In this work, a silica-based glass–ceramic coating has been deposited on higher manganese silicide (HMS) thermoelectrics in order to provide oxidation protection at high temperature (up to 600 C). The coating showed good densification behaviour and an excellent thermomechanical and chemical compatibility with the HMS substrate, suppressing the silica scale formation on the HMS at high temperatures. The thermoelectric properties of the glass–ceramic-coated HMS showed excellent stability after oxidation at 600 C in air for 500 h
gamma-TiAl intermetallic alloys are presently considered an efficient structural material for advanc...
In this paper, a glass protective coating containing chromium oxide deposited on a high-quality 20Mn...
Silicon-germanium alloys are used as thermoelectric materials for radioisotope thermoelectric genera...
In this work, a silica-based glass-ceramic coating has been deposited on higher manganese silicide (...
A higher manganese silicide (HMS) thermoelectric, with composition MnSi1.74, densified by spark plas...
A Mg2Si-Mg2Sn based thermoelectric material (TE), with composition of Mg2Si0.487Sn0.5Sb0.013, produc...
Two commercial hybrid coatings, cured at temperatures lower than 300 °C, were successfully used...
A new powder processing approach to produce oxidation resistant molybdenum alloys for high temperatu...
Two commercial hybrid coatings, cured at temperatures lower than 300 °C, were successfully used to p...
An MoSi2–borosilicate glass coating with high emissivity and oxidation resistance was prepared on th...
The work is concerned with the glass formation in the multicomponent system of sodium oxide - potass...
In this paper, a MgO-SiO2-Al2O3-ZnO ceramic-glass coating sprayed on carbon steel was studied at hig...
© 2021 Elsevier Ltd and Techna Group S.r.l. All rights reserved. This is the accepted manuscript ver...
Large scale deployment of thermoelectric devices requires that the thermoelectric materials have sta...
This work focuses on the less known amorphous coatings based on enamels, formed at 1050-11500C for (...
gamma-TiAl intermetallic alloys are presently considered an efficient structural material for advanc...
In this paper, a glass protective coating containing chromium oxide deposited on a high-quality 20Mn...
Silicon-germanium alloys are used as thermoelectric materials for radioisotope thermoelectric genera...
In this work, a silica-based glass-ceramic coating has been deposited on higher manganese silicide (...
A higher manganese silicide (HMS) thermoelectric, with composition MnSi1.74, densified by spark plas...
A Mg2Si-Mg2Sn based thermoelectric material (TE), with composition of Mg2Si0.487Sn0.5Sb0.013, produc...
Two commercial hybrid coatings, cured at temperatures lower than 300 °C, were successfully used...
A new powder processing approach to produce oxidation resistant molybdenum alloys for high temperatu...
Two commercial hybrid coatings, cured at temperatures lower than 300 °C, were successfully used to p...
An MoSi2–borosilicate glass coating with high emissivity and oxidation resistance was prepared on th...
The work is concerned with the glass formation in the multicomponent system of sodium oxide - potass...
In this paper, a MgO-SiO2-Al2O3-ZnO ceramic-glass coating sprayed on carbon steel was studied at hig...
© 2021 Elsevier Ltd and Techna Group S.r.l. All rights reserved. This is the accepted manuscript ver...
Large scale deployment of thermoelectric devices requires that the thermoelectric materials have sta...
This work focuses on the less known amorphous coatings based on enamels, formed at 1050-11500C for (...
gamma-TiAl intermetallic alloys are presently considered an efficient structural material for advanc...
In this paper, a glass protective coating containing chromium oxide deposited on a high-quality 20Mn...
Silicon-germanium alloys are used as thermoelectric materials for radioisotope thermoelectric genera...