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Foil explosion and decay of metastable state

机译:铝箔爆炸和腐朽的旋转状态

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The mechanism of decay of the superheated metastable metal produced by a thin foil explosion was investigated experimentally. The decay of the metastable metal was indicated by the occurrence of bubbles detected using soft x-ray backlighting. The experiments were carried out on a research facility comprising three current generators. One of them was used to initiate the explosion of a test foil, and the other two, X-pinch backlighting sources, were used for diagnostics. In the experiments, an upper limit has been determined for the decay time of the metastable state of a superheated metal. For aluminum, at a foil thickness of 6 mu m and a deposited energy of 1.49 +/- 0.08eV/atom, the metastable state decay time was about 90ns; for copper, at the same foil thickness and a deposited energy of 1.46 +/- 0.07eV/atom, it was about 250ns. Analysis of the experimental results based on the classical nucleation theory has made it possible to estimate the work required for the formation of a critical bubble, the radius of the critical bubble, and the Tolman length, which characterizes the effect of the surface curvature on the surface tension. The work required for the formation of a critical bubble has been estimated to be 16.6 +/- 1.5eV for aluminum and 18.3 +/- 1.2eV for copper. The critical bubble radius and the Tolman length turned out to be several nanometers for both test metals.
机译:通过实验研究了薄箔爆炸生产的过热亚稳金属腐烂的机理。通过使用软X射线背光检测的气泡的出现表示亚稳金属的衰减。实验是在包括三个电流发生器的研究机构上进行的。其中一个用于发起测试箔的爆炸,另一两个X-PINCH背光源用于诊断。在实验中,已经确定了上限的过热金属的亚稳态的衰减时间。对于铝,在6μm的箔厚度和1.49 +/- 0.08EV /原子的沉积能量下,亚稳态衰减时间约为90ns;对于铜,在相同的箔厚度和1.46 +/- 0.07EV /原子的沉积能中,它为约250ns。基于古典成核理论的实验结果分析已经使得可以估计形成临界气泡的作品,临界气泡的半径和耐甲块长度,其表征了表面曲率对的效果表面张力。形成临界气泡所需的作品据估计为铝的16.6 +/- 1.5EV,铜为18.3 +/- 1.2EV。临界气泡半径和Tolman长度向测试金属的几纳米表示为几纳米。

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