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Experimental Study of Mechanical Properties and Impact-Induced Reaction Characteristics of PTFE/Al/CuO Reactive Materials

机译:PTFE / Al / CuO活性材料的力学性能和冲击诱导反应特性的实验研究

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摘要

Metal/fluoropolymer materials are typical reactive materials. Polytetrafluoroethylene (PTFE)/Al/CuO reactive materials were studied in this research. Scanning electron microscopy (SEM), quasi-static compression, the Split Hopkinson pressure bar test, and the drop hammer test were used to study the mechanical properties and induced reaction characteristics of the reactive materials with different Al/CuO thermite contents and different particle sizes. SEM images of the samples demonstrate that the reactive materials were mixed evenly. The compression test results show that, if the particle size of PTFE was too small, the strength of reactive materials after sintering was reduced. After sintering, with the increase in the content of Al/CuO thermite, the strength of the micro-sized PTFE/Al/CuO firstly increased and then decreased. The Johnson–Cook constitutive model can be used to characterize the reactive materials, and the parameters of the Johnson–Cook constitutive model of No. 3 reactive materials (PTFE/Al:Al/CuO = 3:1) were obtained. The reliability of the parameters was verified by numerical simulation. Drop hammer tests show that the addition of Al/CuO aluminothermic materials or the use of nano-sized PTFE/Al reactive materials can significantly improve the sensitivity of the material. The research in this paper can provide a reference for the preparation, transportation, storage, and application of reactive materials.
机译:金属/含氟聚合物材料是典型的反应性材料。本研究对聚四氟乙烯(PTFE)/ Al / CuO活性材料进行了研究。使用扫描电子显微镜(SEM),准静态压缩,Split Hopkinson压力棒试验和落锤试验研究了不同Al / CuO铝铁矿含量和粒径的反应性材料的力学性能和诱导反应特性。样品的SEM图像表明反应性材料被均匀混合。压缩试验结果表明,如果PTFE的粒度太小,则烧结后反应材料的强度降低。烧结后,随着Al / CuO铝热剂含量的增加,微细PTFE / Al / CuO的强度先增大后减小。可以使用Johnson-Cook本构模型来表征反应性材料,并获得3号反应性材料(PTFE / Al:Al / CuO = 3:1)的Johnson-Cook本构模型的参数。通过数值模拟验证了参数的可靠性。落锤测试表明,添加Al / CuO铝热材料或使用纳米级PTFE / Al反应性材料可以显着提高材料的灵敏度。本文的研究可为反应性材料的制备,运输,储存和应用提供参考。

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