Analysis of the of propellants-polymers compatibility by different test methods
This paper shows the results of chemical compatibility of two types of propellants (NGB-051and NC-28) with two types of polymer materials (Polyamide 12 and Polymethylmetacrylate) by different test methods. Testing was performed using heat flow calorimetry, differential scanning calorimetry, the meth...
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Military Technical Institute, Belgrade
2017-01-01
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doaj-532ea259510b4a68bcc392d8987ecd5f2020-11-25T03:53:29ZengMilitary Technical Institute, BelgradeScientific Technical Review1820-02062683-57702017-01-0167213191820-02061702013DAnalysis of the of propellants-polymers compatibility by different test methodsDimić Mirjana0Fidanovski Bojana1Jelisavac Ljiljana2Rodić Vesna3Military Technical Institute (VTI), BelgradeMilitary Technical Institute (VTI), BelgradeMilitary Technical Institute (VTI), BelgradeMilitary Technical Institute (VTI), BelgradeThis paper shows the results of chemical compatibility of two types of propellants (NGB-051and NC-28) with two types of polymer materials (Polyamide 12 and Polymethylmetacrylate) by different test methods. Testing was performed using heat flow calorimetry, differential scanning calorimetry, the method of chemical analysis after aging and vacuum stability test method according to STANAG 4147. The heat flow curves of propellants, polymeric materials and their mixtures and the theoretical curves were determined. Produced energy was calculated and the values of relative and absolute compatibility were determined. Analysis of the exothermic peak of decomposition of propellants and its mixture with polymer materials was performed and the maximum difference in peak temperatures was calculated. The stabilizer content of the unheated propellants, the artificially aged propellants and the propellants after heating in contact with the polymer material was determined. The values of the volume of released gas, by using vacuum stability test method, for the propellants and polymer materials as well as their mixtures were determined. The value of absolute compatibility was calculated. Compatibility was estimated on the basis of the results presented.https://scindeks-clanci.ceon.rs/data/pdf/1820-0206/2017/1820-02061702013D.pdfsingle base propellantdouble base propellantpolymer materialscompatibilitytest methodheat flow calorimetrydifferential sacnning calorimetryagingstability analysis |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Dimić Mirjana Fidanovski Bojana Jelisavac Ljiljana Rodić Vesna |
spellingShingle |
Dimić Mirjana Fidanovski Bojana Jelisavac Ljiljana Rodić Vesna Analysis of the of propellants-polymers compatibility by different test methods Scientific Technical Review single base propellant double base propellant polymer materials compatibility test method heat flow calorimetry differential sacnning calorimetry aging stability analysis |
author_facet |
Dimić Mirjana Fidanovski Bojana Jelisavac Ljiljana Rodić Vesna |
author_sort |
Dimić Mirjana |
title |
Analysis of the of propellants-polymers compatibility by different test methods |
title_short |
Analysis of the of propellants-polymers compatibility by different test methods |
title_full |
Analysis of the of propellants-polymers compatibility by different test methods |
title_fullStr |
Analysis of the of propellants-polymers compatibility by different test methods |
title_full_unstemmed |
Analysis of the of propellants-polymers compatibility by different test methods |
title_sort |
analysis of the of propellants-polymers compatibility by different test methods |
publisher |
Military Technical Institute, Belgrade |
series |
Scientific Technical Review |
issn |
1820-0206 2683-5770 |
publishDate |
2017-01-01 |
description |
This paper shows the results of chemical compatibility of two types of propellants (NGB-051and NC-28) with two types of polymer materials (Polyamide 12 and Polymethylmetacrylate) by different test methods. Testing was performed using heat flow calorimetry, differential scanning calorimetry, the method of chemical analysis after aging and vacuum stability test method according to STANAG 4147. The heat flow curves of propellants, polymeric materials and their mixtures and the theoretical curves were determined. Produced energy was calculated and the values of relative and absolute compatibility were determined. Analysis of the exothermic peak of decomposition of propellants and its mixture with polymer materials was performed and the maximum difference in peak temperatures was calculated. The stabilizer content of the unheated propellants, the artificially aged propellants and the propellants after heating in contact with the polymer material was determined. The values of the volume of released gas, by using vacuum stability test method, for the propellants and polymer materials as well as their mixtures were determined. The value of absolute compatibility was calculated. Compatibility was estimated on the basis of the results presented. |
topic |
single base propellant double base propellant polymer materials compatibility test method heat flow calorimetry differential sacnning calorimetry aging stability analysis |
url |
https://scindeks-clanci.ceon.rs/data/pdf/1820-0206/2017/1820-02061702013D.pdf |
work_keys_str_mv |
AT dimicmirjana analysisoftheofpropellantspolymerscompatibilitybydifferenttestmethods AT fidanovskibojana analysisoftheofpropellantspolymerscompatibilitybydifferenttestmethods AT jelisavacljiljana analysisoftheofpropellantspolymerscompatibilitybydifferenttestmethods AT rodicvesna analysisoftheofpropellantspolymerscompatibilitybydifferenttestmethods |
_version_ |
1724477741404782592 |