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Preparation and Properties of Reactive Thermal Sprayed Ternary Boride Cermet Coatings

Author: WangWei
Tutor: MaZhuang
School: Liaoning Technical University
Course: Materials Processing Engineering
Keywords: Ternary boride Cermets coatings reactive thermal spraying thermal shock resistance Wear resistance Corrosion resistance
CLC: TG174.4
Type: Master's thesis
Year: 2011
Downloads: 81
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Abstract


In this thesis, ternary boride cermets coatings were prepared by Reactive Flame Sprayed (RFS) on Q235 steel substrate using Mo-FeB-Fe, Mo-FeB-Fe-Al and Mo-FeB-Fe-TiB2 as reaction system. The sprayed-powders were synthesized by sinter-crushing method at 900℃and polyvinyl butyral (PVB) granulation. Phases, particle size distribution, microstructure, and reaction mechanism of the sprayed-powders were investigated by X-ray diffraction (XRD), laser scattering particle analyzer, scanning electrical microscopy (SEM)/energy dispersive spectrum (EDS) and differential scanning calorimetry (DSC). The bonding strength between the substrate and the ceramic coating, micro-hardness, thermal shock resistance, porosity, corrosion resistance and wear resistance were characterized with the relevant lab testing equipment.The result indicates that the Mo2FeB2 cermets coatings were synthesized by sinter-crushing method using Mo powder, Fe-B alloy powder, and Fe powder as raw materials. Fe2B appeared after milling for 15 h in the powder, ternary boride (Mo2FeB2) was generated in sinter-crushing powders at 900℃. The coatings are composed of the major phases Mo2FeB2 andα-Fe, a little of Fe2O3、FeO and some pores. There is a transition from high hardness coating to low hardness substrate, the porosity of the coatings is 23%, the thermal-shock times is 38, the corrosion resistance of coatings is 4.89 times, the abrasive wear resistance and adhesive wear resistance are 5.28 times and 5.16 times than those of the substrate, respectively. The comprehensive properties of Mo2FeB2 cermets coatings can be improved further after heat-treatment at 1000℃under vacuum for 5 h.The powders for reactive thermal spraying (RTS) were synthesized by sinter-crushing method at 900℃using Mo, Fe-B alloy, Fe and Al powders as raw materials. Mo2FeB2 cermet coatings were prepared by RTS on Q235 steel and heat-treatmented at 1000℃under vacuum for 5 h. Ternary boride (Mo2FeB2) and inter-metallic compound (Fe3Al) were generated in sinter-crushing powders at 900℃. The coatings are composed of the Mo2FeB2, Fe3Al,α-Fe and some metallic oxides and pores. The porosity of coatings is 19%, the thermal-shock times of the coatings without heat-treatment are 43, the abrasive wear resistance and adhesive wear are 3.04 times and 4.24 times, and the corrosion resistance in 5wt. % H2SO4 solution is 4.02 times than those of the substrate, respectively. The comprehensive properties of Mo2FeB2 cermet coatings can be improved further after vacuum heat-treatment at 1000℃for 5 h.The TiB2/Mo2FeB2 composite ceramic coatings were synthesized using Mo, Fe-B alloy, Fe and TiB2 powders as raw materials. The coatings are composed of the major phases Mo2FeB2, TiB2 andα-Fe, a little of Fe2O3, FeO, and B2O3.The thermal-shock times of RTS-sprayed coatings is 50, the coatings prepared by APS have better wear resistance and corrosion resistance than the coatings prepared by RTS at different load, different time and corrosion media.

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CLC: > Industrial Technology > Metallurgy and Metal Craft > Metallurgy and Heat Treatment > Metal corrosion protection,metal surface treatment > Corrosion control and protection > Metal surface protection technology
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