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Dive into the research topics where Qi–Chuan Jiang is active.

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Featured researches published by Qi–Chuan Jiang.


Scientific Reports | 2015

Achieving high strength and high ductility in magnesium alloy using hard-plate rolling (HPR) process

H.Y. Wang; Zhao–Peng Yu; Lei Zhang; Chun–Guo Liu; Min Zha; Cheng Wang; Qi–Chuan Jiang

Magnesium alloys are highly desirable for a wide range of lightweight structural components. However, rolling Mg alloys can be difficult due to their poor plasticity, and the strong texture yielded from rolling often results in poor plate forming ability, which limits their further engineering applications. Here we report a new hard-plate rolling (HPR) route which achieves a large reduction during a single rolling pass. The Mg-9Al-1Zn (AZ91) plates processed by HPR consist of coarse grains of 30–60 μm, exhibiting a typical basal texture, fine grains of 1–5 μm and ultrafine (sub) grains of 200–500 nm, both of the latter two having a weakened texture. More importantly, the HPR was efficient in gaining a simultaneous high strength and uniform ductility, i.e., ~371 MPa and ~23%, respectively. The superior properties should be mainly attributed to the cooperation effect of the multimodal grain structure and weakened texture, where the former facilitates a strong work hardening while the latter promotes the basal slip. The HPR methodology is facile and effective, and can avoid plate cracking that is prone to occur during conventional rolling processes. This strategy is applicable to hard-to-deform materials like Mg alloys, and thus has a promising prospect for industrial application.


Materials Science and Engineering A-structural Materials Properties Microstructure and Processing | 2016

Superior tensile properties of in situ nano-sized TiCp/Al-Cu composites fabricated by reaction in melt method

Wei–Si Tian; Dong–Shuai Zhou; Feng Qiu; Qi–Chuan Jiang


Materials Science and Engineering A-structural Materials Properties Microstructure and Processing | 2016

The effect of Sb addition on microstructures and tensile properties of extruded Al–20Mg2Si–4Cu alloy

H.Y. Wang; Feng Liu; Lei Chen; Min Zha; Guo-Jun Liu; Qi–Chuan Jiang


Solid State Sciences | 2010

Reaction pathway and phase transitions in Al-Ti-Si system during differential thermal analysis

H.Y. Wang; Min Zha; Si–Jie Lü; Cheng Wang; Qi–Chuan Jiang


Materials Science and Engineering A-structural Materials Properties Microstructure and Processing | 2017

Effects of Zn on the microstructure and tensile properties of as-extruded Mg-8Al-2Sn alloy

H.Y. Wang; Jian Rong; Guo-Jun Liu; Min Zha; Cheng Wang; Dan Luo; Qi–Chuan Jiang


Journal of the American Ceramic Society | 2013

Reaction Pathway of Combustion Synthesis of Ti5Si3 in Cu–Ti–Si System

H.Y. Wang; Si–Jie Lü; Wei Xiao; Guo-Jun Liu; Jin–Guo Wang; Qi–Chuan Jiang


Materials Science and Engineering A-structural Materials Properties Microstructure and Processing | 2017

Achieving fine grain structure and superplasticity in AZ91-0.4Sn magnesium alloy using short flow rolling process

Zhao–Peng Yu; Min Zha; Zi–Hao Li; Cheng Wang; H.Y. Wang; Qi–Chuan Jiang


Journal of Alloys and Compounds | 2018

Effect of tensile direction on mechanical properties and microstructural evolutions of rolled Mg-Al-Zn-Sn magnesium alloy sheets at room and elevated temperatures

Zhao–Peng Yu; Yu–Hao Yan; Jia Yao; Cheng Wang; Min Zha; Xin–Yu Xu; Yan Liu; H.Y. Wang; Qi–Chuan Jiang


Journal of Alloys and Compounds | 2018

Microstructure and wear behaviour of Al-20Mg2Si alloy with combined Zr and Sb additions

Jia–Ning Zhu; Ting–Ting Zhou; Min Zha; Chao Li; Jie–Hua Li; Cheng Wang; Cheng–Long Gao; H.Y. Wang; Qi–Chuan Jiang


Journal of Alloys and Compounds | 2018

Development of a novel strength ductile Mg–7Al–5Zn alloy with high superplasticity processed by hard-plate rolling (HPR)

Jian Rong; Peng–Yue Wang; Min Zha; Cheng Wang; Xin–Yu Xu; H.Y. Wang; Qi–Chuan Jiang

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