Recently, drones are widely used for various purposes. Among them, it has long been used for military purposes. A drone is an effective asymmetrical power that can strike opponents at low cost. On the other hand, Jammer to subdue drones are also being developed and put into practical use. In this study, a study was conducted to ensure that the weapon system was equipped with an additional Jammer at low cost, and to respond to threats to small drones and drones, by securing an shock resistance t through the transient response analysis of the shooting impact.
In this paper, dynamic model of 120mm self-propelled mortar is developed, and multi flexible body dynamics analysis is performed to analyze stresses occurring in the mount during mortar fire. For this, vehicle dynamic system, mortar dynamic system, and finite element mount model are proposed. The commercial program Recurdyn is used in the analysis. As a result of the analysis, the maximum stress(146.9MPa) occurred at the mount side plate. In order to analyze the validity of the analysis results, we performed strain measurement tests by selecting three major points, and the errors of results were 7.91%, 11.15%, and 18.23%, respectively. It is confirmed that the tendency of analysis and test is similar.