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Featured researches published by Xiao-Yu Ding.


Materials | 2016

Chemical Synthesis and Oxide Dispersion Properties of Strengthened Tungsten via Spark Plasma Sintering

Xiao-Yu Ding; Lai-Ma Luo; Hong-Yu Chen; Xiao-Yong Zhu; Xiang Zan; Ji-Gui Cheng; Yucheng Wu

Highly uniform oxide dispersion-strengthened materials W–1 wt % Nd2O3 and W–1 wt % CeO2 were successfully fabricated via a novel wet chemical method followed by hydrogen reduction. The powders were consolidated by spark plasma sintering at 1700 °C to suppress grain growth. The samples were characterized by performing field emission scanning electron microscopy and transmission electron microscopy analyses, Vickers microhardness measurements, thermal conductivity, and tensile testing. The oxide particles were dispersed at the tungsten grain boundaries and within the grains. The thermal conductivity of the samples at room temperature exceeded 140 W/m·K. The tensile tests indicated that W–1 wt % CeO2 exhibited a ductile–brittle transition temperature between 500 °C and 550 °C, which was a lower range than that for W–1 wt % Nd2O3. Surface topography and Vickers microhardness analyses were conducted before and after irradiations with 50 eV He ions at a fluence of 1 × 1022 m−2 for 1 h in the large-powder material irradiation experiment system. The grain boundaries of the irradiated area became more evident than that of the unirradiated area for both samples. Irradiation hardening was recognized for the W–1 wt % Nd2O3 and W–1 wt % CeO2 samples.


Powder Technology | 2014

Effects of simplified pretreatment process on the morphology of W–Cu composite powder prepared by electroless plating and its sintering characterization

Li-Mei Huang; Lai-Ma Luo; Xiao-Yu Ding; Guang-Nan Luo; Xiang Zan; Ji-Gui Cheng; Yucheng Wu


Powder Technology | 2013

A specific chemical activation pretreatment for electroless nickel plating on SiC ceramic powders

Laima Luo; Ze-Long Lu; Xiao-Yue Tan; Xiao-Yu Ding; Li-Mei Huang; Ji-Gui Cheng; Liu Zhu; Yucheng Wu


Surface & Coatings Technology | 2014

Electroless copper plating on PC engineering plastic with a novel palladium-free surface activation process

Lai-Ma Luo; Ze-Long Lu; Xin-Min Huang; Xiao-Yue Tan; Xiao-Yu Ding; Jigui Cheng; Liu Zhu; Yucheng Wu


Fusion Engineering and Design | 2015

Fabrication of W–1 wt.% TiC composites by spark plasma sintering

Xiao-Yu Ding; Lai-Ma Luo; Hong-Yu Chen; Guang-Nan Luo; Xiao-Yong Zhu; Xiang Zan; Jigui Cheng; Yucheng Wu


Fusion Engineering and Design | 2014

Microstructure and properties of tungsten–samarium oxide composite prepared by a novel wet chemical method and spark plasma sintering

Xiao-Yu Ding; Lai-Ma Luo; Xiao-Yue Tan; Guang-Nan Luo; Ping Li; Xiang Zan; Jigui Cheng; Yucheng Wu


Journal of Alloys and Compounds | 2015

Preparation of TiC/W core–shell structured powders by one-step activation and chemical reduction process

Xiao-Yu Ding; Lai-Ma Luo; Li-Mei Huang; Guang-Nan Luo; Xiao-Yong Zhu; Jigui Cheng; Yucheng Wu


Journal of Nuclear Materials | 2014

Chemically produced tungsten–praseodymium oxide composite sintered by spark plasma sintering

Xiao-Yu Ding; Lai-Ma Luo; Ze-Long Lu; Guang-Nan Luo; Xiao-Yong Zhu; Jigui Cheng; Yucheng Wu


Journal of Nuclear Materials | 2017

D2 retention and microstructural evolution during He irradiation in candidate plasma facing material W-La2O3 alloy

Qiang Xu; Xiao-Yu Ding; Lai-Ma Luo; M. Miyamoto; M. Tokitani; J. Zhang; Y.C. Wu


International Journal of Refractory Metals & Hard Materials | 2014

Study on activated W powders by chemical activation pretreatment and its sintering behavior

Xiao-Yu Ding; Lai-Ma Luo; Li-Mei Huang; Xiao-Yue Tan; Hao Li; Guang-Nan Luo; Xiang Zan; Yu Hong; Jigui Cheng; Yucheng Wu

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Lai-Ma Luo

Hefei University of Technology

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Yucheng Wu

Hefei University of Technology

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Guang-Nan Luo

Chinese Academy of Sciences

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Jigui Cheng

Hefei University of Technology

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Xiang Zan

Hefei University of Technology

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Li-Mei Huang

Hefei University of Technology

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Xiao-Yong Zhu

Hefei University of Technology

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Xiao-Yue Tan

Hefei University of Technology

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Ze-Long Lu

Hefei University of Technology

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