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Internal stresses in pre-stressed micron-scale aluminum core-shell particles and their improved reactivity

机译:预应力的微米级铝芯壳颗粒的内部应力及其改善的反应性

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摘要

Dilatation of aluminum (Al) core for micron-scale particles covered by alumina (Al2O3) shell was measured utilizing x-ray diffraction with synchrotron radiation for untreated particles and particles after annealing at 573 K and fast quenching at 0.46 K/s. Such a treatment led to the increase in flame rate for Al + CuO composite by 32% and is consistent with theoretical predictions based on the melt-dispersion mechanism of reaction for Al particles. Experimental results confirmed theoretical estimates and proved that the improvement of Al reactivity is due to internal stresses. This opens new ways of controlling particle reactivity through creating and monitoring internal stresses.
机译:利用X射线衍射与氧化铝(Al2O3)壳覆盖的微米颗粒颗粒的铝(Al)核心的扩张利用在573k处退火后的未处理颗粒和颗粒,并在0.46k / s以0.46k / s的快速猝灭后进行同步粒子和颗粒。这种处理导致Al + CuO复合材料的火焰速率的增加32%,并与基于Al颗粒反应的熔体分散机制的理论预测一致。实验结果证实了理论估计,并证明了Al反应性的改善是由于内部应力。这通过创建和监测内应力,打开了控制粒子反应性的新方法。

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