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Evaluating Ignition and Combustion Performance with Al-Metal- Organic Frameworks and Nano-Aluminum in HTPB FuelOA北大核心CSTPCD

中文摘要

Incorporating aluminum metal-organic frameworks(Al-MOFs)as energetic additives for solid fuels presents a promising avenue for enhancing combustion performance.This study explores the potential benefits of Al-MOF(MIL-53(Al))energetic additive on the combustion performance of hydroxyl-terminated polybutadiene(HTPB)fuel.The HTPB-MOF fuel samples were manufactured using the vacuum-casting technique,followed by a comprehensive evaluation of their ignition and combustion properties using an opposed flow burner(OFB)setup utilizing gaseous oxygen as an oxidizer.To gauge the effectiveness of Al-MOFs as fuel additives,their impact is compared with that of nano-aluminum(nAl),another traditional additive in HTPB fuel.The results indicate that the addition of 15%(mass fraction)nAl into HTPB resulted in the shortest ignition delay time(136 ms),demonstrating improved ignition performance compared to pure HTPB(273 ms).The incorporation of Al-MOF in HTPB also reduced ignition delay times to 227 ms and 189 ms,respectively.Moreover,under high oxidizer mass flux conditions(79—81 kg/(m^(2)s)),HTPB fuel with 15%nAl exhibited a substantial 83.2%increase in regression rate compared to the baseline HTPB fuel,highlighting the positive influence of nAl on combustion behavior.In contrast,HTPB-MOF with a 15%Al-MOF additive showed a 32.7%increase in regression rate compared to pure HTPB.These results suggest that HTPB-nAl outperforms HTPB-MOF in terms of regression rates,indicating a more vigorous and rapid burning behavior.

Sri Nithya Mahottamananda;Yash Pal;Yarravarapu Sai Sriram;Subha S;Djalal Trache;

Department of Aerospace Engineering,B S Abdur Rahman CrescentInstitute of Science and Technology,Chennai-600048,IndiaSchool of Aeronautical Science,Hindustan Institute of Technologyand Science,Chennai-603103,IndiaEnergetic Materials Laboratory(EMLab),Teaching and ResearchUnit of Energetic Processes,Ecole Militaire Polytechnique,BP 17,Bordj El-Bahri,16046,Algiers,Algeria

武器工业

ignitioncombustion enhancementMOFHTPBregression rate

《火炸药学报》 2024 (005)

P.413-421,I0003 / 10

10.14077/j.issn.1007-7812.202311012

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