Advances in ultra-high temperature ceramics, composites, and coatings
Достижения в области сверхвысокотемпературной керамики, композитов и покрытий
2021-12-23
SCID: 54.1/r8b6ejbu
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UHTC coatingsfiber-reinforced compositeshigh-entropy UHTCshypersonic vehiclesultra-high temperature ceramics
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Abstract (AI)
Abstract Ultra-high temperature ceramics (UHTCs) are generally referred to the carbides, nitrides, and borides of the transition metals, with the Group IVB compounds (Zr & Hf) and TaC as the main focus. The UHTCs are endowed with ultra-high melting points, excellent mechanical properties, and ablation resistance at elevated temperatures. These unique combinations of properties make them promising materials for extremely environmental structural applications in rocket and hypersonic vehicles, particularly nozzles, leading edges, and engine components, etc. In addition to bulk UHTCs, UHTC coatings and fiber reinforced UHTC composites are extensively developed and applied to avoid the intrinsic brittleness and poor thermal shock resistance of bulk ceramics. Recently, highentropy UHTCs are developed rapidly and attract a lot of attention as an emerging direction for ultra-high temperature materials. This review presents the state of the art of processing approaches, microstructure design and properties of UHTCs from bulk materials to composites and coatings, as well as the future directions.
Key Findings
1
High-entropy UHTCs have emerged as a rapidly developing and prominent research direction in ultra-high-temperature materials.
2
The review covers processing methods, microstructure design, and properties across bulk UHTCs, composites, and coatings, while identifying future research directions.
3
UHTC coatings and fiber-reinforced composites are developed to mitigate the brittleness and poor thermal-shock resistance of bulk ceramics.
4
UHTCs combine ultra-high melting points, strong mechanical properties, and elevated-temperature ablation resistance, enabling use in rocket and hypersonic vehicle components.
5
Ultra-high temperature ceramics primarily comprise transition-metal carbides, nitrides, and borides, especially Group IVB compounds and TaC.
Research Object
Ultra-high temperature ceramics (UHTCs), including bulk UHTCs, UHTC composites, and UHTC coatings
Research Subject
processing approaches, microstructure design, and properties of UHTCs, including mechanical performance, melting behavior, ablation resistance, brittleness, and thermal shock resistance
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2021-12-23
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References available in scid.ai3
Effect of SiC Content on the Ablation and Oxidation Behavior of ZrB2-Based Ultra High Temperature Ceramic Composites2013
Fabrication and Characterization of an Ultra‐High‐Temperature Carbon Fiber‐Reinforced ZrB <sub>2</sub> –SiC Matrix Composite2007
Thermodynamic Analysis of ZrB 2 –SiC Oxidation: Formation of a SiC‐Depleted Region2006