In order to improve the fracture toughness, SiC whiskers or SiC chopped fibers were added to a ZrB2 matrix in volumetric fraction of 10 and 20 vol.%. The composites were hot-pressed between 1650 and 1730?C and their final relative densities were higher than 95%. Even at the lowest sintering temperature, the whiskers showed an evident degradation. On the other hand, the fibers maintained their initial shape and a strong interface formed between matrix and reinforcement. The fracture toughness of the composites increased from 30 to 50% compared to the baseline material, with the fibers showing a slightly higher toughening effect. In the whiskers-reinforced composites, the room-temperature strength increased when 10 vol...
ZrC ceramics containing 30 vol% SiC-ZrB2 were produced by high-energy ball milling and reactive hot ...
Zirconium diboride (ZrB2) and ZrB2 ceramics containing 10, 20, and 30 vol% SiC particulates were pre...
The mechanical properties of ZrB2-30 wt-%SiC ultra high temperature ceramic composites have been stu...
Ultra-high temperature ceramics are material candidate for application in aggressive environment, es...
Abstract ZrB2–SiC/ZrSi2 ceramics containing 30 vol% carbon fiber (Cf) additive were fabricated by ho...
ZrB2-SiC composites were hot pressed at 2473 K (2200 A degrees C) with graded amounts (5 to 20 wt pc...
This study reports the microstructural analysis and mechanical properties of a ZrB2 ceramic containi...
The research presented in this thesis focuses on the processing, microstructure, and mechanical prop...
The sintering behavior and mechanical properties of carbon fibre reinforced ZrB2/SiC/WC composites w...
The research presented in this thesis focuses on the processing, microstructure, and mechanical prop...
Zirconium diboride (ZrB2) based ultra-high temperature ceramics either unmodified or with SiC partic...
Zirconium diboride (ZrB2) based ultra-high temperature ceramics either unmodified or with SiC partic...
Zirconium diboride (ZrB2) based ultra-high temperature ceramics either unmodified or with SiC partic...
The research presented in this thesis focuses on the processing, microstructure, and mechanical prop...
Zirconium diboride (ZrB2) based ultra-high temperature ceramics either unmodified or with SiC partic...
ZrC ceramics containing 30 vol% SiC-ZrB2 were produced by high-energy ball milling and reactive hot ...
Zirconium diboride (ZrB2) and ZrB2 ceramics containing 10, 20, and 30 vol% SiC particulates were pre...
The mechanical properties of ZrB2-30 wt-%SiC ultra high temperature ceramic composites have been stu...
Ultra-high temperature ceramics are material candidate for application in aggressive environment, es...
Abstract ZrB2–SiC/ZrSi2 ceramics containing 30 vol% carbon fiber (Cf) additive were fabricated by ho...
ZrB2-SiC composites were hot pressed at 2473 K (2200 A degrees C) with graded amounts (5 to 20 wt pc...
This study reports the microstructural analysis and mechanical properties of a ZrB2 ceramic containi...
The research presented in this thesis focuses on the processing, microstructure, and mechanical prop...
The sintering behavior and mechanical properties of carbon fibre reinforced ZrB2/SiC/WC composites w...
The research presented in this thesis focuses on the processing, microstructure, and mechanical prop...
Zirconium diboride (ZrB2) based ultra-high temperature ceramics either unmodified or with SiC partic...
Zirconium diboride (ZrB2) based ultra-high temperature ceramics either unmodified or with SiC partic...
Zirconium diboride (ZrB2) based ultra-high temperature ceramics either unmodified or with SiC partic...
The research presented in this thesis focuses on the processing, microstructure, and mechanical prop...
Zirconium diboride (ZrB2) based ultra-high temperature ceramics either unmodified or with SiC partic...
ZrC ceramics containing 30 vol% SiC-ZrB2 were produced by high-energy ball milling and reactive hot ...
Zirconium diboride (ZrB2) and ZrB2 ceramics containing 10, 20, and 30 vol% SiC particulates were pre...
The mechanical properties of ZrB2-30 wt-%SiC ultra high temperature ceramic composites have been stu...