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Information Journal Paper

Title

Synthesis of Propacene as a Novel Burning Rate Accelerator Catalyst, and Comparison of its Properties with Butacene

Pages

  135-143

Abstract

 Among the burning rate accelerating catalysts, liquid ferrocene derivatives have been used extensively due to their proper performance and suitable processability. However, these compounds start to migrate during the retention time which lead to destructive changes in propellant performance and more sensibility to undesired stimulations. In order to avoid these problems, researchers have tried to graft them to HTPB prepolymer. Butacene is an attractive example of such compounds. In this study, the synthesis of novel Propacene burning rate accelerating catalyst has been performed by changing the chain length of ferrocene derivative and modification of iron percentage. Physical characteristics like density, viscosity, hydroxyl amount and thermal properties of the product have been investigated. The results of our experiments showed that Propacene is a better candidate due to its more suitable properties such as significant low viscosity and much better thermal stability in comparison to Butacene.

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    APA: Copy

    TEIMURI MOFRAD, R., PARCHEHBAF, M., RAHIMPOUR, K., & Aghaiepour, A.. (2018). Synthesis of Propacene as a Novel Burning Rate Accelerator Catalyst, and Comparison of its Properties with Butacene. JOURNAL OF ENERGETIC MATERIALS, 13(2 (38) ), 135-143. SID. https://sid.ir/paper/397370/en

    Vancouver: Copy

    TEIMURI MOFRAD R., PARCHEHBAF M., RAHIMPOUR K., Aghaiepour A.. Synthesis of Propacene as a Novel Burning Rate Accelerator Catalyst, and Comparison of its Properties with Butacene. JOURNAL OF ENERGETIC MATERIALS[Internet]. 2018;13(2 (38) ):135-143. Available from: https://sid.ir/paper/397370/en

    IEEE: Copy

    R. TEIMURI MOFRAD, M. PARCHEHBAF, K. RAHIMPOUR, and A. Aghaiepour, “Synthesis of Propacene as a Novel Burning Rate Accelerator Catalyst, and Comparison of its Properties with Butacene,” JOURNAL OF ENERGETIC MATERIALS, vol. 13, no. 2 (38) , pp. 135–143, 2018, [Online]. Available: https://sid.ir/paper/397370/en

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