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ŠOUKAL, F. PTÁČEK, P. MÁSILKO, J. HAVLICA, J. OPRAVIL, T. DRDLOVÁ, M.
Original Title
High temperature properties of MDF composite based on calcium aluminate cement and polyvinyl alcohol
Type
journal article in Web of Science
Language
English
Original Abstract
The macro-defect-free composites belong to the well-known group of promising materials consisting of inorganic binder and organic polymer. MDF composites exhibit unusual mechanical properties, especially the flexural strength that can reach over 200 MPa. Moreover, the MDF composites based on calcium aluminate cement have a good temperature resistance because of the Al2O3 content in the cement. This paper deals with the preparation and high temperature characterization of MDF composite based on calcium aluminate cement combined with polyvinyl alcohol that could enable its utilization as a refractory material in industrial kilns. The composition of the MDF mixture has been optimized for an easy high-shear processing and flexural strength of the resulting 7-days cured material has been studied under laboratory condition and after heating at 240, 300, 600, 1,000, and 1,500 A degrees C. The structure changes during the heating have been observed by SEM and the course of processes during the heating has been investigated by TG-DTA-EGA, TMA and heating microscopy.
Keywords
Macro-defect-free; Composite; High temperature; Properties; Thermal analysis
Authors
ŠOUKAL, F.; PTÁČEK, P.; MÁSILKO, J.; HAVLICA, J.; OPRAVIL, T.; DRDLOVÁ, M.
Released
6. 1. 2014
Publisher
SPRINGER
Location
DORDRECHT
ISBN
1388-6150
Periodical
Journal of Thermal Analysis and Calorimetry
Year of study
115
Number
2
State
Hungary
Pages from
1245
Pages to
1252
Pages count
8
URL
https://link.springer.com/content/pdf/10.1007%2Fs10973-013-3481-9.pdf
BibTex
@article{BUT170298, author="František {Šoukal} and Petr {Ptáček} and Jiří {Másilko} and Jaromír {Havlica} and Tomáš {Opravil} and Martina {Drdlová}", title="High temperature properties of MDF composite based on calcium aluminate cement and polyvinyl alcohol", journal="Journal of Thermal Analysis and Calorimetry", year="2014", volume="115", number="2", pages="1245--1252", doi="10.1007/s10973-013-3481-9", issn="1388-6150", url="https://link.springer.com/content/pdf/10.1007%2Fs10973-013-3481-9.pdf" }