Publication


Featured researches published by Hongyu Zhang.


Materials Science and Engineering A-structural Materials Properties Microstructure and Processing | 2010

Effects of heat treatments on the microstructure of IN792 alloy

Jinxia Yang; Qi Zheng; Hongyu Zhang; Xiaofeng Sun; Hengrong Guan; Zhuangqi Hu


Journal of Alloys and Compounds | 2017

The investigation of carbides evolution in a cobalt-base superalloy at elevated temperature

Weimin Gui; Hongyu Zhang; Min Yang; Tao Jin; Xiaofeng Sun; Qi Zheng


Journal of Alloys and Compounds | 2015

Investigation of microstructure in hot-pressed Nb–23Ti–15Al alloy

Zhiwu Shi; Hua Wei; Hongyu Zhang; Duoli Wu; Tao Jin; Xiaofeng Sun; Qi Zheng


Chinese Science Bulletin | 2014

Progress of phase-field investigations of γ′ rafting in nickel-base single-crystal superalloys

Yan Zhao; Hongyu Zhang; Hua Wei; Qi Zheng; Tao Jin; Xiaofeng Sun


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

Investigation of a hot-pressed Nb-Ti-Al alloy: Mechanical alloying, microstructure and mechanical property

Zhiwu Shi; Hua Wei; Hongyu Zhang; Tao Jin; Xiaofeng Sun; Qi Zheng


Rare Metals | 2018

Phase transformation of ZrO2 doped with CeO2

Bo He; Ying Li; Hongyu Zhang; Duoli Wu; Lihong Liang; Hua Wei


Acta Materialia | 2016

Nanotwinned Ti(O,C) induced by oriented attachment in a hot-pressed Nb–Ti–Al alloy

Zhiwu Shi; Hua Wei; Hongyu Zhang; Tao Jin; Xiaofeng Sun; Qi Zheng


International Journal of Refractory Metals & Hard Materials | 2016

The role of Kirkendall porosity in determining β → δ transformation types in Nb-Ti-Al alloys

Zhiwu Shi; Hua Wei; Hongyu Zhang; Tao Jin; Xiaofeng Sun; Qi Zheng


Materials & Design | 2015

Blocky and columnar microstructures and the influence on mechanical behaviors of a hot-pressed Nb–23Ti–15Al alloy

Zhiwu Shi; Hua Wei; Hongyu Zhang; Tao Jin; Xiaofeng Sun; Qi Zheng


Acta Metallurgica Sinica (english Letters) | 2018

Formation Mechanism of Lamellar M 23C6 Carbide in a Cobalt-Base Superalloy During Thermal Exposure at 1000 °C

Weimin Gui; Hongyu Zhang; Haibo Long; Tao Jin; Xiaofeng Sun; Qi Zheng

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