1 Department of rocket propulsion BATCSTP/NASRDA.
2 Department of combustion engine system BATCSTP/NASRDA.
3 Department of maintenance and infrastructure BATCSTP/NASRDA.
4 Rocket system Engineering Division BATCSTP /NASRDA.
* Corresponding Author
Global Journal of Engineering and Technology Advances, 2026, 28(02), 238–251
Article DOI: 10.30574/gjeta.2026.28.2.0230
Received on 21 July 2026; revised on 29 August 2026; accepted on 31 August 2026
Specific impulse (Isp) is the principal figure of merit used to evaluate the performance of a solid rocket motor, and it is governed almost entirely by the chemical composition of the propellant grain. This paper presents a complete formulation-based design study of a composite solid propellant system: the governing Isp and characteristic-velocity equations, Vieille's burning-rate law, the mass and thrust balance equations, and compositional parameters estimated from representative literature formulations (AP = 68-72 wt.%, HTPB binder system = 12-16 wt.%, Al = 14-18 wt.%). A compositional sensitivity framework is developed and cross-checked against reported literature trends. Comparative analysis of representative formulations confirms that the aluminum-content sensitivity curve peaks near 18-20 wt.% Al, beyond which two-phase flow losses erode delivered Isp, while reported Isp gains of up to 37 s are achievable through nanocarbon additives and secondary high-energy oxidizers relative to an ungmodified AP/HTPB/Al baseline. A test-basis normalization framework, cross-checked during literature screening, is documented as the practical protocol for comparing Isp values reported under different chamber-pressure and expansion-ratio conditions.
Solid Rocket Propellant, Specific Impulse, Ammonium Perchlorate, Aluminum Fuel Loading, HTPB Binder, Vieille's Law, Two-Phase Flow Loss, Formulation Sensitivity.
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Nwisu Blessing Nnenna, Alli Adebayo Matthew, Hassan yunusa Ibrahim and Ayinde Babatunde Atanda. EFFECT OF PROPELLANT COMPOSITION ON THE SPECIFIC IMPULSE OF SOLID ROCKET MOTORS. Global Journal of Engineering and Technology Advances, 2026, 28(02), 238–251. Article DOI: https://doi.org/10.30574/gjeta.2026.28.2.0230.





