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Dive into the research topics where Xuding Song is active.

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Featured researches published by Xuding Song.


International Journal of Minerals Metallurgy and Materials | 2016

Burn-resistant behavior and mechanism of Ti14 alloy

Yong-nan Chen; Yazhou Huo; Xuding Song; Zhao-zhao Bi; Yang Gao; Yongqing Zhao

The direct-current simulation burning method was used to investigate the burn-resistant behavior of Ti14 titanium alloy. The results show that Ti14 alloy exhibits a better burn resistance than TC4 alloy (Ti–6Al–4V). Cu is observed to preferentially migrate to the surface of Ti14 alloy during the burning reaction, and the burned product contains Cu, Cu2O, and TiO2. An oxide layer mainly comprising loose TiO2 is observed beneath the burned product. Meanwhile, Ti2Cu precipitates at grain boundaries near the interface of the oxide layer, preventing the contact between O2 and Ti and forming a rapid diffusion layer near the matrix interface. Consequently, a multiple-layer structure with a Cu-enriched layer (burned product)/Cu-lean layer (oxide layer)/Cu-enriched layer (rapid diffusion layer) configuration is formed in the burn heat-affected zone of Ti14 alloy; this multiple-layer structure is beneficial for preventing O2 diffusion. Furthermore, although Al can migrate to form Al2O3 on the surface of TC4 alloy, the burn-resistant ability of TC4 is unimproved because the Al2O3 is discontinuous and not present in sufficient quantity.


Materials | 2016

Tailorable Burning Behavior of Ti14 Alloy by Controlling Semi-Solid Forging Temperature

Yongnan Chen; Wenqing Yang; Haifei Zhan; Fengying Zhang; Yazhou Huo; Yongqing Zhao; Xuding Song; YuanTong Gu

Semi-solid processing (SSP) is a popular near-net-shape forming technology for metals, while its application is still limited in titanium alloy mainly due to its low formability. Recent works showed that SSP could effectively enhance the formability and mechanical properties of titanium alloys. The processing parameters such as temperature and forging rate/ratio, are directly correlated with the microstructure, which endow the alloy with different chemical and physical properties. Specifically, as a key structural material for the advanced aero-engine, the burn resistant performance is a crucial requirement for the burn resistant titanium alloy. Thus, this work aims to assess the burning behavior of Ti14, a kind of burn resistant alloy, as forged at different semi-solid forging temperatures. The burning characteristics of the alloy are analyzed by a series of burning tests with different burning durations, velocities, and microstructures of burned sample. The results showed that the burning process is highly dependent on the forging temperature, due to the fact that higher temperatures would result in more Ti2Cu precipitate within grain and along grain boundaries. Such a microstructure hinders the transport of oxygen in the stable burning stage through the formation of a kind of oxygen isolation Cu-enriched layer under the burn product zone. This work suggests that the burning resistance of the alloy can be effectively tuned by controlling the temperature during the semi-solid forging process.


Journal of Wuhan University of Technology-materials Science Edition | 2015

Effect of laser remelting on the microstructure and corrosion resistance of plasma sprayed Fe-based coating

Chaoping Jiang; Junxing Wang; Jianjun Han; Yuan Lu; Yazhe Xing; Yongnan Chen; Xuding Song

Fe-based amorphous and nanocrystalline coatings were fabricated by air plasma spraying. The coatings were further treated by laser remelting process to improve their microstructure and properties. The corrosion resistance of the as-sprayed and laser-remelted coatings in 3.5wt% NaCl and 1 mol/L HCl solutions was evaluated by electrochemical polarization analysis. It was found that laser-remelted coating appeared much denser than the as-sprayed coating. However, laser-remelted coating contains much more nanocrystalline grains than the as-sprayed coatings, resulting from the lower cooling rate in laser remelting process compared with plasma spraying process. Electrochemical polarization results indicated that the laser-remelted coating has great corrosion resistance than the as-sprayed coating because of its dense structure.


Journal of Wuhan University of Technology-materials Science Edition | 2013

Effects of heat-treatment on crystallization and wear property of plasma sprayed Fe-based amorphous coatings

Chaoping Jiang; Yazhe Xing; Jianmin Hao; Xuding Song

The Fe-based amorphous coatings were produced by air plasma spraying. The as-sprayed coatings were heat-treated at the temperature of 573, 873, and 1 023 K, respectively. The crystallization and wear behavior of the heat-treated amorphous coatings were investigated. It was found that the amorphous-nanocrystalline transformation appeared when the as-sprayed coatings were treated at 853 K. The crystallization process had completed and a coating with microcrystallines was formed when the treatment temperature reached 1 023 K. The resultant amorphous and nanocrystalline composite coatings exhibited superior wear resistance compared to crystalline coating. It is attributed to fine grain strengthening of formed nanocrystallines.


Vacuum | 2017

Diffusion behavior and mechanical properties of Cu/Ni coating on TC4 alloy

Yongnan Chen; Shuangshuang Liu; Yongqing Zhao; Qiang Liu; Lixia Zhu; Xuding Song; Yong Zhang; Jianmin Hao


Surface & Coatings Technology | 2015

Substrate temperature dependence of splat morphology for plasma-sprayed cast iron on aluminum surface

Ya-Zhe Xing; Xing-Hang Li; Qiang Wang; Yong Zhang; Xuding Song


Surface & Coatings Technology | 2017

Effects of spray parameters on the adhesion between plasma-sprayed cast iron splat and aluminium substrate

Yazhe Xing; Zhang Liu; Gui Wang; Xing-Hang Li; Ya-Long Xing; Chaoping Jiang; Yongnan Chen; Xuding Song; Matthew S. Dargusch


Journal of Alloys and Compounds | 2017

Influence of solidification history on precipitation behavior of TCP phase in a completely heat-treated Ni3Al based single crystal superalloy during thermal exposure

Cheng Ai; Shusuo Li; Xinbao Zhao; Jian Zhou; Yajie Guo; Zhiping Sun; Xuding Song; Shengkai Gong


Surface & Coatings Technology | 2017

Improvement of interfacial bonding between plasma-sprayed cast iron splat and aluminum substrate through preheating substrate

Yazhe Xing; Zhang Liu; Gui Wang; Xing-Hang Li; Chaoping Jiang; Yongnan Chen; Yong Zhang; Xuding Song; Matthew S. Dargusch


School of Chemistry, Physics & Mechanical Engineering; Science & Engineering Faculty | 2017

Unexpected dynamic recrystallization behavior of Ti-7Cu alloy in semi-solid state

Yongnan Chen; Zhanwei Yuan; Haifei Zhan; Yongqing Zhao; Xuding Song; Gui Wang; YuanTong Gu

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Yongqing Zhao

Northwestern Polytechnical University

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Gui Wang

University of Queensland

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Haifei Zhan

Queensland University of Technology

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