Journal of Inorganic Materials, Volume. 37, Issue 1, 86(2022)

Ablation Behavior of Ultra-high Temperature Composite Ceramic Matrix Composites

Yinchao JU*... Xiaoyong LIU, Qin WANG, Weigang ZHANG and Xi WEI |Show fewer author(s)
References(21)

[1] R NASLAIN. Design, preparation and properties of non-oxide CMCs for application in engines and nuclear reactors: an overview. Comp. Sci. & Tech., 64, 155-170(2004).

[6] M OPEKA, I TALMY, J ZAYKOSKI. Oxidation-based materials selection for 2000 ℃ plus hypersonic aerosurfaces: theoretical considerations and historical experience. J. Mater. Sci., 39, 5887-5904(2004).

[10] F MONTEVERDE, A BELLOSI. Oxidation of ZrB2-Based ceramics in dry air. J. Electrochem. Soc., 150, B552-B559(2003).

[11] E OPILA, M HALBIG. Oxidation of ZrB2-SiC. Ceram. Eng. Sci. Proc., 22, 221-228(2001).

[12] F TANG S, Y DENG J, WANGSHIJUN et al. Ablation behaviors of ultra-high temperature ceramic composites. Mater. Sci. & Eng. A, 465, 1-7(2007).

[13] G WANG Y, W LIU, F CHENG L et al. Preparation and properties of 2D C/ZrB2-SiC ultra high temperature ceramic composites. Mater. Sci. & Eng. A, 524, 129-133(2009).

[15] Q FENG, Z WANG, J ZHOU H et al. Microstructure analysis of Cf/SiC-ZrC composites in both fabrication and plasma wind tunnel testing processes. Ceram. Int., 40, 1199-1204(2014).

[16] Y WANG, D XU Y, G WANG Y et al. Effects of TaC addition on the ablation resistance of C/SiC. Mater. Lett., 64, 2068-2071(2010).

[18] A SAYIR. Carbon fiber reinforced hafnium carbide composites. J. Mater Sci., 39, 5995-6003(2004).

[19] G ZHANG W, M XIE CH, X WEI et al. MAX Phase and Ultra-high Temperature Ceramics for Extreme Environments (Chapter 14 C/C ZrB2-ZrC-SiC Composites Derived from Polymeric Precursor Infiltration and Pyrolysis Part 2: Mechanical and Ablation Properties.) IGI Global, 435-460(2013).

[20] G ZHANG W, M XIE CH, M GE et al. MAX Phase and Ultra-high Temperature Ceramics for Extreme Environments (Chapter 13 C/C ZrB2-ZrC-SiC Composites Derived from Polymeric Precursor Infiltration and Pyrolysis Part 1: Preparation and microstructures.),. IGI Global, 413-434(2013).

[21] X WEI, G ZHANG W, M GE. Polymer-derived ZrC-SiC Composite Ceramic Powders. 39th International Conference on Advanced Ceramics and Composites, Daytona beach, USA, 01, 25-30(2015).

[22] G WANG Y, J ZHU X, T ZHANG L et al. C/C-SiC-ZrC composites fabrication reactive melt infiltration with Si0.87Zr0.13 alloy. Ceram. Int., 38, 4337-4343(2012).

[23] J WANG, F HU H, D ZHANG Y et al. Preparation and characterization of C/SiC-ZrB2 composites by precursor infiltration and pyrolysis. Ceram. Int., 36, 1011-1016(2010).

[24] G LI Q, M DONG S, Z WANG et al. Fabrication and properties of 3D Cf/ZrC-SiC composites using ZrC precursor and polycarbosilane. J. Am. Ceram. Soc., 38, 6041-6045(2012).

[25] L YAN CH, J LIUN R, B CAO Y et al. Preparation and properties of 3D needle-punched C/ZrC-SiC composites by polymer infiltration and pyrolysis process. Ceram. Int., 10961-10970(2014).

[33] B BIRD, W STEWART, E LIGHTFOOT. Transport Phenomena. New York: John Wiley & Sons(1960).

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Yinchao JU, Xiaoyong LIU, Qin WANG, Weigang ZHANG, Xi WEI. Ablation Behavior of Ultra-high Temperature Composite Ceramic Matrix Composites[J]. Journal of Inorganic Materials, 2022, 37(1): 86

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Paper Information

Category: EDITORIAL

Received: Mar. 23, 2021

Accepted: --

Published Online: Sep. 23, 2022

The Author Email: JU Yinchao (by1704142@buaa.edu.cn)

DOI:10.15541/jim20210182

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