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Titlebook: Ceramic Coatings for High-Temperature Environments; From Thermal Barrier Amirhossein Pakseresht,Kamalan Kirubaharan Amirtha Book 2024 The E

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Anlage der empirischen Untersuchungttention on three aspects for the enhancement of protective coatings: i) the optimization of multilayered TBC/EBC architecture, ii) assessment of the damage of TBC/EBC subjected to thermal cycling and molten silicates attack, and iii) exploration of candidate materials for the fabrication of novel c
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Distributed Organizing in Practice of C/C materials for protecting aerospace structures from thermal shock in re-entry missions. In particular, advanced coating treatments using ceramic-based (SiC-Al.O.-ZrO.) refractory varnishes, even reinforced by ceramic filling nanoparticles (SiO. powder), are analyzed by space environment simul
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https://doi.org/10.1007/978-3-658-06155-5-temperature ceramic coatings and fibre-reinforced ultra-high-temperature ceramic materials. UHTC coatings are extremely useful as thermal shock absorbers, surface seals and leak minimisers. The carbothermal reduction method is the oldest method employed for the synthesis of UHTCs. However, many oth
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https://doi.org/10.1007/978-3-658-06441-9top of it to protect the substrate against oxidation at ultra-high temperatures. HfO. also has a very high melting point which further protects the underlying coating and substrate. These characteristics make hafnium carbide very promising as an anti-ablation coating for ultra-high-temperature appli
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