Ceramic/metal brazing can be carried out either directly using active metal filler alloys or indirectly. In this case, the ceramic surface is metallized by an active metal prior to joining using active-metal free alloys. Although direct brazing is a quite versatile technique, active filler alloys, usually containing Ti, are rather costly materials. With the recent development of new and simple metallizing techniques, reliable joints have been made at reduced costs, thus widening the range of potential applications for ceramic/metal components. In particular, the mechanical metallization with Ti tools has been successfully applied at lab scale to both oxide and non-oxide ceramics. In particular, alumina/metal joints have been thoroughly stud...
AbstractBrazing of ceramic and metal components is an emerging manufacturing technology in which a f...
The joining of alumina (Al2O3) to γ-TiAl and Ti6Al4V alloys, using Ag-Cu sputter-coated Ti brazing f...
Joining γ-TiAl alloy to Ni-based superalloy Hastelloy using Ag-Cu sputtered coated Ti foil as ...
NASCIMENTO,R.M. et al.Interface microstructure of alumina mechanically metallized with Ti brazed to ...
NASCIMENTO,R.M. et al.Interface microstructure of alumina mechanically metallized with Ti brazed to ...
Shapal!-M machinable AlN-based ceramic and AISI 304 stainless steel were joined by active metal braz...
Brazing has been increasingly used to join metals to advanced ceramics. Brazing covalent materials r...
Advanced ceramic is usually joined to metal by the well-known direct brazing process, where costly a...
Macor ® machinable glass-ceramic and commercially pure (cp.) titanium were joined by active metal br...
A metal ceramic bonding process was developed to produce vacuum tight alumina Inconel 600 joints usi...
The fundamental chemical processes leading to the formation of braze joints between alumina of ≥95 w...
Sintered alumina was brazed with 97(Ag40Cu)3Ti active filler alloy at 1073, 1173, 1273, 1373 and 147...
Vacuum brazing of γ-TiAl alloy (Ti-47Al-2Cr-2Nb, at.%) to Inconel 718 (53Ni-19Fe-19Cr-5Nb-3Mo-1Ti wt...
Vacuum brazing of γ-TiAl alloy (Ti-47Al-2Cr-2Nb, at.%) to Inconel 718 (53Ni-19Fe-19Cr-5Nb-3Mo-1Ti wt...
Alumina ceramics with different levels of purity have been joined to themselves using an active braz...
AbstractBrazing of ceramic and metal components is an emerging manufacturing technology in which a f...
The joining of alumina (Al2O3) to γ-TiAl and Ti6Al4V alloys, using Ag-Cu sputter-coated Ti brazing f...
Joining γ-TiAl alloy to Ni-based superalloy Hastelloy using Ag-Cu sputtered coated Ti foil as ...
NASCIMENTO,R.M. et al.Interface microstructure of alumina mechanically metallized with Ti brazed to ...
NASCIMENTO,R.M. et al.Interface microstructure of alumina mechanically metallized with Ti brazed to ...
Shapal!-M machinable AlN-based ceramic and AISI 304 stainless steel were joined by active metal braz...
Brazing has been increasingly used to join metals to advanced ceramics. Brazing covalent materials r...
Advanced ceramic is usually joined to metal by the well-known direct brazing process, where costly a...
Macor ® machinable glass-ceramic and commercially pure (cp.) titanium were joined by active metal br...
A metal ceramic bonding process was developed to produce vacuum tight alumina Inconel 600 joints usi...
The fundamental chemical processes leading to the formation of braze joints between alumina of ≥95 w...
Sintered alumina was brazed with 97(Ag40Cu)3Ti active filler alloy at 1073, 1173, 1273, 1373 and 147...
Vacuum brazing of γ-TiAl alloy (Ti-47Al-2Cr-2Nb, at.%) to Inconel 718 (53Ni-19Fe-19Cr-5Nb-3Mo-1Ti wt...
Vacuum brazing of γ-TiAl alloy (Ti-47Al-2Cr-2Nb, at.%) to Inconel 718 (53Ni-19Fe-19Cr-5Nb-3Mo-1Ti wt...
Alumina ceramics with different levels of purity have been joined to themselves using an active braz...
AbstractBrazing of ceramic and metal components is an emerging manufacturing technology in which a f...
The joining of alumina (Al2O3) to γ-TiAl and Ti6Al4V alloys, using Ag-Cu sputter-coated Ti brazing f...
Joining γ-TiAl alloy to Ni-based superalloy Hastelloy using Ag-Cu sputtered coated Ti foil as ...