Indirect fused·· deposition process is utilized.·.. to ·fabricate controlled porosity ceramic structures using alumina, mullite, zirconia, LSCF-perovskite, tricalcium phosphate and hydroxyapatite, where pore size, pore shape and pore connectivity are varied from one end to the other end of the parts. Some of these porous ceramics are then infiltrated with metals via pressureless reactive metal infiltration to form novel metal-ceramic composites. Thispaper will describe processing, structures of various porous and metal-infiltrated composites and their physical and mechanical properties.Mechanical Engineerin
A pressure-vacuum infi ltration (T = 720 ºC, p = 15 MPa, t = 15 min) and gas-pressure infi ltration ...
Ceramics have great properties, such as low density, high creep resistance, and high corrosion resis...
Ceramic-metal composites can be made by reactive penetration of molten metals into dense ceramic per...
Indirect fused·· deposition process is utilized.·.. to ·fabricate controlled porosity ceramic struc...
Fabrication of functional ceramics and composites has been attempted using fused deposition of cera...
Porous ceramic structures have long been a subject of investigation as bone sl..bstitute. Most of t...
A pressure-vacuum infiltration (T = 720 ºC, p = 15 MPa, t = 15 min) and gas-pressure infiltration (G...
A new process was developed to fabricate particulate metal matrix composites (MMCs). The process inv...
Ceramic-metal composites can be made to near-net-shape by reactive penetration of dense ceramic pref...
Interconnected phase alumina-Al composites were fabricated by pressureless reactive metal infiltrat...
Porous alumina stands as a good candidate for synthetic bone tissue scaffold material or porous cer...
In industry, the need to maximize energy efficiency depends on the availability of suitable advanced...
Porous ceramic components with decently controlled porosity offers remarkable advantages in industri...
Ceramic-metal composites can be made to near-net-shape by reactive penetration of dense ceramic pref...
The paper presents a uniquely designed device that enables controlled manufacturing of semi-fabricat...
A pressure-vacuum infi ltration (T = 720 ºC, p = 15 MPa, t = 15 min) and gas-pressure infi ltration ...
Ceramics have great properties, such as low density, high creep resistance, and high corrosion resis...
Ceramic-metal composites can be made by reactive penetration of molten metals into dense ceramic per...
Indirect fused·· deposition process is utilized.·.. to ·fabricate controlled porosity ceramic struc...
Fabrication of functional ceramics and composites has been attempted using fused deposition of cera...
Porous ceramic structures have long been a subject of investigation as bone sl..bstitute. Most of t...
A pressure-vacuum infiltration (T = 720 ºC, p = 15 MPa, t = 15 min) and gas-pressure infiltration (G...
A new process was developed to fabricate particulate metal matrix composites (MMCs). The process inv...
Ceramic-metal composites can be made to near-net-shape by reactive penetration of dense ceramic pref...
Interconnected phase alumina-Al composites were fabricated by pressureless reactive metal infiltrat...
Porous alumina stands as a good candidate for synthetic bone tissue scaffold material or porous cer...
In industry, the need to maximize energy efficiency depends on the availability of suitable advanced...
Porous ceramic components with decently controlled porosity offers remarkable advantages in industri...
Ceramic-metal composites can be made to near-net-shape by reactive penetration of dense ceramic pref...
The paper presents a uniquely designed device that enables controlled manufacturing of semi-fabricat...
A pressure-vacuum infi ltration (T = 720 ºC, p = 15 MPa, t = 15 min) and gas-pressure infi ltration ...
Ceramics have great properties, such as low density, high creep resistance, and high corrosion resis...
Ceramic-metal composites can be made by reactive penetration of molten metals into dense ceramic per...