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Modelling and the FEM Analysis of the Effects of the Blast Wave on the Floor of a Vehicle According to the AEP-55 Vol. 2 Methodology

机译:根据AEP-55 Vol的建模与爆发波在车辆地板上的影响。 2方法

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The article presents the results of numerical simulations regarding the effects of the blast wave on a wheeled armoured vehicle additionally equipped with external multi-layer energy-absorbing panels, the aim of which is to minimise the risk of significant destructions of the vehicle's construction and thus to increase the safety of vehicle's occupants. In order to assess the effectiveness of the used energy-absorbing structures, the results obtained for a vehicle with the protective system and for a vehicle without the protective system have been compared. Numerical simulations have been conducted using the finite element method and the LS-DYNA software, which enables the modelling of the effects of the blast wave thanks to the CONWEP option implemented in it. The scope of conducted numerical analyses included checking the capabilities of absorbing the energy of the blast wave by energy-absorbing panels mounted to the bottom of the vehicle. The mass of an explosive amounting to 6 kg and its location towards the vehicle have been assumed based on the assumptions included in the AEP-55 vol. 2 test methodology. The effectiveness of multi-layer energy-absorbing panels have been assessed on the basis of the comparison of changes in acceleration values and courses in characteristic construction points of the vehicle.
机译:本文介绍了关于爆震波浪在轮式装甲车上的效果的数值模拟结果,其目的是最大限度地减少车辆施工的显着破坏的风险增加车辆占用者的安全。为了评估使用过的能量吸收结构的有效性,已经进行了使用保护系统和车辆的车辆获得的结果,已经进行了比较而没有保护系统。已经使用有限元方法和LS-DYNA软件进行了数值模拟,这使得爆发波的效果建模归功于其在其中实施的COSWEP选项。进行的数值分析的范围包括通过安装到车辆底部的能量吸收面板来检查吸收冲浪的能量的能力。根据AEP-55 Vol中包含的假设,假设假设爆炸物的质量为6千克及其朝向车辆的位置。 2测试方法。基于车辆特征施工点中的加速度值和课程的变化的比较评估了多层能量吸收面板的有效性。

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