Ultrahigh temperature ceramics (UHTCs) have melting points above 3000°C and outstanding strength at high temperatures, thus making them apposite structural materials for high-temperature applications. Di-borides, nitride, and carbide compounds - processed via various techniques - have been extensively studied and used in the manufacture of UHTCs. Current analytical models, based on our current but incomplete understanding of the theory, are unable to produce a priori predictions of mechanical properties of UHTCs based on their mixture designs and processing parameters. As a result, researchers have to rely on experiments - which are often costly and time-consuming - to understand composition-structure-performance links in UHTCs. This study ...
Breaking down the entire structure of a material implies severing all the bonds between its atoms ei...
Refractory materials are heterogeneous materials having complex microstructures with different const...
This presentation will focus on the mechanical properties of zirconium diboride ceramics. Diboride ...
Ceramics is one of material which apply in many area. Thus, study of its properties is very importa...
Machine-learning accelerates design of high-mechanical-performance ceramics. Low dimensional descrip...
A model for predicting mechanical properties of ultra-high temperature ceramics (UHTC) and composite...
Ultrahard materials are an essential component in a wide range of industrial applications. In this w...
Abstract We identify compositionally complex alloys (CCAs) that offer exceptional mechanical propert...
Ultra-high-temperature ceramics (UHTCs) are a class of refractory materials that have melting temper...
Prediction of mechanical properties is an essential part of material design. State-of-the-art simula...
The particulate-reinforced ultra-high temperature ceramics (pUHTCs) have been particularly developed...
Ultrahigh-temperature ceramics (UHTCs) are materials of choice for future hypersonic vehicles as nos...
This paper presents the results obtained using Machine Learning (ML) algorithms to predict the mecha...
Low permittivity microwave dielectric ceramics (MWDCs) are attracting great interest because of thei...
Abstract Topologically interlocked architectures can transform brittle ceramics into tougher materia...
Breaking down the entire structure of a material implies severing all the bonds between its atoms ei...
Refractory materials are heterogeneous materials having complex microstructures with different const...
This presentation will focus on the mechanical properties of zirconium diboride ceramics. Diboride ...
Ceramics is one of material which apply in many area. Thus, study of its properties is very importa...
Machine-learning accelerates design of high-mechanical-performance ceramics. Low dimensional descrip...
A model for predicting mechanical properties of ultra-high temperature ceramics (UHTC) and composite...
Ultrahard materials are an essential component in a wide range of industrial applications. In this w...
Abstract We identify compositionally complex alloys (CCAs) that offer exceptional mechanical propert...
Ultra-high-temperature ceramics (UHTCs) are a class of refractory materials that have melting temper...
Prediction of mechanical properties is an essential part of material design. State-of-the-art simula...
The particulate-reinforced ultra-high temperature ceramics (pUHTCs) have been particularly developed...
Ultrahigh-temperature ceramics (UHTCs) are materials of choice for future hypersonic vehicles as nos...
This paper presents the results obtained using Machine Learning (ML) algorithms to predict the mecha...
Low permittivity microwave dielectric ceramics (MWDCs) are attracting great interest because of thei...
Abstract Topologically interlocked architectures can transform brittle ceramics into tougher materia...
Breaking down the entire structure of a material implies severing all the bonds between its atoms ei...
Refractory materials are heterogeneous materials having complex microstructures with different const...
This presentation will focus on the mechanical properties of zirconium diboride ceramics. Diboride ...