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Effect of Open Porosity of Y2O3 Ceramic on the Apparent Contact Angles and Interactions Between Ti47Al Alloys and Y2O3 Ceramic 被引量:2

Effect of Open Porosity of Y_2O_3 Ceramic on the Apparent Contact Angles and Interactions Between Ti47Al Alloys and Y_2O_3 Ceramic
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摘要 The effect of open porosity of Y2O3ceramic on the apparent contact angle and interaction between molten Ti47 Al alloy and Y2O3ceramic substrates under pure Ar was investigated by using a sessile drop method at 1600 °C. As the open porosity increased from 9.6% to 30.3%, the spreading rate of molten Ti47 Al alloys on Y2O3ceramic substrates reduced from 2.3 to 1.1°/s; meanwhile, the final equilibrium contact angles increased from 55.8° to 63.6°. The microstructure observations revealed that with increasing the open porosity of the Y2O3substrates, the thickness of sand adhesion at the interfaces of the alloy droplets increased from 5.4 to 15.7 lm, and ceramic particles in the alloy matrix increased as well. The increasing contact area between the molten alloy and the substrate played a dominant role in determining the interaction on Ti Al/Y2O3interface. The effect of open porosity of Y_2O_3 ceramic on the apparent contact angle and interaction between molten Ti47 Al alloy and Y_2O_3 ceramic substrates under pure Ar was investigated by using a sessile drop method at 1600 °C. As the open porosity increased from 9.6% to 30.3%, the spreading rate of molten Ti47 Al alloys on Y_2O_3 ceramic substrates reduced from 2.3 to 1.1°/s; meanwhile, the final equilibrium contact angles increased from 55.8° to 63.6°. The microstructure observations revealed that with increasing the open porosity of the Y_2O_3 substrates, the thickness of sand adhesion at the interfaces of the alloy droplets increased from 5.4 to 15.7 lm, and ceramic particles in the alloy matrix increased as well. The increasing contact area between the molten alloy and the substrate played a dominant role in determining the interaction on Ti Al/Y_2O_3 interface.
出处 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2017年第5期456-463,共8页 金属学报(英文版)
基金 support of the‘‘National Science&Technology Pillar Program of China’’project of PR China(No.2013BAB11B04) the National Natural Science Foundation of China(Grant No.51404017) the State Key Laboratory of Refractories and Metallurgy,Wuhan University of Science and Technolog
关键词 Contact angle Yttria Titanium aluminides Interaction Open porosity Contact angle Yttria Titanium aluminides Interaction Open porosity
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