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Experimental Research on the New Technology of Explosive Cladding

机译:炸药熔覆新技术的实验研究

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摘要

In order to ensure the quality of charge,explosives with structure of honeycomb was designed to resolve the current issue about the backward method of charge and low energy efficiency of explosives; explosives with structure of honeycomb and double sided explosive cladding,which significantly reduce the critical thickness of stable detonation of explosives,are used to increase of energy efficiency of explosives and save the amount of explosives.Emulsion explosives with the thickness of 5mm can stable detonation and reliable combination with two metal plates.In this paper(the high velocity explosives was selected in the experiment),the feasibility experiment of double sided explosive cladding for steel of 45 with thickness of 2mm to steel of Q235 with thickness of 16mm was successful investigated.The experiment of double sided explosive cladding for stainless steel with thickness of 3mm to steel of Q235 with thickness of 16mm was successful investigated too.Compared to the existing explosive cladding method,the consumption of explosives for steel of No.45 to steel of Q235 and stainless steel to steel of Q235 are reduced by 83% and 77% in the case of cladding the same number of composite plates.The explosive cladding windows and collision speed of flyer plate are calculated before experiment.It has shown that the calculation prefigure exactly the explosive cladding for steel of45/steel ofQ235 and stainless steel/steel of Q235.
机译:为了保证装药质量,设计了蜂窝结构炸药,解决了目前装药方式落后,炸药能效低的问题。具有蜂窝结构和双面炸药包层的炸药,显着减小了炸药稳定爆炸的临界厚度,用于提高炸药的能效并节省炸药的量。厚度为5mm的乳化炸药可稳定爆炸和爆炸。本文采用高速炸药进行实验,成功地研究了45mm厚2mm的钢与Q235厚16mm的Q235钢的双面炸药包层的可行性。还成功地进行了厚度为3mm的不锈钢与Q235的厚度为16mm的不锈钢的双面炸药包层的试验。与现有的炸药包层方法相比,将45号钢的炸药消耗为Q235的钢和在相同数量的堆焊情况下,不锈钢对Q235的钢减少了83%和77%在实验之前先计算了炸药包层的窗口和飞板的碰撞速度。结果表明,该计算准确地预示了Q235的45 /钢和Q235的不锈钢/金属的炸药包层。

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