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Enhanced reactivity of mechanically-activated nano-scale gasless reactive materials consolidated by coldspray

机译:通过冷喷涂固结的机械活化纳米级无气反应性材料的反应活性增强

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摘要

The present study presents a novel method to prepare nano-scale energetic materials with high reactivity, low porosity and controllable shape. The experiments have been focused on the Ni-Al system. To increase the reactivity, an initial mechanical activation was achieved by the ball milling technique. The consolidation of the materials was achieved via the use of the Cold Gas Dynamic Spray (also known as Cold Spray) technique, where the particles are accelerated to high speeds and consolidated via plastic deformation upon impact, forming activated nanocomposites in arbitrary shapes with porosity levels close to zero. This technique permits to retain the powder microstructure in the coatings and prevents any reactions during the consolidation phase. The material reactivity is addressed through the flame propagation velocity, which showed an increase in the flame speed of the cold sprayed samples by up to one order of magnitude compared to their cold pressed counterparts.
机译:本研究提出了一种新的方法来制备具有高反应性,低孔隙率和可控形状的纳米级含能材料。实验集中在镍铝系统上。为了提高反应活性,通过球磨技术实现了初始的机械活化。材料的固结是通过使用冷气体动态喷涂(也称为冷喷涂)技术实现的,该技术将粒子加速至高速并通过撞击时的塑性变形进行固结,从而形成具有孔隙率水平的任意形状的活性纳米复合材料接近零。该技术允许在涂层中保留粉末微结构,并防止固结阶段发生任何反应。通过火焰传播速度解决材料的反应性,火焰传播速度表明冷喷涂样品的火焰速度比冷压样品的火焰速度提高了一个数量级。

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