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Wyświetlanie 1-2 z 2
Tytuł:
Study of the synthesis of GAP-HTPB-GAP Liquid Copolymer
Autorzy:
Chmielarek, Michał
Maksimowski, Paweł
Cieślak, Katarzyna
Gołofit, Tomasz
Drozd, Hanna
Powiązania:
https://bibliotekanauki.pl/articles/1062796.pdf
Data publikacji:
2020
Wydawca:
Sieć Badawcza Łukasiewicz - Instytut Przemysłu Organicznego
Tematy:
HTPB
GAP
copolymerization
optimization
liquid energetic binder
Opis:
GAP and HTPB are polymers on which the copolymer obtained in our work is based. The following report indicates how to perform the polymerization reactions for these two polymers in order to obtain a copolymer that combines their individual positive physico-chemical properties. It demonstrates how the ratio of substrates and reaction conditions affect the polymer properties. It has been shown that increasing the amount of epichlorohydrin attached to HTPB significantly affects the copolymer viscosity. This has a later effect on polymer processing, as well as on the hydroxyl values being too low. This is important for the subsequent production of polyurethanes. Analysis of the results allows the reaction conditions to be designed so as to generate a polymer with the best properties. The reactions were carried out in two stages. The first stage was the connection of polyepichlorohydrin (PECH) to HTPB, and the second was azidation of the resultant PECH-HTPB-PECH copolymer. The influence of the amount of epichlorohydrin attached to HTPB on the copolymer properties (e.g. viscosity) was demonstrated. Analysis of the second stage, the preparation of the GAP-HTPB-GAP copolymer (by azidation of the PECH-HTPB-PECH copolymer), showed that the nitrogen content in the copolymer has a significant effect on the viscosity and heat of polymer combustion.
Źródło:
Central European Journal of Energetic Materials; 2020, 17, 4; 566-583
1733-7178
Pojawia się w:
Central European Journal of Energetic Materials
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Review of Methods for Testing the Compatibility of High Energy Mixed Components
Autorzy:
Gołofit, Tomasz
Zakościelny, Bartosz
Maksimowski, Paweł
Chmielarek, Michał
Cieślak, Katarzyna
Sałaciński, Tomasz
Powiązania:
https://bibliotekanauki.pl/articles/27787910.pdf
Data publikacji:
2021
Wydawca:
Sieć Badawcza Łukasiewicz - Instytut Przemysłu Organicznego
Tematy:
STANAG 4147
VST
HFC
TG
DSC
FTIR
XRD
compatibility
high energy materials
Opis:
A review of methods for testing the compatibility of high energy mixed components is presented. The advantages, deficiencies as well as the limitations of particular research methods are described based on selected applications reported in the literature. The most frequently used techniques for testing compatibility are thermal methods, such as DSC, TG, VST, and HFC, in which the processes of decomposition of samples conditioned at elevated temperatures are analyzed. Examples of non-thermal methods for testing compatibility, such as DFT, FTIR or XRD are reported in the literature as well. Incompatibility may lead to thermal detonation, which can occur even at low degrees of conversion. For this reason, the authors focused specifically on the limitations of methods for determining compatibility at high degrees of conversion. The methods allowing testing of compatibility based on an analysis for the initial decomposition stage are recommended.
Źródło:
Central European Journal of Energetic Materials; 2021, 18, 4; 512--528
1733-7178
Pojawia się w:
Central European Journal of Energetic Materials
Dostawca treści:
Biblioteka Nauki
Artykuł
    Wyświetlanie 1-2 z 2

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