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Effect of LaB6 additions on densification,microstructure, and creep with oxide scale formation in ZrB2-SiC composites sintered by spark plasma sintering
Authors:Sunil Kumar Kashyap  Rahul Mitra
Affiliation:Department of Metallurgical and Materials Engineering, Indian Institute of Technology Kharagpur, Kharagpur, 721302, West Bengal, India
Abstract:A comparative study has been carried out on densification, microstructure, and creep with oxide-scale formation in ZrB2-20 vol.% SiC-(7, 10 or 14 vol.%) LaB6 composite containing B4C and C as additives, and prepared by spark plasma sintering at 1800 °C under 70 MPa ram pressure. Addition of LaB6 has promoted densification of composites by scavenging oxygen impurity, thereby increasing their hardness. Constant load compressive creep tests at 1300 °C under 47 and 78 MPa stresses have shown the lowest creep rate in the 10 vol.% LaB6 composite. The stress exponents obtained for composites having 10 vol.% LaB6 (~1.3 ± 0.1) and 14 vol.% LaB6 (~2.6 ± 0.2) suggest respectively, grain boundary diffusion with intergranular glassy phase formation and dislocation glide as operating mechanisms. Intergranular cracking caused by grain boundary sliding appears as the damage mechanism. Oxide scales formed during creep exhibit greater thickness and defect concentration than those by isothermal exposure at 1300 °C within similar duration.
Keywords:Corresponding author    Zirconium diboride  Spark plasma sintering  Microstructure  Creep  Oxidation
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