Microstructure and mechanical properties of ZrC-TaCx composite fabricated by displacive compensation of porosity at 1300 °C

2018 
Abstract ZrC-TaC x composites synthesized via Displacive Compensation of Porosity method 1300 °C using porous TaC preforms and Zr-Cu binary melts (Zr 2 Cu, ZrCu and Zr 14 Cu 51 ) are presented in this work. Effect of Zr content in the infiltration on microstructure is investigated by XRD, FE-SEM and TEM analysis. The results indicate that ZrC and platelet-like Ta 2 C formed during the reactive infiltration of Zr-Cu melts into TaC preforms. The nano precipitations in TaC x /ZrC grains and Ta atoms dissolved in ZrC suggests a probable dissolution-precipitation mechanism of the reaction between Zr-Cu melts and TaC. The ZrC-TaC x composite exhibits a flexural strength of 142 MPa and a fracture toughness of 5.34 MPa m 1/2 . The platelet-like Ta 2 C phase has toughening effect by crack deflection and bridging.
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