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Featured researches published by Xiao Shulong.


Rare Metal Materials and Engineering | 2013

Effect of Y Addition on Microstructure and Mechanical Properties of TiAl-based Alloys Prepared by SPS

Xiao Shulong; Xu Lijuan; Yu Hongbao; Chen Yuyong

Abstract TiAl alloys with a composition of Ti-45Al-2Cr-2Nb-1B-0.5Ta(at%) (TA alloy) and Ti-45Al-2Cr-2Nb-1B-0.5Ta- 0.225Y(at%) (TAY alloy) were prepared by double mechanical milling and spark plasma sintering (SPS). The effect of Y addition on microstructure and mechanical properties of TiAl-based alloys was studied. The results show that the morphology of double mechanical milling powder is regular with sizes in the range of 20∼40 μm. The main phases of TiAl and Ti3Al and few phases of Ti2Al and TiB2 were observed in the SPS bulk samples of TiAl-based alloys. The equiaxed crystal grain microstructure was achieved with sizes in the range of 100∼400 nm in TA alloy samples. The samples exhibited compressive properties at room temperature with a compressive strength of 2614 MPa and a compression ratio of 20.57%. For TAY alloy, the sizes of equiaxed crystal grain obviously decreased. The samples exhibited compressive properties at room temperature with a compressive strength of 2677 MPa and a compression ratio of 22.91%. The micro-hardness of the SPS bulk samples of TA alloy was obviously higher than that of the SPS bulk samples of TAY alloy. On the base of analysis of fractographs, it showed that the compression fracture transform of the SPS TiAl-based alloys samples was intergranular rupture.


Acta Metallurgica Sinica | 2013

REVIEW OF THE INVESTMENT CASTING OF TiAl-BASED INTERMETALLIC ALLOYS

Chen Yuyong; Jia Yi; Xiao Shulong; Tian Jing; Xu Lijuan

TiAl–based intermetallic alloys are emerging as a new generation light–weight, high temperature structural materials and possess wide capacities of engineering applications in aeronautics, space and automobile industries. Near–net–shape casting is a commonly used manufacturing method for TiAl–based alloys. In this paper, the evolution of the alloy design and investment casting technology of TiAl–based alloys are reviewed. The prospects of the investment casting of TiAl–based alloys are also represented.


Rare Metal Materials and Engineering | 2011

Effect of Heat Treatment on Microstructure and Properties of as-Forged TiAl Alloy with β Phase

Yang Fei; Kong Fantao; Chen Yuyong; Xiao Shulong

Abstract The canned forging pancake of Ti-45Al-5.4V-3.6Nb-0.3Y alloy was prepared, and the microstructure control and properties for various microstructures of as-forged alloy were studied. Three different microstructures, duplex, nearly lamellar and fully lamellar, were obtained through heat treatments. The microstructure evolution was analyzed and tensile properties were measured. The results show that the treated sample with duplex microstructure exhibits the best ductility, and its elongation reaches 1.35% the alloy with nearly lamellar microstructure has better strength, i.e.yield strength and fracture strength are 605.31 MPa and 665.75 MPa at room temperature, respectively.


Archive | 2013

Method for producing oxide ceramic shell capable of improving TiAl alloy casting surface performances

Xiao Shulong; Xu Lijuan; Tian Jing; Jia Yi; Chen Yuyong


Archive | 2015

Fully lamellar heat treatment method of tau 3 phase-containing gamma-TiAl intermetallic compound cast ingot

Chen Yuyong; Han Jianchao; Tian Jing; Xiao Shulong; Xu Lijuan; Wang Xiaopeng; Jia Yi; Cao Shouzhen


Archive | 2014

Smelting method for manufacturing large-sized titanium-aluminum alloy ingot

Chen Yuyong; Kong Fantao; Xiao Shulong; Deng Ningjia; Ge Wei; Zhao Ruijin


Archive | 2013

Ultrahigh-strength titanium alloy and preparation method thereof

Chen Yuyong; Du Zhaoxin; Xiao Shulong; Xu Lijuan; Kong Fantao; Tian Jing


Archive | 2015

Preparation method of TiAl alloy investment casting shell

Chen Yuyong; Cao Shouzhen; Xiao Shulong; Han Jianchao; Jia Yi


Archive | 2015

Tau3-phase-containing gamma-TiAl intermetallic compound cast ingot and preparation method thereof

Chen Yuyong; Han Jianchao; Xiao Shulong; Tian Jing; Xu Lijuan; Wang Xiaopeng; Jia Yi; Cao Shouzhen


Archive | 2014

Alterant for ADC12 aluminum alloy and alteration method of alloy

Chen Yuyong; Zhu Mingdong; Xiao Shulong; Feng Yufeng; Ruan Zhilin; Jia Aimin

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Chen Yuyong

Harbin Institute of Technology

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Xu Lijuan

Harbin Institute of Technology

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Wang Xiaopeng

Harbin Institute of Technology

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Kong Fantao

Harbin Institute of Technology

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Zhang Changjiang

Taiyuan University of Technology

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Zhang Shuzhi

Taiyuan University of Technology

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Chen Guang

Nanjing University of Science and Technology

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Liu Qiuzu

Taiyuan University of Technology

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Liu Yanping

Taiyuan University of Technology

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Yang Fei

Harbin Institute of Technology

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