FENG Guo-tong, ZHOU Ke-dong, HE Lei, ZHANG Ying-qi, LI Jun-song. Numerical Analysis and Experimental Study of Gun Barrel's Temperature Under Complicated Firing RegulationsJ. Transactions of Beijing institute of Technology, 2017, 37(10): 1003-1008. DOI: 10.15918/j.tbit1001-0645.2017.10.003
Citation: FENG Guo-tong, ZHOU Ke-dong, HE Lei, ZHANG Ying-qi, LI Jun-song. Numerical Analysis and Experimental Study of Gun Barrel's Temperature Under Complicated Firing RegulationsJ. Transactions of Beijing institute of Technology, 2017, 37(10): 1003-1008. DOI: 10.15918/j.tbit1001-0645.2017.10.003

Numerical Analysis and Experimental Study of Gun Barrel's Temperature Under Complicated Firing Regulations

  • To deal with the gun barrel life problem caused by transient thermal shock during successive firing under complicated firing regulations, a mathematical model of one-dimensional transient heat transfer for gun barrel was established. Firstly, finite difference schemes of internal nodes and boundary nodes based on energy balance method and ADI (alternating difference implicit) scheme were derived. Secondly, taking the barrel of some 5.8 mm rifle as the study object, the temperature distribution of gun barrel during 150 successive firing rounds was solved by programming on the basis of the numerical results of classical interior ballistic trajectory. Finally, the temperature of gun barrel outside wall was measured by the thermal infrared imager, and the numerical results are consistent well with the experimental results, which demonstrates the validity of the established model and the algorithm used under complicated firing regulations.
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