posted on 2022-10-14, 13:02authored byNoel O'Sullivan, Joseph Phelim Mooney, David TannerDavid Tanner
In this study, a method known as pre-wetting is applied between the multilayer ceramic investment casting shells to enhance porosity and permeability while sustaining flexural strength. Pre-wetting consists predominately of an aqueous silica binder that improves inter-coat bonding in complex areas. Porosity is developed where the pre-wetting is applied due to the evaporation of the aqueous phase. Results indicate that as porosity increases, both green and fired flexural strength reduce on average by 8.7 15.6 % and 18.7 28.5 %, respectively, whereas hot strength is increased by 20 25 %. Permeability increased by a factor of two when pre-wetting was applied between intermediate coatings and displayed a stepwise increase in intrusion volume in the high-pressure regime through mercury intrusion porosimetry. X-ray microtomography coupled with pore network modelling provided a validation of the increase in the permeability constant. Gas adsorption methods revealed the presence of micropores through the alpha-s method when bilayers of pre-wetting solution were applied.
History
Publication
Journal of the European Ceramic Society;41 (6), pp. 411-422
Publisher
Elsevier
Note
peer-reviewed
The full text of this article will not be available in ULIR until the embargo expires on the 10/09/2023
Other Funding information
EI, SFI, ERDF, European Union (EU)
Rights
This is the author’s version of a work that was accepted for publication in Journal of the European Ceramic Society . Changes resulting from the publishing process, such as peer review, editing, corrections, structural formatting, and other quality control mechanisms may not be reflected in this document. Changes may have been made to this work since it was submitted for publication. A definitive version was subsequently published in Journal of the European Ceramic Society , 41 (6),pp. 411-422,https://doi.org/10.1016/j.jeurceramsoc.2021.09.022