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Thermo-Kinetic Study of Core-Shell Nanothermites

机译:核心壳纳米热动力学研究

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This article presents the formulation of a new nano-thermite mixture (Al/KMnO4) for application in energetic materials. Reactivities of different thermite mixtures have been compared by a constant volume combustion experiment and the results indicate that the reactivity of the new formulation is two orders of magnitude greater than the traditional formulations. We also present a generic technique for synthesizing core-shell nanostructured composite particles as a means of controlling the reactivity and initiation. By coating a strong oxidizer nanoparticle (KMnO4; ~150 nm) by a layer of mild oxidizer (Fe2O3; ~4–15 nm) the measured reactivity in terms of pressurization rate (psi/μs) could be varied by more than a factor of 10. The composite oxidizer particles were synthesized by a two-temperature aerosol process where the non-wetting interaction between the two components of the particle causes phase segregation into a core-shell structure. We also show that the characteristic reaction times and particle length scales can be used to measure characteristic diffusion rates which are indicative of the reactivity of a thermite nanocomposite.
机译:本文介绍了在高能材料应用的新的纳米铝热剂混合物比(Al /高锰酸钾)的制剂。不同铝热剂的混合物的反应性:已经通过定容燃烧实验比较,结果表明,新配方的反应性大小大于传统的制剂的两个数量级。我们还提出了用于合成芯 - 壳纳米结构的复合粒子,作为控制反应性和开始的手段的通用技术。通过涂覆一种强氧化剂纳米颗粒(高锰酸钾;〜150nm)的通过温和氧化剂的层(Fe2O3的;〜4-15纳米)在加压速率(PSI /微秒)计测得的反应性可通过多于一个因素来改变10.复合氧化剂颗粒通过一个两温度气溶胶方法,其中所述颗粒的两个部件之间的非润湿相互作用造成相分离成核 - 壳结构合成。我们还表明,该特性的反应时间和颗粒长度尺度可用于测量特性的扩散速率其指示的铝热剂的纳米复合材料的反应性。

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