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Importance of chamber gas pressure on processing of Al-based metallic glasses during melt spinning

机译:室内气体压力对熔融纺丝铝基金属玻璃加工的重要性

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The effect of chamber gas pressure on the amorphicity of Al_(85)Ni_5Y_(10) alloy was studied for the melt-spinning process. The amorphicity of as-quenched ribbons was characterized by X-ray diffraction (XRD) and differential scanning calorimetry (DSC). The chamber atmosphere pressure is crucial to the cooling rate of melt spinning. At high vacuum, at pressure less than 0.001 atm, fully crystalline fragments are obtained. Monolithic amorphous ribbons were only obtained at a gas pressure of 0.1 atm, 0.2 atm or higher. The extended contact length between ribbons and the copper wheel contributes to the high cooling rate of melt spinning in Al-based glass forming alloys;;that is supported by images recorded by a high-speed camera. Higher chamber pressure increases contact length between ribbons and the wheel, which is qualitatively elucidated by Bernoulli's equation.
机译:研究了室内气压对熔体纺丝过程中Al_(85)Ni_5Y_(10)合金非晶态的影响。通过X射线衍射(XRD)和差示扫描量热法(DSC)表征淬火后的带的非晶性。箱内的气压对于熔体纺丝的冷却速度至关重要。在高真空下,在小于0.001atm的压力下,获得完全结晶的碎片。整体非晶带仅在0.1atm,0.2atm或更高的气压下获得。碳带和铜轮之间的接触距离延长,有助于铝基玻璃成形合金中熔体纺丝的高冷却速率;这由高速相机拍摄的图像支持。较高的腔室压力会增加碳带和砂轮之间的接触长度,这在伯努利方程中得到了定性的说明。

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