Ultra-high temperature oxidation resistance of a novel (Mo, Hf, W, Ti)Si2 ceramic coating with Nb interlayer on Ta substrate
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Sainan Liu | Z. Cai | Xiao-Zhong Zhou | Yafang Zhang | Xiaojun Zhao | Shan-Ji Li | L. Xiao | Jiawei Xu | G.C. Zhao | Xiaojun Zhou
[1] Jieyan Yuan,et al. High-temperature corrosion of HfSiO4 environmental barrier coatings exposed to water vapor/oxygen atmosphere and molten calcium magnesium aluminosilicate , 2022, Corrosion Science.
[2] Sainan Liu,et al. Ultra-high temperature oxidation behavior of ZrB2/YSZ modified Si-Mo-W coating with a diffusion barrier on niobium alloy , 2021, Corrosion Science.
[3] Xin Wang,et al. Preparation of long-lifetime thermal barrier coatings and toughening mechanism by using hierarchy structured zirconia-based microspheres , 2021, Journal of the European Ceramic Society.
[4] Jin-ping Suo,et al. TiC-self-healing thermal barrier coating structures and oxidation resistance , 2021 .
[5] Xiaohong Wang,et al. Microstructure and high-temperature oxidation resistance of MoSi2-ZrO2 composite coatings for Niobium substrate , 2021, Journal of the European Ceramic Society.
[6] Hejun Li,et al. An oxidation and ablation protective WSi2-HfB2-SiC coating for SiC coated C/C composites at 1973 K and above , 2020 .
[7] B. Fu,et al. Thermal shock resistance of double-layer thermal barrier coatings , 2020, Journal of Materials Research.
[8] F. Peng,et al. Production of silicon carbide reinforced molybdenum disilicide composites using high-pressure sintering , 2020 .
[9] Sainan Liu,et al. Oxidation behaviour and microstructure of a dense MoSi2 ceramic coating on Ta substrate prepared using a novel two-step process , 2020 .
[10] Sainan Liu,et al. Microstructure and properties of Mo-based double-layer MoSi2 thick coating by a new two-step method , 2020 .
[11] J. Jakubowicz,et al. The Mechanical Properties of the Novel Nanocrystalline Refractory Tantalum Alloys , 2020, Protection of Metals and Physical Chemistry of Surfaces.
[12] Q. Fu,et al. The improvement of the self-healing ability of MoSi2 coatings at 900–1200 °C by introducing SiB6 , 2020 .
[13] Yan-rong Zhang,et al. Evolution in microstructure and high-temperature oxidation behaviors of the laser-cladding coatings with the Si addition contents , 2020 .
[14] J. Vleugels,et al. Ta-based 413 and 211 MAX phase solid solutions with Hf and Nb , 2020 .
[15] Guo Liu,et al. Interface evolution of Si/Mullite/Yb2SiO5 PS-PVD environmental barrier coatings under high temperature , 2020 .
[16] Guolin Wang,et al. Ablation behavior of an Ir-Hf coating: A novel idea for ultra-high temperature coatings in non-equilibrium conditions , 2020 .
[17] Song Wang,et al. Understanding the oxidation behavior of Ta–Hf–C ternary ceramics at high temperature , 2020, Corrosion Science.
[18] J. Reseland,et al. Tantalum nanoparticles reinforced polyetheretherketone shows enhanced bone formation. , 2019, Materials science & engineering. C, Materials for biological applications.
[19] B. Peng,et al. The effect of surface treatment on the corrosion behavior of pure Ta sheet in an equimolar NaCl-KCl melt at 850℃ in air, part 2: Diamond film, TaC film, Ta-Si coating and Ta-Si-Al coating , 2019, Corrosion Science.
[20] Sainan Liu,et al. A novel ultra-high-temperature oxidation protective MoSi2-TaSi2 ceramic coating for tantalum substrate , 2019, Journal of the European Ceramic Society.
[21] J. Jakubowicz,et al. High temperature resistance of novel tantalum-based nanocrystalline refractory compounds , 2019, Journal of Alloys and Compounds.
[22] E. Salernitano,et al. SiC/MoSi2 based coatings for Cf/C composites by two step pack cementation , 2019, Journal of the European Ceramic Society.
[23] Sainan Liu,et al. Microstructure and oxidation resistance of a YSZ modified silicide coating for Ta-W alloy at 1800 °C , 2018, Corrosion Science.
[24] S. Dong,et al. Thermal shock resistance of tri‐layer Yb2SiO5/Yb2Si2O7/Si coating for SiC and SiC‐matrix composites , 2018 .
[25] M. Erfanmanesh,et al. Oxidation behavior of nanostructured and conventional MoSi2 plasma-sprayed coatings , 2018, Ceramics International.
[26] S. Zwaag,et al. Thermo – mechanical properties of SPS produced self-healing thermal barrier coatings containing pure and alloyed MoSi2 particles , 2018, Journal of the European Ceramic Society.
[27] Changrong Li,et al. Thermodynamic re-assessment of the Hf-Si binary system , 2018, Journal of Physics: Conference Series.
[28] Zhanghua Wu,et al. Material-genome perspective towards tunable thermal expansion of rare-earth di-silicates , 2018, Journal of the European Ceramic Society.
[29] S. Zwaag,et al. Protecting the MoSi2 healing particles for thermal barrier coatings using a sol-gel produced Al2O3 coating , 2018, Journal of the European Ceramic Society.
[30] Wei Li,et al. MoSi2/(Mo, Ti)Si2 dual-phase composite coating for oxidation protection of molybdenum alloy , 2018 .
[31] E. Levashov,et al. Self-propagating high-temperature synthesis of nanocomposite ceramics TaSi2-SiC with hierarchical structure and superior properties , 2018 .
[32] Yan Jiang,et al. Oxidation protective MoSi2-SiC-Si coating for graphite materials prepared by slurry dipping and vapor silicon infiltration , 2017 .
[33] Xinghong Zhang,et al. Oxidative protection of a carbon-bonded carbon fiber composite with double-layer coating of MoSi2-SiC whisker and TaSi2-MoSi2-SiC whisker by slurry method , 2017 .
[34] Fangfang Xu,et al. Rare earth silicate environmental barrier coatings: Present status and prospective , 2017 .
[35] F. Hou,et al. Self-healing behavior in MoSi2/borosilicate glass composite , 2017 .
[36] Xiaohong Wang,et al. Synthesis and Properties of MoSi2–MoB–SiC Ceramics , 2016 .
[37] S. Bai,et al. Oxidation of iridium coatings on rhenium substrates at ultrahigh temperature in stagnant air: Its failure mechanism and life model , 2016 .
[38] H. Seifert,et al. Tantalum Oxidation in Steam Atmosphere , 2016, Oxidation of Metals.
[39] Siyong Gu,et al. Oxidation behavior of (Mo,W)Si2–Si3N4 composite coating on molybdenum substrate at 1600 °C , 2015 .
[40] S. Bai,et al. Ablation-resistant Ir/Re coating on C/C composites at ultra-high temperatures , 2015, Rare Metals.
[41] Q. Gong,et al. In-situ fabrication of MoSi2/SiC–Mo2C gradient anti-oxidation coating on Mo substrate and the crucial effect of Mo2C barrier layer at high temperature , 2014 .
[42] Wangping Wu,et al. Oxidation Resistance Coatings of Ir–Zr and Ir by Double Glow Plasma , 2014 .
[43] A. Paul,et al. Growth of hafnium and zirconium silicides by reactive diffusion , 2014 .
[44] R. Orrú,et al. Synthesis, Sintering, and Oxidative Behavior of HfB2–HfSi2 Ceramics , 2014 .
[45] M. Mezouar,et al. High melting points of tantalum in a laser-heated diamond anvil cell. , 2010, Physical review letters.
[46] J. Perepezko. The Hotter the Engine, the Better , 2009, Science.
[47] R. Sakidja,et al. Aluminum Pack Cementation on MoSiB Alloys , 2006 .
[48] J. Zaykoski,et al. Oxidation-based materials selection for 2000°C + hypersonic aerosurfaces: Theoretical considerations and historical experience , 2004 .
[49] G. Shao,et al. On the oxidation behaviour of MoSi2 , 2001 .
[50] Mattheiss. Calculated structural properties of CrSi2, MoSi2, and WSi2. , 1992, Physical review. B, Condensed matter.
[51] A. Miedema. On the heat of formation of solid alloys. II , 1976 .
[52] D. W. Lee,et al. Enhanced oxidation of molybdenum disilicide under tensile stress: Relation to pest mechanisms , 1970 .
[53] G. Todd,et al. Role of Silica in the Oxidation Resistance of Molybdenum Disilicide , 1964, Nature.