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Featured researches published by H.Z. Fu.


Materials Science and Technology | 2016

Microstructure and fracture toughness of Cr/Cr2Nb alloys with trace Y addition

Kewei Li; X. B. Wang; Suping Li; Hong Zhong; Y. L. Xue; H.Z. Fu

The microstructures of binary Cr/Cr2Nb alloys doped with 0.1u200aat-% rare earth element (REE) Y were characterised by fine interlamellar spacing, and the growth morphology of Cr2Nb primary phase was transformed from faceted to non-faceted. Moreover, the lamellar spacing was observed to decrease with the decreasing of solidification rate with the addition of REE Y. Furthermore, the mechanical tests showed that the addition of REE Y has a beneficial effect on the room temperature fracture toughness of Cr2Nb/Cr alloys. The room temperature fracture toughness of the Y doped Cr/Cr2Nb hypoeutectic and hypereutectic alloys increased by ∼130 and 140% over that of the undoped alloys respectively, which was caused by the refinement of lamellar eutectic and strengthening of lamellar eutectic bonding strength.


Materials Science and Technology | 2015

Improvement of room temperature fracture toughness in Cr2Nb-based alloys by heat treatment

Kewei Li; Suping Li; X. B. Wang; Hong Zhong; Y. L. Xue; H.Z. Fu

Abstract The microstructure and room temperature fracture toughness of binary Cr/Cr2Nb alloys annealed at 1653 K for 30 h were investigated at both the hypo- and hypereutectic compositions. The experimental results indicate that the high temperature heat treatment has a beneficial effect on the room temperature fracture toughness of the Cr2Nb/Cr alloys. After the heat treatment, the room temperature fracture toughness of the hypo- and hypereutectic alloys are increased by about 212 and 203%, which are 15 and 8 times higher than that of as-cast Cr2Nb Laves phase (1·2 MPa m1/2). The fractographic analysis indicates that in the annealed condition, the strengthen of lamellar eutectic cohesive strength can provide significant toughening of the matrix by crack deflection, crack blunting and crack bridging mechanisms.


Journal of Crystal Growth | 2007

Halo formation in directional solidification of Ni-Ni3Nb hypereutectic alloy

Shuangming Li; B.L. Jiang; B.L. Ma; H.Z. Fu


Journal of Crystal Growth | 2006

The growth and characterization of ZnSe nanoneedles by a simple chemical vapor deposition method

H.Z. Fu; H. Li; Wanqi Jie; Lan Yang


Materials Science and Engineering A-structural Materials Properties Microstructure and Processing | 2015

Characterization of fracture toughness and toughening mechanisms in Laves phase Cr2Nb based alloys

Y. L. Xue; Suping Li; Hong Zhong; H.Z. Fu


Journal of Crystal Growth | 2012

Solidification microstructure of laser floating zone remelted Al2O3/YAG eutectic in situ composite

Kan Song; Jijun Zhang; Xiaojiao Jia; Haijun Su; Laijun Liu; H.Z. Fu


Ceramics International | 2007

The O2-dependent growth of ZnO nanowires and their photoluminescence properties

H.Z. Fu; H. Li; Wanqi Jie; Chi Zhang


Materials Research Bulletin | 2013

Laser zone remelting of Al2O3/Er3Al5O12 bulk oxide in situ composite thermal emission ceramics: Influence of rapid solidification

H.J. Su; Jijun Zhang; Qun Ren; Y.F. Deng; Laijun Liu; H.Z. Fu; A.K. Soh


Journal of Crystal Growth | 2010

Growth and characterization of nanostructured Al2O3/YAG/ZrO2 hypereutectics with large surfaces under laser rapid solidification

Haijun Su; Jijun Zhang; Y.F. Deng; Laijun Liu; H.Z. Fu


Journal of Crystal Growth | 2012

Halo formation in arc-melted Cr–Nb alloys

K.W. Li; Suping Li; Y. L. Xue; H.Z. Fu

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Suping Li

Northwestern Polytechnical University

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Y. L. Xue

Northwestern Polytechnical University

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Hong Zhong

Northwestern Polytechnical University

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K.W. Li

Northwestern Polytechnical University

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Jijun Zhang

Northwestern Polytechnical University

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Laijun Liu

Guilin University of Technology

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X. B. Wang

Taiyuan University of Technology

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H. Li

Northwestern Polytechnical University

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Haijun Su

Northwestern Polytechnical University

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Kewei Li

Taiyuan University of Technology

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