Department of Chemical and Biomolecular Engineering, University of Notre Dame, Notre Dame, Indiana 46556, USA.
J Phys Chem A. 2009 Dec 3;113(48):13541-7. doi: 10.1021/jp905175c.
The influence of short-term (5-15 min) highly energetic ball milling on the ignition characteristics of a gasless heterogeneous Ni-Al reactive system has been investigated. By using Al-Ni clad particles (30-40 microm diameter Al spheres coated by a 3-3.5 microm layer of Ni, that corresponds to a 1:1 Ni/Al atomic ratio), it was shown that such mechanical treatment leads to a significant decrease in the self-ignition temperature of the system. For example, after 15 min of ball milling, the ignition temperature appears to be approximately 600 K, well below the eutectic (913 K) in the considered binary system, which is the ignition temperature for the initial clad particles. Thus, it was demonstrated that the thermal explosion process for mechanically treated reactive media can be solely defined by solid-state reactions. Additionally, thermal analysis measurements revealed that mechanical activation results in a substantial decrease in the effective activation energy (from 84 to 28 kcal/mol) of interaction between Al and Ni. This effect, that is, mechanical activation of chemical reaction, is connected to a substantial increase of contact area between reactive particles and fresh interphase boundaries formed in an inert atmosphere during ball milling. It is also important that by varying the time of mechanical activation one can precisely control the ignition temperature in high-density energetic heterogeneous systems.
研究了短期(5-15 分钟)高能球磨对无气体多相 Ni-Al 反应体系点火特性的影响。通过使用 Al-Ni 包层颗粒(30-40 微米直径的 Al 球,表面包覆 3-3.5 微米厚的 Ni,对应于 1:1 的 Ni/Al 原子比),结果表明,这种机械处理会显著降低体系的自点火温度。例如,经过 15 分钟的球磨后,点火温度似乎约为 600 K,远低于所考虑二元体系的共晶温度(913 K),这是初始包层颗粒的点火温度。因此,证明了机械处理反应性介质的热爆炸过程可以仅由固态反应来定义。此外,热分析测量表明,机械激活导致 Al 和 Ni 之间相互作用的有效活化能(从 84 到 28 kcal/mol)大幅降低。这种效应,即化学反应的机械激活,与在惰性气氛中球磨过程中形成的活性颗粒之间的接触面积的大幅增加以及新鲜相间边界有关。重要的是,通过改变机械激活时间,可以精确控制高密度高能异质系统的点火温度。