Influence of chromium diboride on the oxidation resistance of ZrB2-MoSi2 and ZrB2-SiC ceramics
暂无分享,去创建一个
[1] G. Hilmas,et al. ZrB2-MoSi2 ceramics: A comprehensive overview of microstructure and properties relationships. Part I: Processing and microstructure , 2019, Journal of the European Ceramic Society.
[2] H. Kleebe,et al. Understanding the oxidation behavior of a ZrB2–MoSi2 composite at ultra-high temperatures , 2018, Acta Materialia.
[3] A. V. Koroteev,et al. Behavior of Ultrahigh-Temperature ZrB2-Based Ceramics in Oxidation , 2018, Powder Metallurgy and Metal Ceramics.
[4] E. Delamarche,et al. Mesenchymal stem cells from tumor microenvironment favour breast cancer stem cell proliferation, cancerogenic and metastatic potential, via ionotropic purinergic signalling , 2017, Scientific Reports.
[5] H. Kleebe,et al. Super-strong materials for temperatures exceeding 2000 °C , 2017, Scientific Reports.
[6] G. Hilmas,et al. Thermal Properties of (Zr, TM)B2 Solid Solutions with TM = Ta, Mo, Re, V, and Cr , 2015 .
[7] Waltraud M. Kriven,et al. Developments in Strategic Materials and Computational Design V: A Collection of Papers Presented at the 38th International Conference on Advanced Ceramics and Composites January 27-31, 2014 Daytona Beach, Florida , 2014 .
[8] D. Sciti,et al. Oxidation behavior of ZrB2 composites doped with various transition metal silicides , 2014 .
[9] I. Shabalin. Ultra-High Temperature Materials I: Carbon (Graphene/Graphite) and Refractory Metals , 2014 .
[10] A. K. Suri,et al. Densification and oxidation behavior of a novel TiB2–MoSi2–CrB2 composite , 2013 .
[11] D. Sciti,et al. Effect of Transition Metal Silicides on Microstructure and Mechanical Properties of Ultra-High Temperature Ceramics , 2013 .
[12] V. Lavrenko,et al. High-temperature (to 1600°C) oxidation of ZrB2–MoSi2 ceramics in air , 2012, Powder Metallurgy and Metal Ceramics.
[13] S. Musić,et al. Precipitation of amorphous SiO2 particles and their properties , 2011 .
[14] S. M. Ivanov,et al. Oxidation of ZrB2–SiC–ZrSi2 ceramics in oxygen , 2010 .
[15] Jiecai Han,et al. Effect of Various Additives on the Oxidation Behavior of ZrB2‐Based Ultra‐High‐Temperature Ceramics at 1800°C , 2010 .
[16] Rosario Borrelli,et al. Thermo-structural behaviour of an UHTC made nose cap of a reentry vehicle , 2009 .
[17] J. Zaykoski,et al. High‐Temperature Chemistry and Oxidation of ZrB2 Ceramics Containing SiC, Si3N4, Ta5Si3, and TaSi2 , 2008 .
[18] I. Shmyt’ko,et al. Structure of precursors of complex oxides of rare-earth elements prepared by solvent thermolysis , 2008 .
[19] D. Sciti,et al. Effects of MoSi2 additions on the properties of Hf-and Zr-B2 composites produced by pressureless sintering , 2007 .
[20] Mark M. Opeka,et al. A Model for the Oxidation of ZrB2, HfB2 and TiB2 (Postprint) , 2007 .
[21] A. Bellosi,et al. Advances in microstructure and mechanical properties of zirconium diboride based ceramics , 2003 .
[22] F. Glaser,et al. Transition metal diborides , 1954 .