Ablation in different heat fluxes of C/C composites modified by ZrB2–ZrC and ZrB2–ZrC–SiC particles
•Two heat fluxes were used to evaluate the ablation of modified C/C composites.•C/C–ZrB2–ZrC–SiC has the lowest ablation rate under a heat flux of 2.38MW/m2.•Ablation rates of C/C shows the smallest increase with increase in heat flux.•Thermal mismatch and evaporation of SiO2 dominate variations in...
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| Published in: | Corrosion science Vol. 74; pp. 159 - 167 |
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| Main Authors: | , , , , , |
| Format: | Journal Article |
| Language: | English |
| Published: |
Kidlington
Elsevier Ltd
01.09.2013
Elsevier |
| Subjects: | |
| ISSN: | 0010-938X, 1879-0496 |
| Online Access: | Get full text |
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| Summary: | •Two heat fluxes were used to evaluate the ablation of modified C/C composites.•C/C–ZrB2–ZrC–SiC has the lowest ablation rate under a heat flux of 2.38MW/m2.•Ablation rates of C/C shows the smallest increase with increase in heat flux.•Thermal mismatch and evaporation of SiO2 dominate variations in the ablation behavior.
Carbon/carbon composites modified by ZrB2–ZrC–SiC particles (C/C–Z–SiC), C/C–Z and C/C were ablated by oxyacetylene torch using two different heat fluxes to investigate the effect of doped ceramic particles. Results indicated that C/C–Z–SiC had the best ablation property in heat flux of 2.38MW/m2 whereas their ablation rates increased fastest when heat flux rising from 2.38 to 4.18MW/m2. C/C composites had the poorest ablation property in the lower heat flux and their ablation rates increased slowest. Thermal mismatch of Z, SiC and C and evaporation of SiO2 induced the various ablation behavior. |
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| ISSN: | 0010-938X 1879-0496 |
| DOI: | 10.1016/j.corsci.2013.04.038 |