Publication detail
Mechanical properties of partially pyrolysed composites with plain weave basalt fibre reinforcement
CERNÝ, M. HALASOVÁ, M. SCHWEIGSTILLOVÁ, J. CHLUP, Z. SUCHARDA, Z. GLOGAR, P. SVÍTILOVÁ, J. STRACHOTA, A. RÝGLOVÁ, Š.
Czech title
Mechanické vlastnosti částečně pyrolyzovaných kompozitů s čedičovovou vláknovou výztuží v plátnové vazbě
English title
Mechanical properties of partially pyrolysed composites with plain weave basalt fibre reinforcement
Type
journal article in Web of Science
Language
en
Original abstract
The process of partial pyrolysis was used in the manufacture of composite materials with improved thermal resistance. As reinforcement, basalt plain weave fabric was employed. For the production of the investigated composites, two variants of the matrix precursor polymethylsiloxane or polymethylphenylsiloxane resins were used. In order to find favourable mechanical properties of the developed materials, several pyrolysis processes differing in the achieved maximum temperature were tested. Flexural strength, Youngs modulus, shear modulus, fracture toughness, the temperature dependence of Youngs modulus and of creep were measured. The microstructure of the composites was studied by light microscopy and by SEM. The composite with methyphenylsiloxane precursor exhibits favourable mechanical properties after final pyrolysis temperatures in the range of 650–750 C. In the case of the composite with polymethylsiloxane matrix precursor, the best mechanical properties were achieved by pyrolysis terminated at 650 C.
Czech abstract
Při výrobě se zvýšenou tepelnou odolností byl použit proces částečné pyrolýzy. Jako výztuž byla použita čedičová tkanina. K výrobě byly použity dvě varianty matricového prekurzoru, polymethylsiloxanová a polymethylfenylsiloxanová pryskyřice. K nalezení nejuspokojivějších mechanických vlastností byla použita série pyrolýzních teplot. Byly měřeny veličiny: ohybová pevnost, modul pružnosti, smykový modul, lomová houževnatost, teplotní závislost modulu pružnosti a creepu. Mikrostruktura bylo studována pomocí světelné mikroskopie a SEM. Jako vhodný se jeví kompozit s methylpenylsiloxanovým prekurzorem po pyrolýze při 650 – 750 C. V případě kompozitu s methylsiloxanovým prekurzorem bylly nejlepší vlastnosti dosaženy při pyrolýze ukončené při 650 C.
English abstract
The process of partial pyrolysis was used in the manufacture of composite materials with improved thermal resistance. As reinforcement, basalt plain weave fabric was employed. For the production of the investigated composites, two variants of the matrix precursor polymethylsiloxane or polymethylphenylsiloxane resins were used. In order to find favourable mechanical properties of the developed materials, several pyrolysis processes differing in the achieved maximum temperature were tested. Flexural strength, Youngs modulus, shear modulus, fracture toughness, the temperature dependence of Youngs modulus and of creep were measured. The microstructure of the composites was studied by light microscopy and by SEM. The composite with methyphenylsiloxane precursor exhibits favourable mechanical properties after final pyrolysis temperatures in the range of 650–750 C. In the case of the composite with polymethylsiloxane matrix precursor, the best mechanical properties were achieved by pyrolysis terminated at 650 C.
Keywords in Czech
Mechanické vlastnosti; Kompozity s keramickou matricí (CMCs); Lomová houževnatost; Teplotní zátěž
Keywords in English
Mechanical properties; Ceramic-matrix composites (CMCs); Fracture toughness; Heat treatment
RIV year
2014
Released
08.01.2014
Publisher
Elsevier
ISSN
0272-8842
Volume
40
Number
5
Pages from–to
7507–7521
Pages count
15
BIBTEX
@article{BUT109094,
author="Martin {Černý} and Martina {Halasová} and Jana {Schweigstillová} and Zdeněk {Chlup} and Zbyněk {Sucharda} and Petr {Glogar} and Jaroslava {Svítilová} and Adam {Strachota} and Šárka {Rýglová},
title="Mechanical properties of partially pyrolysed composites with plain weave basalt fibre reinforcement",
year="2014",
volume="40",
number="5",
month="January",
pages="7507--7521",
publisher="Elsevier",
issn="0272-8842"
}