Ultra-high temperature ceramics (UHTCs) are interesting materials for a large variety of applications under extreme conditions. This paper reports on the production and extensive characterization of highly dense, pure zirconium and tantalum diborides, with particular interest to their potential utilization in the thermal solar energy field. Monolithic bulk samples are produced by Spark Plasma Sintering starting from elemental reactants or using metal diboride powders previously synthesized by Self-propagating High-temperature Synthesis (SHS). Microstructural and optical properties of products obtained by the two processing methods have been comparatively evaluated. We found that pure diborides show a good spectral selectivity, which ...
So far, the studies regarding the innovative High-Entropy Borides (HEBs), which belong to the more g...
So far, the studies regarding the innovative High-Entropy Borides (HEBs), which belong to the more g...
Besides ultra-refractoriness and favorable mechanical and chemical characteristics, carbides of earl...
Ultra-high temperature ceramics (UHTCs) are interesting materials for a large variety of application...
Ultra-high temperature ceramics (UHTCs) are interesting materials for a large variety of application...
Titanium diboride (TiB2) is a low-density refractory material belonging to the family of ultra-high ...
Titanium diboride (TiB2) is a low-density refractory material belonging to the family of ultra-high ...
Titanium diboride (TiB2) is a low-density refractory material belonging to the family of ultra-high ...
Titanium diboride (TiB2) is a low-density refractory material belonging to the family of ultra-high ...
AbstractConcentrating Solar Power (CSP) is considered to be one of the most promising and sustainabl...
An efficiency improvement of concentrating solar power systems relies on a significant increase of t...
Ultra-high temperatureborideceramicshaveprovedtoshowpromisingpropertiesfornovelsolarre- ceivers.The...
Monolithic ZrB2 and TaB2 were produced starting from the precursors through Self-propagating High te...
Ultra-high temperature ceramic matrix composites, UHTCMCs, are a new class of composites which combi...
Monolithic ZrB2 and TaB2 were produced starting from the precursors through Self-propagating High te...
So far, the studies regarding the innovative High-Entropy Borides (HEBs), which belong to the more g...
So far, the studies regarding the innovative High-Entropy Borides (HEBs), which belong to the more g...
Besides ultra-refractoriness and favorable mechanical and chemical characteristics, carbides of earl...
Ultra-high temperature ceramics (UHTCs) are interesting materials for a large variety of application...
Ultra-high temperature ceramics (UHTCs) are interesting materials for a large variety of application...
Titanium diboride (TiB2) is a low-density refractory material belonging to the family of ultra-high ...
Titanium diboride (TiB2) is a low-density refractory material belonging to the family of ultra-high ...
Titanium diboride (TiB2) is a low-density refractory material belonging to the family of ultra-high ...
Titanium diboride (TiB2) is a low-density refractory material belonging to the family of ultra-high ...
AbstractConcentrating Solar Power (CSP) is considered to be one of the most promising and sustainabl...
An efficiency improvement of concentrating solar power systems relies on a significant increase of t...
Ultra-high temperatureborideceramicshaveprovedtoshowpromisingpropertiesfornovelsolarre- ceivers.The...
Monolithic ZrB2 and TaB2 were produced starting from the precursors through Self-propagating High te...
Ultra-high temperature ceramic matrix composites, UHTCMCs, are a new class of composites which combi...
Monolithic ZrB2 and TaB2 were produced starting from the precursors through Self-propagating High te...
So far, the studies regarding the innovative High-Entropy Borides (HEBs), which belong to the more g...
So far, the studies regarding the innovative High-Entropy Borides (HEBs), which belong to the more g...
Besides ultra-refractoriness and favorable mechanical and chemical characteristics, carbides of earl...