Estimation of Priming Mixture Force

Author:

Trębiński Radosław1,Woźniak Ryszard1ORCID,Szupieńko Damian1ORCID,Fikus Bartosz1ORCID

Affiliation:

1. Faculty of Mechatronics, Armament and Aerospace, Institute of Armament Technology, Military University of Technology, 2 Gen. S. Kaliskiego Street, 00-908 Warsaw, Poland

Abstract

This paper presents the results of the estimation of the priming mixture force for primers used in 12.7 mm ammunition. The method of estimation is based on the results of pressure measurements in a closed chamber into which the products of the combustion of the priming mixture flowed. The capacity of the chamber was changed by inserting sleeves of various volumes. Another estimation of the force value was performed using the results of earlier investigations in which the chamber was filled with glass balls. The determined values of the force were compared with the values estimated based on the accessible literature data. The obtained estimations of the force value are of the same order of magnitude as the force value of black powder. This justifies the use of black powder characteristics for the assessment of the thermodynamic properties of priming mixture combustion products in interior ballistics calculations. The time of action of the investigated primer was determined using the optical recording of the outflow of the priming mixture combustion products into an open space. To facilitate the interpretation of the results of the experiments, a theoretical model was used.

Funder

the Military University of Technology

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous),Building and Construction

Reference10 articles.

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2. Schmidt, J.R., and Nusca, M.J. (2006). Progress in the Development of a Multiphase Turbulent Model of the Gas/Particle Flow in a Small-Caliber Ammunition Primer, ARL-TR-3860 Report; Army Research Laboratory.

3. Investigations of the influence of ignition on the dynamic vivacity of propellants;Leciejewski;Probl. Mechatron. Armament Aviat. Saf. Eng.,2019

4. Williams, A.W., Brant, A.L., Kaste, P.J., and Colburn, J.W. (2006). Experimental Studies of the No. 41 Primer and Ignition of 5.56-mm Ammunition, ARL-TR-3922 Report; Army Research Laboratory.

5. Transient combustion in mobile gas-permeable propellants;Kuo;Acta Astronaut.,1976

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