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Finite Element Simulation of Effect of Channel Structure on 7-perforated Propellant Extrusion Flow and Mold Optimization Design

机译:通道结构对七孔推进剂挤出流动影响的有限元模拟及模具优化设计

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7-perforated propellant is a kind of standard progressive combustion gunpowder which is used in artilleries currently and effectively improves the muzzle velocity. For now, extrusion is a processing technique widely used in multi-perforated propellants produce. The method takes into account several issues namely, holes dislocation, deformation and tow central density. These problems restrict the development of the propellant. In this paper, the fluid in 7-perforated propellant extrusion die is simulated by finite element software. Orthogonal test is carried out to optimize the structure of the mold. The influence of major structure parameters, such as contraction ratio, contraction zone length and forming zone length, on maximum pressure, pressure distribution and velocity distribution in the channel is analyzed by numerical analysis method. In this work, influence degree of structure parameters on the maximum pressure in the channel and on the mold needles, the pressure distribution of forming zone entrance and the outlet velocity distribution is studied, that provides the basis for the 7-perforated propellant mold improving. The result shows that the quality of propellants extruded by the optimized mold is stable.
机译:七孔推进剂是目前在火炮中使用的一种标准的渐进式火药,能有效提高炮口速度。目前,挤出是一种广泛用于多孔推进剂生产中的加工技术。该方法考虑了几个问题,即孔错位,变形和丝束中心密度。这些问题限制了推进剂的发展。本文通过有限元软件模拟了7孔推进剂挤出模头中的流体。进行正交试验以优化模具的结构。通过数值分析方法,分析了收缩比,收缩带长度,成形带长度等主要结构参数对通道内最大压力,压力分布和速度分布的影响。本文研究了结构参数对通道内最大压力和模具针的最大压力,成型区入口压力分布和出口速度分布的影响程度,为改进7孔推进剂模具提供了依据。结果表明,优化后的模具挤出的推进剂质量稳定。

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