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Numerical and Experimental Investigation of the Melt Casting of Explosives

机译:炸药熔铸的数值与实验研究

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摘要

Melt casting of energetic materials is investigated, and a numerical model formulated for the analysis of the coupled fluid flow, heat transfer, and stress fields involved in this phase-change process. The numerical model is based on a conservative multi-block control volume method. The SIMPLE algorithm is employed along with an enthalpy method approach to model the solidification process. Results from the model are verified against experimental data as well as published numerical results for simplified cases. In the melt casting of RDX-binder mixtures, the very high viscosity of the melt leads to the influence of melt convection being very limited. The impact of different cooling conditions on the velocity, temperature and stress distributions, as well as on the solidification time, are discussed. The model can be used to improve the quality of cast explosives, by optimizing and controlling the processing conditions.
机译:研究了高能材料的熔铸,并建立了一个数值模型,用于分析此相变过程中涉及的耦合流体流动,传热和应力场。数值模型基于保守的多块控制量方法。 SIMPLE算法与焓方法一起使用来对凝固过程进行建模。针对实验数据以及简化案例的公开数值结果,验证了模型的结果。在RDX-粘合剂混合物的熔体浇铸中,熔体的极高粘度导致熔体对流的影响非常有限。讨论了不同冷却条件对速度,温度和应力分布以及凝固时间的影响。通过优化和控制加工条件,该模型可用于改善铸造炸药的质量。

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