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Dive into the research topics where Xianfeng Ma is active.

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Featured researches published by Xianfeng Ma.


Intermetallics | 2003

Formation and structure of LaNi2 intermetallic compound under high pressure

Jin Liang; Xianfeng Ma; Jinkui Tang; Xuewei Yan; Wei Zhao; Minshou Zhao; Joan A Wiemann; Jinke Tang

The Cubic LaNi2 Laves phase has been synthesized under high pressure. The effects of temperature and pressure on the stability of the Laves phase have been studied. High pressure also induces the phase transitions from intermetallic compounds La2Ni3 and LaNi2.286 to the Laves phase.


Powder Metallurgy | 2017

Preparation and mechanical properties of bulk ultrafine (W0.5Al0.5)C0.65 with minor Fe binder by reactive hot-pressing

Jianwei Liu; Xianfeng Ma; Zhenye Zhao; Huaguo Tang; Wei Zhao

ABSTRACT Binderless (W0.5Al0.5)C0.65 produced by reactive hot-pressing (RHP) has high hardness but low bending strength and fracture toughness. In this work, bulk ultrafine (W0.5Al0.5)C0.65 with minor addition of Fe as the binder phase has been prepared by RHP. Rapid synthesis and high densification can be achieved for the (W0.5Al0.5)C0.65 with 0.4–1.0 wt-%Fe by RHP at a relatively low temperature. Pure (W0.5Al0.5)C0.65 without sub-carbide phase or brittle η-type phase can be synthesised due to the fact that the carbon vacancy in (W0.5Al0.5)Cy can reach 50%. And thanks to the combined effect of nanoscaled initial powders, low temperature, rapidly reactive sintering and pressure, bulk ultrafine (W0.5Al0.5)C0.65-Fe with a grain size of about 0.2 μm can be obtained by RHP. Thus, with an appropriate amount of Fe (about 0.8 wt-% in this work), the bending strength and fracture toughness of (W0.5Al0.5)C0.65 can be highly improved.


Materials Science and Engineering B-advanced Functional Solid-state Materials | 2006

Lanthanum zirconate nanofibers with high sintering-resistance

Jiayan Li; Hui Dai; Qifeng Li; X.H. Zhong; Xianfeng Ma; Junhu Meng; Xueqiang Cao


ChemPhysChem | 2005

Crystal Structure and Carbon Vacancy Hardening of (W0.5Al0.5)C1−x Prepared by a Solid‐State Reaction

Junmin Yan; Xianfeng Ma; Wei Zhao; Huaguo Tang; Changjun Zhu; Shuguang Cai


Materials Science and Engineering B-advanced Functional Solid-state Materials | 2007

Fast densification and electrical conductivity of yttria-stabilized zirconia nanoceramics

Qinggang Li; Tian Xia; Xizhe Liu; Xianfeng Ma; Junhu Meng; Xueqiang Cao


Journal of Alloys and Compounds | 2008

Nanostructured novel cemented hard alloy obtained by mechanical alloying and hot-pressing sintering and its applications

Zhuhui Qiao; Xianfeng Ma; Wei Zhao; Huaguo Tang; Bo Zhao


Journal of Alloys and Compounds | 2015

Investigation on the mechanical properties of WC–Fe–Cu hard alloys

Zhenye Zhao; Jianwei Liu; Huaguo Tang; Xianfeng Ma; Wei Zhao


Materials Science and Engineering A-structural Materials Properties Microstructure and Processing | 2012

Preparation of a high strength Al-Cu-Mg alloy by mechanical alloying and press-forming

Huaguo Tang; Zhiqiang Cheng; Jianwei Liu; Xianfeng Ma


International Journal of Refractory Metals & Hard Materials | 2007

High-pressure sintering study of a novel hard material (W0.5Al0.5)C0.5 without binder metal

Junmin Yan; Xianfeng Ma; Wei Zhao; Huaguo Tang; Changjun Zhu; Shuguang Cai


Journal of Alloys and Compounds | 2015

Effect of Mo addition on the microstructure and properties of WC–Ni–Fe hard alloys

Zhenye Zhao; Jianwei Liu; Huaguo Tang; Xianfeng Ma; Wei Zhao

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Huaguo Tang

Chinese Academy of Sciences

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Wei Zhao

Chinese Academy of Sciences

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Zhuhui Qiao

Chinese Academy of Sciences

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Shuguang Cai

Chinese Academy of Sciences

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Jianwei Liu

Chinese Academy of Sciences

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Bo Zhao

Chinese Academy of Sciences

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Junmin Yan

Chinese Academy of Sciences

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Changjun Zhu

Chinese Academy of Sciences

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Zhenye Zhao

Chinese Academy of Sciences

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Xuewei Yan

Chinese Academy of Sciences

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