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13篇 您的检索式:作者名="Monteverde Frederic"
    题名 作者 年代 出处 被引量
1Synthe-sis of ultrafine titanium carbonitride powders 显示文摘Monteverde Frederic Medri Valentina Bellosi Alida 2001AppliedOrganometallic Chemistry2001,15,5:1
2Microstructttre and mechanical properties of ZrB2-MoSi2 ceramic composites produced by different sintering techniques 显示文摘SCITI Diletta MONTEVERDE Frederic GUICCIARDI Stefano 2006Mater Sci Eng A2006,434,12:1
3The addition of SiC particles into a MoSi 2 -doped ZrB 2 matrix: Effects on densification, microstructure and thermo-physical properties显示文摘Frederic Monteverde 2008Materials Chemistry and Physics2008,,2:1
4Oxidation behavior of titanium carbonitride based materials显示文摘Frederic Monteverde Alida Bellosi 2002Corrosion Science2002,44,:1
5Comparison of ZrB2-ZrC-SiC composites fabricated by spark plas- ma sintering and hot-pressing显示文摘Valentina Medri Frederic Monteverde Andrea Balbo 2005Advanced Engineering Materials2005,7,3:1
6Microstructure of hot-pressed Ti (C,N)-based cermets显示文摘Frederic Monteverde Valentina Medri Alida Bellosi 2002Journal of the European Ceramic Society2002,22,:1
7Synthesis of ultrafine titanium carbonitride powders显示文摘Frederic Monteverde Valentina Medri Alida Bellosi 2001Applied Organometallic Chemistry2001,15,:1
8Effect of the addition of silicon nitride on sintering behaviour and microstructure of zirconium diboride显示文摘Frederic Monteverde Alida Bellosi 2002Scripta Materialia2002,,3:1
9Oxidation behavior of :itanium carbonitride based materials 显示文摘Frederic Monteverde Alida Bellosi 2002Corrosion Sci- ence2002,44,8:1
10The addition of SiC particles into a MoSi 2 -doped ZrB 2 matrix: Effects on densification, microstructure and thermo-physical properties显示文摘Frederic Monteverde 2008Materials Chemistry and Physics2008,,2:1
11Dynamic oxidation of ultra-high temperature ZrB 2 –SiC under high enthalpy supersonic flows显示文摘Frederic Monteverde Raffaele Savino Mario De Stefano Fumo 2010Corrosion Science2010,,3:1
12Oxidation behavior of titanium carbonitride based materials显示文摘Frederic Monteverde Alida Bellosi 2002Corrosion Science2002,44,:1
13Will high-entropy carbides and borides be enabling materials for extreme environments?显示文摘The concept of multi-principal component has created promising opportunities for the development of novel high-entropy ceramics for extreme environments encountered in advanced turbine engines, nuclear reactors, and hypersonic vehicles, as it expands the compositional space of ceramic materials with tailored properties within a single-phase solid solution. The unique physical properties of some high-entropy carbides and borides, such as higher hardness, high-temperature strength, lower thermal conductivity, and improved irradiation resistance than the constitute ceramics, have been observed. These promising properties may be attributed to the compositional complexity, atomic-level disorder, lattice distortion, and other fundamental processes related to defect formation and phonon scattering.This manuscript serves as a critical review of the recent progress in high-entropy carbides and borides, focusing on synthesis and evaluations of their performance in extreme high-temperature, irradiation, and gaseous environments.Fei Wang Frederic Monteverde Bai Cui 2023International Journal of Extreme Manufacturing2023,5,2:0
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