang-Nan Luo; Yue Yuan; Y.Z. Jia; Baoqin Fu; G. De Temmerman


Journal of Nuclear Materials | 2014

Effects of temperature on surface modification of W exposed to He particles

Chengliang Li; H. Greuner; Yue Yuan; G.-N. Luo; B. Böswirth; Baoqin Fu; H.Y. Xu; Y.Z. Jia; Wei Liu


Journal of Nuclear Materials | 2012

Calculation and analysis of lattice thermal conductivity in tungsten by molecular dynamics

Baoqin Fu; Wensheng Lai; Yue Yuan; H.Y. Xu; Wei Liu


Journal of Nuclear Materials | 2013

Computer simulation of displacement cascades in tungsten with modified F–S type potential

Baoqin Fu; Ben Xu; Wensheng Lai; Yue Yuan; H.Y. Xu; Chun Li; Y.Z. Jia; Wei Liu

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G.-N. Luo

Chinese Academy of Sciences

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