Plasma-sprayable powders of calcia, magnesia and yttria-stabilized zirconia have been prepared by using polyvinyl alcohol binders. The powders have been characterized for sprayability by spray coating on steel plates previously coated with an NiAl bond coat. The suitability of these coatings for thermal barrier applications have been examined. Thermal barrier and related properties, along with phase stability and mechanical properties, have been found to be good. Failure of the thermal barrier coating has been observed to occur at the interface between the bond coat and the substrate, due to the formation of a pile-up layer consisting of Fe-Zr-Al-O compound
This paper presents a study carried out on yttria stabilized zirconia powders with a view to produce...
This paper presents a study carried out on yttria stabilized zirconia powders with a view to produce...
This paper presents a study carried out on yttria stabilized zirconia powders with a view to produce...
Plasma-sprayable powders of calcia, magnesia and yttria-stabilized zirconia have been prepared by us...
Plasma-sprayable powders of calcia, magnesia and yttria-stabilized zirconia have been prepared by us...
In the present work, plasma sprayable 8 wt% YSZ powder has been prepared by the co-precipitation met...
In the present work, plasma sprayable 8 wt% YSZ powder has been prepared by the co-precipitation met...
Naturally occurring zircon sand was plasma spray coated on steel substrates previously coated with N...
Naturally occurring zircon sand was plasma spray coated on steel substrates previously coated with N...
Plasma sprayable powders were prepared from ZrO2-CaO-CeO2 system using an organic binder and coated ...
Naturally occurring zircon sand was plasma spray coated on steel substrates previously coated with N...
Plasma sprayable powders were prepared from ZrO2-CaO-CeO2 system using an organic binder and coated ...
Yttria-stabilized zirconia (YSZ) coatings have been frequently used as a thermal protective layer on...
Thermal barrier coatings were produced using both Ar and N\u2082 as the primary plasma gas. Various ...
In application as a thermal barrier coating (TBC), partially stabilized zirconia (Zr) approaches som...
This paper presents a study carried out on yttria stabilized zirconia powders with a view to produce...
This paper presents a study carried out on yttria stabilized zirconia powders with a view to produce...
This paper presents a study carried out on yttria stabilized zirconia powders with a view to produce...
Plasma-sprayable powders of calcia, magnesia and yttria-stabilized zirconia have been prepared by us...
Plasma-sprayable powders of calcia, magnesia and yttria-stabilized zirconia have been prepared by us...
In the present work, plasma sprayable 8 wt% YSZ powder has been prepared by the co-precipitation met...
In the present work, plasma sprayable 8 wt% YSZ powder has been prepared by the co-precipitation met...
Naturally occurring zircon sand was plasma spray coated on steel substrates previously coated with N...
Naturally occurring zircon sand was plasma spray coated on steel substrates previously coated with N...
Plasma sprayable powders were prepared from ZrO2-CaO-CeO2 system using an organic binder and coated ...
Naturally occurring zircon sand was plasma spray coated on steel substrates previously coated with N...
Plasma sprayable powders were prepared from ZrO2-CaO-CeO2 system using an organic binder and coated ...
Yttria-stabilized zirconia (YSZ) coatings have been frequently used as a thermal protective layer on...
Thermal barrier coatings were produced using both Ar and N\u2082 as the primary plasma gas. Various ...
In application as a thermal barrier coating (TBC), partially stabilized zirconia (Zr) approaches som...
This paper presents a study carried out on yttria stabilized zirconia powders with a view to produce...
This paper presents a study carried out on yttria stabilized zirconia powders with a view to produce...
This paper presents a study carried out on yttria stabilized zirconia powders with a view to produce...