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Diffusion paths in boron / titanium reaction systems

机译:硼/钛反应系统中的扩散路径

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A new model for the diffusion controlled gasless reaction between boron and titanium particles is presented. The research focues on modeling the principal geometrical variations of small adjacent particles in close contact as well as the diffusional fluxes caused by the curvature of the connecting neck between the particles which are superimposed on the interdiffusion flux of atoms through the TiB_2 product layer. Computer calculations were used to present the time/temperature dependence of these fluxes and of the geometrical parameters. It was found that for sub-micron particles the diffusional rates induced by the neck's curvature (mainly surface diffusion) may be comparable and even larger than the regular Fick's interdiffusion flow of atoms in the TiB_2 layer, hence they can make a significant contribution to the overall diffusion rate. The model is useful for the study of B/Ti gasless reactions (e.g., in pyrotechnic mixtures) as well as for formulating the effect of boron and titanium interactions on the ignition of B/Ti aggomerates in oxidizing atmospheres.
机译:介绍了硼和钛颗粒之间的扩散控制无气反应的新模型。关于在密切接触中模拟小相邻粒子的主要几何变化以及通过TIB_2产物层叠加在原子的相互扩散通量的颗粒之间的缩略率引起的小相邻粒子的主要几何变化。使用计算机计算来呈现这些助熔剂和几何参数的时间/温度依赖性。发现,对于亚微米颗粒,由颈部曲率(主要是表面扩散)引起的扩散速率可能是可比的甚至大于常规Fick在TIB_2层中原子的相互局部的相互作用流动,因此它们可以对此产生重大贡献整体扩散速率。该模型可用于研究B / TI无气体反应(例如,在烟火混合物中)以及用于制定硼和钛相互作用对氧化大气中的B / Ti agGomerates点火的影响。

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