Carbothermal reduction reaction enhanced wettability and brazing strength of AgCuTi-SiO2f/SiO2 system
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Z. Sun | Lixia Zhang | Yu Cao | Z. Sun | Jicai Feng | Z. Sun | Cao Yu | Cao Yu
[1] L. X. Zhang,et al. Wetting of AgCuTi alloys on quartz fiber reinforced composite modified by vertically aligned carbon nanotubes , 2019 .
[2] Xiaoguo Song,et al. Graphene nanoplatelets reinforced AgCuTi composite filler for brazing SiC ceramic , 2019, Journal of the European Ceramic Society.
[3] L. X. Zhang,et al. Active brazed Invar-SiO2f/SiO2 joint using a low-expansion composite interlayer , 2018 .
[4] L. X. Zhang,et al. Microstructure evolution and mechanical property of ZrC-SiC/Ti6Al4V joints brazed using Ti-15Cu-15Ni filler , 2017 .
[5] Xiong Qiang,et al. Effects of high-temperature annealing on microstructure and mechanical property of SiO 2f /SiO 2 composites , 2017 .
[6] L. X. Zhang,et al. Effect of vertically oriented few-layer graphene on the wettability and interfacial reactions of the AgCuTi-SiO2f/SiO2 system , 2017, Scientific Reports.
[7] L. X. Zhang,et al. Microstructure and mechanical response of the SiO2f/SiO2 composite and Invar alloy joints brazed with an AgCuTi alloy , 2016 .
[8] Q. Ma,et al. Control interfacial microstructure and improve mechanical properties of TC4-SiO2f/SiO2 joint by AgCuTi with Cu foam as interlayer , 2016 .
[9] Q. Ma,et al. Regulating the surface structure of SiO2f/SiO2 composite for assisting in brazing with Nb , 2016 .
[10] L. X. Zhang,et al. Brazing of SiO2f/SiO2 composite modified with few-layer graphene and Invar using AgCuTi alloy , 2015 .
[11] W. Tillmann,et al. Analyses of the spreading kinetics of AgCuTi melts on silicon carbide below 900 °C, using a large-chamber SEM , 2015 .
[12] Zhongliang Hu,et al. The pyrolysis mechanism of phenol formaldehyde resin , 2012 .
[13] H. Hwang,et al. Synthesis of β-silicon carbide nanofiber from an exfoliated graphite and amorphous silica , 2012 .
[14] A. Ataie,et al. SYNTHESIS OF NANOSIZE SILICON CARBIDE POWDER BY CARBOTHERMAL REDUCTION OF SiO2 , 2012 .
[15] Zhao Lei,et al. Interfacial microstructure and mechanical properties of joining electroless nickel plated quartz fibers reinforced silica composite to Invar , 2011 .
[16] N. Sobczak,et al. Wetting behavior and interfacial microstructure of palladium- and silver-based braze alloys with C–C and SiC–SiC composites , 2010 .
[17] N. Jiang,et al. Study on the pyrolysis of phenol-formaldehyde (PF) resin and modified PF resin , 2009 .
[18] A. Steinfeld,et al. Carbothermal reduction of alumina : Thermochemical equilibrium calculations and experimental investigation , 2007 .
[19] Volker Rheinberger,et al. Principles and phenomena of bioengineering with glass-ceramics for dental restoration , 2007 .
[20] D. Kim,et al. Formation of TiC particle during carbothermal reduction of TiO2 , 2007 .
[21] Anubhav Jain,et al. Carbothermal reduction synthesis of nanocrystalline zirconium carbide and hafnium carbide powders using solution-derived precursors , 2004 .
[22] Jiping Wang,et al. Preparation of porous SiC ceramic with a woodlike microstructure by sol-gel and carbothermal reduction processing , 2004 .
[23] T. Graule,et al. Wood‐Derived Porous SiC Ceramics by Sol Infiltration and Carbothermal Reduction , 2004 .
[24] P. Šajgalík,et al. Low-cost preparation of Si3N4-SiC micro/nano composites by in-situ carbothermal reduction of silica in silicon nitride matrix , 2004 .
[25] D. Jia,et al. Ambient and elevated temperature mechanical properties of hot-pressed fused silica matrix composite , 2003 .
[26] Wenping Ma,et al. Activated carbon supported bimetallic CoMo carbides synthesized by carbothermal hydrogen reduction , 2003 .
[27] Pan Wei,et al. Kinetics of reduction of magnesia with carbon , 2002 .
[28] B. V. L’vov. Mechanism of carbothermal reduction of iron, cobalt, nickel and copper oxides , 2000 .
[29] J. Hosson,et al. Reaction layers around SiC particles in Ti: an electron microscopy study , 1999 .
[30] C. Mo,et al. Synthesis of -SiC nanowires with SiO 2 wrappers , 1999 .