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Dive into the research topics where Tan Shouhong is active.

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Featured researches published by Tan Shouhong.


Materials Letters | 1992

Microstructure and properties of hot isostatically pressed SiC ceramics with an Al2O3 addition

She Jihong; Jiang Dongliang; Tan Shouhong; Guo Jingkun

Abstract Dense Al 2 O 3 -doped SiC ceramics with an average grain size of 1.2 μm were obtained by hot isostatic pressing. The microstructure has been analyzed by TEM, EDX, EELS, SAD and SEM. The results show that the non-crystalline secondary phase, an alumino-silicate glass, is predominantly located at triple grain junctions in Al 2 O 3 -doped SiC ceramics. The influence of the glassy phase on sintering behaviour, high-temperature strength and oxidation resistance is investigated and discussed.


Archive | 1992

SiC-Si 3N4 Gradient Composite Ceramics by Special Hip Processing

Jiang Dongliang; She Jihong; Tan Shouhong; Guo Jingkun; Peter Greil

α-SiC fine powder clad with special glass were sintered by HIP processing under 200 MPa at 1800 °DC. The density of material obtained is close to 97.5% of theoretical density, bending strength reached 582 MPa, which is about 50% higher than that of common pressureless sintered silicon carbide. After post-HIP treatment, density can be further increased to above 98.5% of theoretical density. The material with different composition can also be got in various atmospheres. According to thermodynamic calculation, SiC can be transformed into Si3N4 under optimum temperature and high N2-pressure. Experimental work was successful in fabricating SiC-Si3N4 gradient composite material. This kind of new SiC-Si3N4 gradient composite material were also identified by X-ray diffraction analysis. The strength and fracture toughness of this material is 900± 100 MPa and 8.4 MPa.m 1/2 respectively, which are about one times higher than those of hot-pressed SiC material. This study offered a new HIP processing technology for preparing high performance SiC-Si3N4 gradient composite ceramics directly from pure SiC powder.


Archive | 1999

High-compact low-porosity silicon nitride-silicon carbide-oxide system as refractory material

Pan Yubai; Jiang Dongliang; Tan Shouhong


Archive | 2001

Reticular microwave-absorbing body ceramic and its producing method

Zhu Xinwen; Jiang Dongliang; Tan Shouhong


Archive | 2002

Process for preparing biological active tabular spar ceramics

Huang Xiang; Jiang Dongliang; Tan Shouhong


Archive | 2000

Water-base curtain coating process for preparing ceramic film

Zhang Jingxian; Jiang Dongliang; Tan Shouhong


Archive | 2002

Preparation method of wollastone/tricalcium phosphate composite bio-active material

Huang Xiang; Jiang Dongliang; Tan Shouhong


Archive | 2002

Silicon carbide ceramics containing C-B-Al compound phase synthesized by reaction and its liquid-phase sinter process

Tan Shouhong; Liao Lulin; Jiang Dongliang


Archive | 2000

Improved butt-roller extruder

Zhu Xinwen; Jiang Dongliang; Tan Shouhong


Archive | 2005

Process for preparing biological active wollastonite ceramic

Huang Xiang; Jiang Dongliang; Tan Shouhong

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Zhang Jingxian

Chinese Academy of Sciences

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Pan Yubai

Chinese Academy of Sciences

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Peter Greil

University of Erlangen-Nuremberg

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