This article presents an innovative additive manufacturing approach for fully optimized ceramic and hybrid (ceramic/polymer) hierarchical micro-architected materials for extreme environments. The developed materials combine high-temperature capabilities, extremely low thermal conductivity, high stiffness and strength per unit weight, sufficient toughness and great resistance to oxidation. Processing involves 3D printing of a ceramic architecture, followed by bisque firing and sintering. When sufficient porosity remains after sintering (~50%), infiltration by a polymeric matrix is possible, resulting in a cellular architecture where the constituent material is a fully dense ceramic/polymer hybrid with exceptional ductility. After characteriz...
Material hybrids allow for property combinations like electrically conductive/electrically insulatin...
The following research work performed embodies three unique studies of polymer structures and their ...
This research is divided into two main topics: vitrimer polymers and alumina ceramics. Additive manu...
The development of high-strength, low-density ceramic components is a critical area of research in t...
Naturally occurring architectured structures utilize brick-and-mortar organization to achieve a hard...
Owing to freedom of design, simplicity, and ability to handle complex structures, additive manufactu...
The development of ceramic composites with optimized fiber architectures for application in hyperson...
Mechanical properties of 3D printed ceramics with structural advantage were investigated. Three str...
Ceramic materials are a versatile class of materials with numerous applications across a range of in...
The parallel development and optimization of industrial manufacturing techniques have set new standa...
Ceramic materials are excellent candidates for harsh environment applications (e.g., high temperatur...
Additive manufacturing is seen by many as the holy grail of manufacturing, the ability to produce pa...
Additive manufacturing enables the exploration of process-structure-property relationships in cerami...
The Additive Manufacturing industry, in the last years [1] has shown a great push with the developme...
The Additive Manufacturing industry, in the last years [1] has shown a great push with the developme...
Material hybrids allow for property combinations like electrically conductive/electrically insulatin...
The following research work performed embodies three unique studies of polymer structures and their ...
This research is divided into two main topics: vitrimer polymers and alumina ceramics. Additive manu...
The development of high-strength, low-density ceramic components is a critical area of research in t...
Naturally occurring architectured structures utilize brick-and-mortar organization to achieve a hard...
Owing to freedom of design, simplicity, and ability to handle complex structures, additive manufactu...
The development of ceramic composites with optimized fiber architectures for application in hyperson...
Mechanical properties of 3D printed ceramics with structural advantage were investigated. Three str...
Ceramic materials are a versatile class of materials with numerous applications across a range of in...
The parallel development and optimization of industrial manufacturing techniques have set new standa...
Ceramic materials are excellent candidates for harsh environment applications (e.g., high temperatur...
Additive manufacturing is seen by many as the holy grail of manufacturing, the ability to produce pa...
Additive manufacturing enables the exploration of process-structure-property relationships in cerami...
The Additive Manufacturing industry, in the last years [1] has shown a great push with the developme...
The Additive Manufacturing industry, in the last years [1] has shown a great push with the developme...
Material hybrids allow for property combinations like electrically conductive/electrically insulatin...
The following research work performed embodies three unique studies of polymer structures and their ...
This research is divided into two main topics: vitrimer polymers and alumina ceramics. Additive manu...