Sacrificial Paste for Fabrication of Ceramic Materials by Layer-By-Layer Method
The aim of the work was to develop a sacrificial paste suitable for securing channels during shaping of ceramic materials with internal structures via combination of tape casting and soft lithography. Poly(ethylene glycol) methyl ether and polyethylene glycols with different molecular weight were se...
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Polish Academy of Sciences
2016-09-01
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doaj-c217d041a89d444cbf0efa2eb63e21252020-11-25T03:56:30ZengPolish Academy of SciencesArchives of Metallurgy and Materials2300-19092016-09-016131459146410.1515/amm-2016-0239amm-2016-0239Sacrificial Paste for Fabrication of Ceramic Materials by Layer-By-Layer MethodFalkowski P.0Scisel K.1 Warsaw University of Technology, Faculty of Chemistry, 3 Noakowskiego Str., 00-664 Warsaw, Poland Warsaw University of Technology, Faculty of Chemistry, 3 Noakowskiego Str., 00-664 Warsaw, PolandThe aim of the work was to develop a sacrificial paste suitable for securing channels during shaping of ceramic materials with internal structures via combination of tape casting and soft lithography. Poly(ethylene glycol) methyl ether and polyethylene glycols with different molecular weight were selected as a main components of a sacrificial paste due to their compatibility to UV curable dispersion. The research shows that sacrificial paste should be characterized by proper melting point. This goal was achieved by using a composition of PEG600 with 15wt.%PEG20000 and 10wt.% carbon. The invented sacrificial paste solidify beyond 27°C (melting point). After heating up to 80°C the viscosity of paste is low enough and easily fills the channels with diameter of 150-300μm. What is more, the operational time during free cooling from 80°C to solidification is around 8 minutes what gives enough time for application. Carbon was added as a modifier of rheological properties and as a black dye that helps in visual evaluation of a degree of filling channel. The first test proved that proposed method of preparation of ceramic samples with application of invented sacrificial paste is reliable and can be practically applied.http://www.degruyter.com/view/j/amm.2016.61.issue-3/amm-2016-0239/amm-2016-0239.xml?format=INTsacrificial pasteUV curingsoft lithographytape castingalumina |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Falkowski P. Scisel K. |
spellingShingle |
Falkowski P. Scisel K. Sacrificial Paste for Fabrication of Ceramic Materials by Layer-By-Layer Method Archives of Metallurgy and Materials sacrificial paste UV curing soft lithography tape casting alumina |
author_facet |
Falkowski P. Scisel K. |
author_sort |
Falkowski P. |
title |
Sacrificial Paste for Fabrication of Ceramic Materials by Layer-By-Layer Method |
title_short |
Sacrificial Paste for Fabrication of Ceramic Materials by Layer-By-Layer Method |
title_full |
Sacrificial Paste for Fabrication of Ceramic Materials by Layer-By-Layer Method |
title_fullStr |
Sacrificial Paste for Fabrication of Ceramic Materials by Layer-By-Layer Method |
title_full_unstemmed |
Sacrificial Paste for Fabrication of Ceramic Materials by Layer-By-Layer Method |
title_sort |
sacrificial paste for fabrication of ceramic materials by layer-by-layer method |
publisher |
Polish Academy of Sciences |
series |
Archives of Metallurgy and Materials |
issn |
2300-1909 |
publishDate |
2016-09-01 |
description |
The aim of the work was to develop a sacrificial paste suitable for securing channels during shaping of ceramic materials with internal structures via combination of tape casting and soft lithography. Poly(ethylene glycol) methyl ether and polyethylene glycols with different molecular weight were selected as a main components of a sacrificial paste due to their compatibility to UV curable dispersion. The research shows that sacrificial paste should be characterized by proper melting point. This goal was achieved by using a composition of PEG600 with 15wt.%PEG20000 and 10wt.% carbon. The invented sacrificial paste solidify beyond 27°C (melting point). After heating up to 80°C the viscosity of paste is low enough and easily fills the channels with diameter of 150-300μm. What is more, the operational time during free cooling from 80°C to solidification is around 8 minutes what gives enough time for application. Carbon was added as a modifier of rheological properties and as a black dye that helps in visual evaluation of a degree of filling channel. The first test proved that proposed method of preparation of ceramic samples with application of invented sacrificial paste is reliable and can be practically applied. |
topic |
sacrificial paste UV curing soft lithography tape casting alumina |
url |
http://www.degruyter.com/view/j/amm.2016.61.issue-3/amm-2016-0239/amm-2016-0239.xml?format=INT |
work_keys_str_mv |
AT falkowskip sacrificialpasteforfabricationofceramicmaterialsbylayerbylayermethod AT sciselk sacrificialpasteforfabricationofceramicmaterialsbylayerbylayermethod |
_version_ |
1724464780998082560 |