Szczegóły publikacji
Opis bibliograficzny
Boron oxide as a fluxing agent for silicone rubber-based ceramizable composites / R. Anyszka, D. M. Bieliński, Z. PĘDZICH // W: High performance elastomer materials : an engineering approach / ed. by Dariusz M. Bielinski, Ryszard Kozlowski, Gennady E. Zaikov. — Toronto ; New Jersey : Apple Academic Press, cop. 2015. — (AAP Research Notes on Chemistry). — Książka zawiera materiały z 15th International technological conference ELASTOMERS 2013 ”Science and Industry”, Warsaw, Poland 23rd–25th October. — ISBN: 978-1-77188-042-8. — S. 92–107. — Bibliogr. s. 105–107, Abstr.
Autorzy (3)
- Anyszka Rafał
- Bieliński D. M.
- AGHPędzich Zbigniew
Słowa kluczowe
Dane bibliometryczne
| ID BaDAP | 86539 |
|---|---|
| Data dodania do BaDAP | 2014-12-15 |
| Rok publikacji | 2015 |
| Typ publikacji | fragment książki |
| Otwarty dostęp | |
| Konferencja | 15th International Technological Conference on Science and Industry |
| Czasopismo/seria | AAP Research Notes on Chemistry |
Abstract
Boron oxide particles were incorporated to silicone rubber-based mixes containing fumed silica (reinforcing filler) and reference mineral fillers - aluminum hydroxide, wollastonite, calcined kaolin, mica (phlogipite) and surface modified montmorillonite with dimethyl-dihydrogenatedtallow quaternary ammonium salt. Acidic character of boron oxide, which can disturb the peroxide curing process, was compensated by addition of magnesium oxide. The influence of boron oxide particles on properties of composites was determined and mechanism of their ceramization process studied. Vulcanization kinetic was studied. Mechanical properties of cured composites before and after various regimes of ceramization were investigated. Ceramic phase obtained after heat treatment was characterized by porosimetry and scanning electron microscopy. Morphology and mechanical properties of composites before and after ceramization depend on the type of mineral filler applied, whereas the kinetic of vulcanization is different only for composite containing surface modified montmorillonite.