Xiaoying Fang
Shandong University of Technology
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Publication
Featured researches published by Xiaoying Fang.
Journal of The Mechanical Behavior of Biomedical Materials | 2018
M. Salahshoor; C. Li; Z.Y. Liu; Xiaoying Fang; Y.B. Guo
Biodegradable magnesium-calcium (MgCa) alloy is a very attractive orthopedic biomaterial compared to permanent metallic alloys. However, the critical issue is that MgCa alloy corrodes too fast in the human organism. Compared to dry cutting, the synergistic dry cutting-finish burnishing can significantly improve corrosion performance of MgCa0.8 (wt%) alloy by producing a superior surface integrity including good surface finish, high compressive hook-shaped residual stress profile, extended strain hardening in subsurface, and little change of grain size. A FEA model was developed to understand the plastic deformation of MgCa materials during burnishing process. The measured polarization curves, surface micrographs, and element distributions of the corroded surfaces by burnishing show an increasing and uniform corrosion resistance to simulated body fluid.
International Journal of Modern Physics B | 2009
Xiaoying Fang; Weiguo Wang; Hong Guo; Congxiang Qin; Bangxin Zhou
Grain boundary character distribution (GBCD) and triple junction character distribution (TJCD) in a 304 stainless steel cold rolled with the thickness reduction of 6% and then annealed at 1323K for 5 minutes(GBE process) were analyzed by electron back scatter diffraction (EBSD). The intergranular corrosion (IGC) resistance of various triple junctions and grain boundaries were evaluated after sensitization treatment at 1073K for 30 minutes. The results showed special TJ containing 2 or 3 CSL boundaries exhibit higher resistance to IGC than other TJs. In addition, the {411} and {221} symmetrical tilt grain boundaries (STGBs) are more resistant to intergranular corrosion for Σ9 boundaries.
Materials | 2018
Ming Wang; Haoqing Li; Yujing Tian; Hong Guo; Xiaoying Fang; Yuebin Guo
Changes in various grain interfaces, including the grain boundary and phase boundary, are a strong indication of microstructural changes, particularly ultra-fined grains achieved by large strain deformation and subsequent annealing. After direct rolling and cross rolling with the same strain of ε = 2, the distributions of the interfaces in annealed UNS S32304 duplex stainless steel were investigated using electron backscatter diffraction (EBSD) in this study. The ferrite experienced continued recovery, and a high density of low-angle grain boundaries (LAGBs) was produced. The percentage and number of twin boundaries (TBs) and LAGBs varied within the austenite. TBs were frequently found within austenite, showing a deviation from the Kurdjumov-Sachs (K-S) orientation relationship (OR) with ferrite matrix. However, LAGBs usually occur in austenite, with the K-S OR in the ferrite matrix. LAGBs were prevalent in the precipitated austenite grains, and therefore a strong texture was introduced in the cross-rolled and annealed samples, in which the precipitated austenite readily maintained the K-S OR in the ferrite matrix. By contrast, more TBs and a less robust texture were found in the precipitated austenite in direct-rolled and annealed samples, deviating from the K-S OR.
Materials Science and Engineering A-structural Materials Properties Microstructure and Processing | 2010
Xiaoying Fang; Weiguo Wang; Zhengxu Cai; Congxiang Qin; Bangxin Zhou
Materials Science and Engineering A-structural Materials Properties Microstructure and Processing | 2017
C. Li; R.E. White; Xiaoying Fang; M.L. Weaver; Y.B. Guo
Materials Characterization | 2016
Xiaoying Fang; Wenhong Yin; Congxiang Qin; Weiguo Wang; K.H. Lo; C.H. Shek
Archive | 2011
Xiaoying Fang; Weiguo Wang; Congxiang Qin; Hong Guo; Zhiyong Liu
Acta Metallurgica Sinica | 2010
Zhengxu Cai; Weiguo Wang; Xiaoying Fang; Hong Guo
Acta Metallurgica Sinica | 2010
Xiaoying Fang; Weiguo Wang; Rohrer G S; Bangxin Zhou
Materials Science and Engineering A-structural Materials Properties Microstructure and Processing | 2018
Sharniece Holland; Xiaoqing Wang; Xiaoying Fang; Y.B. Guo; Feng Yan; Lin Li