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PREDICTION OF PRESSURE PHENOMENA IN DUAL-CHAMBER HIGH-LOW PRESSURE GUNS AND ITS APPLICATION TO STRUCTURAL ANALYSIS

机译:双室高压枪压力现象的预测及其在结构分析中的应用

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It is well known that zero-dimensional internal ballistics codes have serious limitations for the prediction of the phenomena that occur in dual-chamber high-low pressure guns. In this paper, pressure-time calculations within the stabilizer of a 120 mm mortar bomb are performed by using an analytical model based on conservation laws. These theoretical results are compared with experimentally obtained pressure-time curves and applied to structural analysis carried out by using ANSYS software in order to evaluate the influence of pressure in dual-chamber high-low pressure guns. Under firing conditions, the material undergoes big pressure rises in very short time periods. The dynamic stress sustained by the material is simulated. As a result, it is found that the material has a very different behavior to that shown by the action of static strains.
机译:众所周知,零维内弹性码对双室高压枪中发生的现象预测具有严重限制。本文通过使用基于保护法的分析模型进行120mm砂浆炸弹的稳定剂内的压力 - 时间计算。将这些理论结果与实验获得的压力 - 时曲线进行比较,并应用于通过使用ANSYS软件进行的结构分析,以便评估双室高压枪中压力的影响。在烧制条件下,材料在很短的时间内经历大压力。模拟材料持续的动态应力。结果,发现该材料具有静态菌株的作用所示的非常不同的行为。

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