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The role of melt pool behavior in free-jet melt spinning

机译:熔池行为在自由喷射熔体纺丝中的作用

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摘要

The influence of melt pool behavior on the competition between the nucleation of crystalline solidification products and glass formation is examined for an Fe-Si-B alloy. High-speed imaging of the melt pool, analysis of ribbon microstructure, and measurement of ribbon geometry and surface character all indicate upper and lower limits for melt spinning (MS) rates for which fully amorphous ribbons can be achieved. Comparison of the relevant time scales reveals that surface-controlled melt pool oscillation may be the dominant factor governing the onset of unsteady thermal conditions accompanied by varying amounts of crystalline nucleation observed near the lower limit. At high rates, the influence of these oscillations is minimal due to very short melt pool residence times. However, microstructural evidence suggests that the entrapment of gas pockets at the wheel-metal interface may play a critical role in establishing the upper rate limit. An observed transition in wheel-side surface character with an increasing MS rate supports this contention.
机译:对于Fe-Si-B合金,研究了熔池行为对晶体凝固产物成核和玻璃形成之间竞争的影响。熔池的高速成像,带状组织的分析以及带状几何形状和表面特性的测量,都表明可以实现完全非晶态带状的熔体纺丝(MS)速率的上限和下限。相关时间尺度的比较表明,表面控制的熔池振荡可能是控制不稳定热条件的开始的主要因素,伴随着在下限附近观察到的不同数量的晶体成核。在高速率下,由于熔池停留时间非常短,这些振荡的影响极小。但是,微观结构证据表明,车轮-金属界面处的气穴滞留可能在确定速率上限时起关键作用。观察到的轮侧表面特性随MS速率增加而发生的转变支持了这一观点。

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