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Green mechanical evaluation of mullite porous compacts prepared by pre-gelling starch consolidation
(Elsevier Science Sa, 2012-07)
The mechanical behavior of green porous mullite disks (volume porosity > 55%) prepared by the thermogelation of mullite aqueous suspensions with different native starches (i.e. potato, cassava and corn starches) was studied. ...
Sintering of tin oxide processed by slip casting
(2000-12-01)
Sintering of SnO 2 compacts, obtained through slip casting, was studied by means of dilatometry, Hg porosimetry, scanning electron microscopy, and density measurement (Archimedes method). Sintering is strongly influenced ...
Sintering of tin oxide processed by slip casting
(2000-12-01)
Sintering of SnO 2 compacts, obtained through slip casting, was studied by means of dilatometry, Hg porosimetry, scanning electron microscopy, and density measurement (Archimedes method). Sintering is strongly influenced ...
Shaping of porous mullite green bodies by foaming and thermal gelation of bovine serum albumin
(Elsevier, 2015-01-24)
The shaping of cellular microstructures of mullite bodies prepared by thermo-gelation of foamed mullite-bovine serum albumin (BSA) suspensions using both a novel forming route and the conventionally reported route were ...
The influence of area/volume ratio on microstructure and non-Ohmic properties of SnO2-based varistor ceramic blocks
(Springer, 2009-01-01)
This work deals with the electrical properties of SnO2-based varistor systems with different area-volume (A/V) ratio of the green compact. The influence of A/V ratio specially on microstructural homogeneity and different ...
The influence of area/volume ratio on microstructure and non-Ohmic properties of SnO2-based varistor ceramic blocks
(Springer, 2009-01-01)
This work deals with the electrical properties of SnO2-based varistor systems with different area-volume (A/V) ratio of the green compact. The influence of A/V ratio specially on microstructural homogeneity and different ...
An investigation on DC casting of a wrought aluminium alloy at below liquidus temperature by using melt conditioner
(Elsevier Science SaLausanneSuíça, 2010)