Investigation of Pore Size Effect on the Infiltration Process of Ti6Al4V/xAg Metal Matrix Composites

被引:0
作者
Villa-Tapia, Juan Israel [1 ]
Vergara-Hernandez, Hector Javier [1 ]
Olmos, Luis [2 ]
Arteaga, Dante [3 ]
Tellez-Martinez, Jorge Sergio [1 ]
Solorio-Garcia, Victor Manuel [1 ]
Mihalcea, Elena [4 ]
机构
[1] Tecnol Nacl Mexico IT Morelia, Div Estudios Posgrad Invest, Ave Tecnol 1500,Colonia Lomas Santiaguito, Morelia 58120, Mexico
[2] Univ Michoacana, Inst Invest Ciencias Tierra INICIT, Fco J Mujica S-N, Morelia 58060, Mexico
[3] Univ Nacl Autonoma Mexico, Ctr Geociencias, Blvd Juriquilla 3001, Queretaro 76230, Mexico
[4] Univ Autonoma Zacatecas, Unidad Academ Ingn 1, Ave Lopez Valverde 801, Zacatecas 98060, Mexico
关键词
liquid phase sintering; pressureless infiltration; biomedical materials; permeability; computed microtomography; porous compacts; MECHANICAL-PROPERTIES; POWDER COMPACTS; TITANIUM-ALLOYS; POROUS TI6AL4V; BEHAVIOR; SILVER; WETTABILITY; COMPRESSION; POROSITY; DENSITY;
D O I
10.3390/ma18050939
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
This work investigates the fabrication of Ti6Al4V composites manufactured by powder metallurgy through pressureless infiltration. Porous Ti6Al4V alloy compacts with different particle sizes were fabricated by sintering and then, liquid Ag was infiltrated to obtain composites. Computed microtomography was used to analyze the samples before and after infiltration. Numerical flow simulations and dilatometry tests evaluated the kinetics of Ag infiltration into porous Ti6Al4V compacts. Microstructure was observed by SEM and mechanical strength was evaluated by compression tests. Results showed that the pore properties play a crucial role in the infiltration timing and the distribution of the Ag's liquid. In particular, large pores allowed the infiltration to start a few degrees C degrees earlier than samples with smaller pores. Three-dimensional images after infiltration showed that most of the pores were filled and the remaining ones were isolated. The resulting microstructure was composed of Ti2Ag, alpha-Ti and Ag phases, indicating that the Ag diffusion occurred. Furthermore, the mechanical strength depends on the interparticle neck sizes and the Ag improves the plastic deformation reached during compression tests. The best results were obtained for the samples with larger pore sizes because the resulting mechanical properties (E = 23 GPa and sigma y = 403 MPa) are close to that of human bones, making it the best candidate as an antibacterial material for biomedical use.
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页数:17
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