Jinghua Jiang
Hohai University
215 Papers
413 Citations
Jinghua Jiang is an academic researcher from Hohai University. The author has contributed to research in topics: Alloy & Microstructure. The author has an hindex of 30, co-authored 167 publications. Previous affiliations of Jinghua Jiang include Nanjing University of Science and Technology & North Carolina State University.
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Papers
Dynamic precipitation behavior and mechanical property of an Mg94Y4Zn2 alloy prepared by multi-pass successive equal channel angular pressing
TL;DR: After sixteen successive passes of equal channel angular pressing (ECAP), kinked 18R-LPSO phase and refined DRX grains were developed in Mg 94 Y 4 Zn 2 alloy as mentioned in this paper.
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Enhancement of strength and ductility of SiCp/AZ91 composites by RD-ECAP processing
TL;DR: In this paper, rotary-die equal channel angular pressing (RD-ECAP) was applied to as-cast SiCp/AZ91 composites for three different passes (4P, 8P, 16P).
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Optimized mechanical properties of magnesium matrix composites using RSM and ANN
TL;DR: In this article , the effect of stirring speed, stirring time, and particle weight fraction on the mechanical properties of magnesium matrix composites (Mg-MMCs) synthesized by the stir casting process was investigated.
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Anti-corrosion performance of waterborne Zn-rich coating with modified silicon-based vehicle and lamellar Zn (Al) pigments
TL;DR: In order to develop the eco-friendly Zn-rich coatings with higher corrosion resistance and lower pigment contents, several series of coatings were designed and manufactured employing lamellar Zn (Al) pigments mixed with silicone-acrylate emulsion modified inorganic silicate vehicle, and then were evaluated by conventional methods and the electrochemical method as mentioned in this paper.
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Developing an industrial-scale ECAP Mg-Al-Zn alloy with multi-heterostructure for synchronously high strength and good ductility
Jiapeng Sun,Bingqian Xu,Zhenquan Yang,Xiaoru Zhuo,Jing Han,Yuna Wu,Dan Song,Huan Liu,Jinghua Jiang,Aibin Ma +9 more
TL;DR: In this article, the authors developed a compact processing route that combined industrial-scale equal channel angular pressing (ECAP) with partial pre-homogenization and post-aging processes to improve the processing efficiency.
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