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Preparation and Reactivity of Gasless Nanostructured Energetic Materials

机译:无气纳米结构含能材料的制备与反应性

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摘要

High-Energy Ball Milling (HEBM) is a ball milling process where a powder mixture placed in the ball mill is subjected to high-energy collisions from the balls. Among other applications, it is a versatile technique that allows for effective preparation of gasless reactive nanostructured materials with high energy density per volume (Ni+Al, Ta+C, Ti+C). The structural transformations of reactive media, which take place during HEBM, define the reaction mechanism in the produced energetic composites. Varying the processing conditions permits fine tuning of the milling-induced microstructures of the fabricated composite particles. In turn, the reactivity, i.e., self-ignition temperature, ignition delay time, as well as reaction kinetics, of high energy density materials depends on its microstructure. Analysis of the milling-induced microstructures suggests that the formation of fresh oxygen-free intimate high surface area contacts between the reagents is responsible for the enhancement of their reactivity. This manifests itself in a reduction of ignition temperature and delay time, an increased rate of chemical reaction, and an overall decrease of the effective activation energy of the reaction. The protocol provides a detailed description for the preparation of reactive nanocomposites with tailored microstructure using short-term HEBM method. It also describes a high-speed thermal imaging technique to determine the ignition/combustion characteristics of the energetic materials. The protocol can be adapted to preparation and characterization of a variety of nanostructured energetic composites.
机译:高能球磨(HEBM)是一种球磨工艺,其中放置在球磨机中的粉末混合物会受到球的高能碰撞。在其他应用中,它是一种通用技术,可以有效地制备具有高单位体积能量密度(Ni + Al,Ta + C,Ti + C)的无气反应性纳米结构材料。在HEBM期间发生的反应性介质的结构转变定义了所产生的高能复合物中的反应机理。改变加工条件允许精细调节所制造的复合颗粒的研磨诱导的微观结构。反过来,高能量密度材料的反应性,即自燃温度,点火延迟时间以及反应动力学,取决于其微观结构。研磨诱导的微观结构的分析表明,试剂之间新鲜无氧的紧密高表面积接触的形成是其反应性增强的原因。这表现为降低了点火温度和延迟时间,提高了化学反应速率,并且总体上降低了反应的有效活化能。该协议提供了使用短期HEBM方法制备具有定制微结构的反应性纳米复合材料的详细说明。它还描述了一种高速热成像技术,以确定高能材料的着火/燃烧特性。该协议可适用于制备和表征各种纳米结构的高能复合材料。

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