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Featured researches published by Wu Xiaochun.


Journal of Shanghai University (english Edition) | 2003

Effect of the compound layer of plasma nitriding on thermal fatigue behavior of 4Cr5MoSiV1 die steel

Peng Wen-Yi; Wu Xiaochun; Min Yong-an; Xu Luoping

With the Uddeholm self-restricted method, the effect of compound layer of plasma nitriding on thermal fatigue behavior of 4Cr5MoSiVl steel was studied by the way of adding Ar during plasma nitriding to remove the compound layer. The results show that the compound layer of plasma nitriding can delay the nucleation of heat cracks and hold back the propagation of heat cracks from surface to substrate because of its high hardness and strength. On the other land, the heat checking expands faster with the compound layer on the surface than that without it. After 3000 cycles of thermal fatigue test, both heat cracks with the compound layer are wider than the another without compound layer and the number of heat cracks of the former is more from the view of cross section.


Acta Metallurgica Sinica | 2013

STUDY ON GROWTH MECHANISM OF SALT BATH VANADIZING COATING BY TD PROCESS ON SDC99 STEEL

Yang Hao-peng; Wu Xiaochun; Qin Fang; Yang Longjiao

The SDC99 steel is a new kinds of cold worksteel with high strength,high wear resistant and toughness.However,in order to extend its service life,the surface modification technology is required.Many surface treatments can be used to improve the wear resistant of cold worksteel.Among these methods,transition metal nitrides and carbides(such as VC) fabricated by TD(thermal diffusion carbide coating process) have been commonly used in tribological applications to enhance the life of mechanical components because they possess high hardness, excellent wear resistance,low coefficient of friction and good corrosion resistance.During the TD process,materials are immersed in to a molten borax bath that contains the relevant carbide/nitride forming element such as V,Nb,Ta,Cr,Mo and W,and the coating is formed by the combination of metal elements as mention above with the carbon/nitrogen diffused from the substrate.In order to investigate the growth mechanism of VC coating on SDC99 steel,salt bath vanadizing by TD process were performed by molten borax bath containing Na_2B_4O_7(75.6%),BaCl2(8.4%), V_2O_5(10%) and Al powders(6%).The experiments were carried at 850,900,950,1000 and 1050℃for various time.The microstructure and morphology of VC coating layer were observed using SEM and metallographic measurements,and the elemental analysis on the surface were carried out with EDS.The crystalline structures of samples were characterized with XRD.The hardness gradient of nanoindentation test was performed on Triboindenter in-situ nanomechanical test system. The results indicated that at the same immersion time,the higher the temperature of salt bath was,the thicker of prepared coating was.The VC coating layer possesses much greater hardness(about 22 GPa) than that of the substrate(about 7.0 GPa).The hardness between VC coating layer and substrate decreases slowly,indicating that the microstructure of substrate adjacent to the interface can provide effective supporting for VC coating layer.The growth mechanism was the nucleation and growth of initial grains,and the formation of sub-micron sized grains on them.Moreover,the crystalline grain of coating grew into equiaxed grains,due to the influence of carbon activity in substrate,and the grain size decreased with the decrement of its distance to the substrate.In addition,at the initial growth stage of crystalline grain of coating,the growth preferred orientation of crystalline grains on SDC99 steel transformed from crystal plane(200) to(111).However,with the increment of time,the growth preferred orientation of crystalline grains was unsignificance and they grew into equiaxed grains.


Archive | 2013

Plastic mold steel and manufacture method thereof

Xu Wei; Wu Xiaochun; Zhou Quan; Min Yong-an; Luo Yi


Journal of Shanghai University (english Edition) | 2001

Influence of Different Surface Treatments of H13 Hot Work Die Steel on Its Thermal Fatigue Behaviors

Min Yong-an; Wu Xiaochun; Xu Luoping; Tang Wen-jun; Zhang Shuang-ke; G. Wallner; David Liang; Feng Ying-yu


Archive | 2013

Bainite pre-hardening plastic mold steel and preparation method and heat treatment method thereof

Wu Xiaochun; Zhang Zheng; Zuo Pengpeng; Li Junwan


Archive | 2013

Economical aluminium-containing hot extrusion mold steel and preparation, heat treatment and surface treatment method thereof

Wu Xiaochun; Zuo Pengpeng; Shi Yuanji


Archive | 2005

Valve finisher surface modified processing method

Min Yong An; Wu Xiaochun; Xu Luoping


Archive | 2015

Alloy steel SDH55 for shield machine tools and production method thereof

Wu Xiaochun; Yin Kangying; Zuo Pengpeng; Wu Boya


Archive | 2013

Die-casting die steel with high heat conductivity and large section and preparation and heat treatment method thereof

Wu Xiaochun; Zuo Pengpeng; Zhang Zhe


Archive | 2016

Ion nitriding-low pressure oxidation composite treatment method of aluminum alloy die-casting die or die steel

Wu Xiaochun; Wang Ming; Huang Wenming; Wu Boya

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