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Exploring the Mechanical, Thermal and Ballistic Effects of Carbon Black on Paraffin-Based Fuels for Hybrid Rocket Motors

Paraffin-based hybrid propellants have been developed due to their high burning rate. However, they have some disadvantages such as inadequate mechanical properties and unstable burning. In this work, paraffin fuel grains with carbon black were evaluated to study the possible effects of this additiv...

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Published in:Journal of aerospace technology and management 2019-01, Vol.11 (1), p.19-22
Main Authors: Cristina Gomes Fernandes, Paula, Santos Gomes, Jessica, Yoshie Kawachi, Elizabete, Yuji Nagamachi, Marcio, Fernando de Araujo F Ferrão, Luiz, Pereira Cardoso, Kamila
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cited_by cdi_FETCH-LOGICAL-c301t-2669758b7875c839ce76397d41e174df667ab7af08324474b81ce51c9cb834303
cites cdi_FETCH-LOGICAL-c301t-2669758b7875c839ce76397d41e174df667ab7af08324474b81ce51c9cb834303
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container_title Journal of aerospace technology and management
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creator Cristina Gomes Fernandes, Paula
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description Paraffin-based hybrid propellants have been developed due to their high burning rate. However, they have some disadvantages such as inadequate mechanical properties and unstable burning. In this work, paraffin fuel grains with carbon black were evaluated to study the possible effects of this additive on the mechanical, thermal and ballistic properties of these grains, besides the already known effect of minimizing the thermal radiation inside the motor. The grains with carbon black showed significant changes in the thermal degradation profile and substantial improvement in burn stability.
doi_str_mv 10.5028/jatm.etmq.64
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source SciELO Brazil
subjects Burning rate
Hybrid propellant
Paraffins
Propellant additives
title Exploring the Mechanical, Thermal and Ballistic Effects of Carbon Black on Paraffin-Based Fuels for Hybrid Rocket Motors
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