Characterization of new minimum signature solid propellant based on ammonium perchlorate synergetic with sorbitol and magnesium metal / Muhammad Zakwan Azizi ... [et al.]

Since the introduction of the concept of insensitive weapons, rocket motor designers must now ensure that their vulnerability is as low as possible. One of the inherent characteristics of a sugar-based propellant is the obvious plume coming out from the nozzle as a result of chemical reactions. The...

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Main Authors: Azizi, Muhammad Zakwan, Abdul Hamid, Ahmad Hussein, Salleh, Zuraidah, Adnan, Alif Abni, Lailatul Atila, Lailatul Atila, Salleh, Nor Afizah
Format: Article
Language:English
Published: Faculty of Mechanical Engineering Universiti Teknologi MARA (UiTM) 2024
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Online Access:https://ir.uitm.edu.my/id/eprint/94425/1/94425.pdf
https://ir.uitm.edu.my/id/eprint/94425/
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spelling my.uitm.ir.944252024-04-29T06:58:33Z https://ir.uitm.edu.my/id/eprint/94425/ Characterization of new minimum signature solid propellant based on ammonium perchlorate synergetic with sorbitol and magnesium metal / Muhammad Zakwan Azizi ... [et al.] jmeche Azizi, Muhammad Zakwan Abdul Hamid, Ahmad Hussein Salleh, Zuraidah Adnan, Alif Abni Lailatul Atila, Lailatul Atila Salleh, Nor Afizah Metallurgy Since the introduction of the concept of insensitive weapons, rocket motor designers must now ensure that their vulnerability is as low as possible. One of the inherent characteristics of a sugar-based propellant is the obvious plume coming out from the nozzle as a result of chemical reactions. The present work characterises a novel minimum signature composite solid propellant based on Ammonium perchlorate/Sorbitol with magnesium metal as a fuel and chlorine scavenger. The elemental stoichiometric coefficient and oxygen balance for the propellant mixture were calculated to find the optimum ratio between the oxidizer and fuel. The solid propellant of AP was prepared by mixing it with melted sorbitol and casting it into the cylindrical hollow tube using the freestanding method. The burning rate for five samples was measured at atmospheric pressure. The morphology was characterized by a scanning electron microscope. Calculation results reveal that ammonium perchlorate at 0.77% weight produced the best elemental stoichiometric coefficient and oxygen balance. The sample with the additive metal showed a significant increase in the burning rate. In all formulation samples of magnesium and ferrous oxide, the maximum burning rate at 0.126 cm/s showed that the metal additive and the propellant worked synergistically with each other. Results from SEM indicate that ammonium perchlorate spherical particles were uniformly dispersed within sorbitol. The addition of ferrous oxide increases the interaction between the component, and at the same time it gives the oxidizer the ability to interact more efficiently with the fuel and improve the physical strength of the solid propellant. This research is a minor step for Malaysia to become a top competitor in the aerospace industry in the future. Faculty of Mechanical Engineering Universiti Teknologi MARA (UiTM) 2024-04 Article PeerReviewed text en https://ir.uitm.edu.my/id/eprint/94425/1/94425.pdf Characterization of new minimum signature solid propellant based on ammonium perchlorate synergetic with sorbitol and magnesium metal / Muhammad Zakwan Azizi ... [et al.]. (2024) Journal of Mechanical Engineering (JMechE) <https://ir.uitm.edu.my/view/publication/Journal_of_Mechanical_Engineering_=28JMechE=29/>, 21 (2): 11. pp. 181-198. ISSN 1823-5514 ; 2550-164X
institution Universiti Teknologi Mara
building Tun Abdul Razak Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Mara
content_source UiTM Institutional Repository
url_provider http://ir.uitm.edu.my/
language English
topic Metallurgy
spellingShingle Metallurgy
Azizi, Muhammad Zakwan
Abdul Hamid, Ahmad Hussein
Salleh, Zuraidah
Adnan, Alif Abni
Lailatul Atila, Lailatul Atila
Salleh, Nor Afizah
Characterization of new minimum signature solid propellant based on ammonium perchlorate synergetic with sorbitol and magnesium metal / Muhammad Zakwan Azizi ... [et al.]
description Since the introduction of the concept of insensitive weapons, rocket motor designers must now ensure that their vulnerability is as low as possible. One of the inherent characteristics of a sugar-based propellant is the obvious plume coming out from the nozzle as a result of chemical reactions. The present work characterises a novel minimum signature composite solid propellant based on Ammonium perchlorate/Sorbitol with magnesium metal as a fuel and chlorine scavenger. The elemental stoichiometric coefficient and oxygen balance for the propellant mixture were calculated to find the optimum ratio between the oxidizer and fuel. The solid propellant of AP was prepared by mixing it with melted sorbitol and casting it into the cylindrical hollow tube using the freestanding method. The burning rate for five samples was measured at atmospheric pressure. The morphology was characterized by a scanning electron microscope. Calculation results reveal that ammonium perchlorate at 0.77% weight produced the best elemental stoichiometric coefficient and oxygen balance. The sample with the additive metal showed a significant increase in the burning rate. In all formulation samples of magnesium and ferrous oxide, the maximum burning rate at 0.126 cm/s showed that the metal additive and the propellant worked synergistically with each other. Results from SEM indicate that ammonium perchlorate spherical particles were uniformly dispersed within sorbitol. The addition of ferrous oxide increases the interaction between the component, and at the same time it gives the oxidizer the ability to interact more efficiently with the fuel and improve the physical strength of the solid propellant. This research is a minor step for Malaysia to become a top competitor in the aerospace industry in the future.
format Article
author Azizi, Muhammad Zakwan
Abdul Hamid, Ahmad Hussein
Salleh, Zuraidah
Adnan, Alif Abni
Lailatul Atila, Lailatul Atila
Salleh, Nor Afizah
author_facet Azizi, Muhammad Zakwan
Abdul Hamid, Ahmad Hussein
Salleh, Zuraidah
Adnan, Alif Abni
Lailatul Atila, Lailatul Atila
Salleh, Nor Afizah
author_sort Azizi, Muhammad Zakwan
title Characterization of new minimum signature solid propellant based on ammonium perchlorate synergetic with sorbitol and magnesium metal / Muhammad Zakwan Azizi ... [et al.]
title_short Characterization of new minimum signature solid propellant based on ammonium perchlorate synergetic with sorbitol and magnesium metal / Muhammad Zakwan Azizi ... [et al.]
title_full Characterization of new minimum signature solid propellant based on ammonium perchlorate synergetic with sorbitol and magnesium metal / Muhammad Zakwan Azizi ... [et al.]
title_fullStr Characterization of new minimum signature solid propellant based on ammonium perchlorate synergetic with sorbitol and magnesium metal / Muhammad Zakwan Azizi ... [et al.]
title_full_unstemmed Characterization of new minimum signature solid propellant based on ammonium perchlorate synergetic with sorbitol and magnesium metal / Muhammad Zakwan Azizi ... [et al.]
title_sort characterization of new minimum signature solid propellant based on ammonium perchlorate synergetic with sorbitol and magnesium metal / muhammad zakwan azizi ... [et al.]
publisher Faculty of Mechanical Engineering Universiti Teknologi MARA (UiTM)
publishDate 2024
url https://ir.uitm.edu.my/id/eprint/94425/1/94425.pdf
https://ir.uitm.edu.my/id/eprint/94425/
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score 13.209306