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Modeling of Cooling and Solidification of TNT based Cast High Explosive Charges

机译:基于TNT的高爆炸装药冷却和凝固建模

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Cast trinitrotoluene (TNT) based high explosive charges suffer from different defects such as cracks, voids, etc. One of the quality control measures is to cool the castings gradually, so that the entire charge solidifies without a large temperature gradient from core to the periphery of the cast charge. The fact that the solidification of high explosive casting starts from the periphery (cooler side) and travels towards the center enables us to predict the solidification profile of TNT based explosive castings. Growth of solidification thickness and cooling temperature profiles of TNT based cast high explosive charges are predicted as functions of time and space using unsteady state heat transfer principles, associated with heat balance at solid to liquid interface as a moving boundary of solidification. This will enable adoption of proper quality control during solidification of the molten TNT to eliminate inherent drawbacks of cast high explosive charges. The solidification profiles of TNT based cast charges under controlled and natural conditions are predicted and the model is validated against 145 mm diameter TNT cast charge which is found to be in broad agreement with experiments. Defence Science Journal, Vol. 64, No. 4, July 2014, pp.339-343, DOI:http://dx.doi.org/10.14429/dsj.64.4673
机译:基于铸件三硝基甲苯(TNT)的高爆炸药具有不同的缺陷,例如裂缝,空隙等。质量控制措施之一是逐渐冷却铸件,以使整个装药固化,而从芯到外围的温度梯度不大。的转换费用。高炸药铸件的凝固从外围(冷却器侧)开始并向中心移动,这一事实使我们能够预测基于TNT的炸药铸件的凝固曲线。使用非稳态传热原理,将基于TNT的高炸药装料的凝固厚度和冷却温度分布的增长预测为时间和空间的函数,并与固体到液体界面的热平衡相关联,作为凝固的运动边界。这将使得在熔融的TNT固化过程中能够采取适当的质量控制,从而消除铸造高炸药的固有缺陷。预测了在受控和自然条件下基于TNT的铸件的凝固曲线,并针对直径145 mm的TNT铸件进行了模型验证,发现该模型与实验基本吻合。国防科学学报,第64,No.4,July July,pp.339-343,DOI:http://dx.doi.org/10.14429/dsj.64.4673

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