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緊耦合氣霧化制備Al基非晶合金粉末

Production of Al-based amorphous alloy powders by close-coupled gas atomization

  • 摘要: 開展了采用緊耦合氣霧化方法制備Al基合金粉末的實驗和理論研究.利用X射線衍射儀、差熱分析儀、掃描電鏡和透射電鏡分析了粉末的表面形貌、顯微組織和結構特征,根據氣霧化過程中熔滴的破碎模式和冷卻行為確定了Al基合金的非晶化臨界冷卻速率及相應粉末粒徑.結果表明:氣霧化粉末中存在部分非晶粉末,非晶粉末的粒徑小于26μm;Al基合金的非晶化臨界冷卻速率大致為106K·s-1;霧化中熔體的破碎和冷卻是兩個相互耦合(矛盾)的過程,快速冷卻(大于104K·s-1)極大地阻礙熔體的充分霧化,同時熔滴的破碎模式對其冷卻行為具有顯著的影響.目前緊耦合氣霧化技術還只能制得非晶/晶態混合的Al基合金粉末.

     

    Abstract: Theoretical and experimental studies on the production of M-based amorphous alloy powders by close-coupled gas atomization were carried out. The particle size, surface morphology and microstructure of the atomized powders were analyzed by XRD, SEM, TEM and DTA. The critical cooling rate for glass formation and corresponding powder diameter of the M-based alloy were determined in terms of the breakup mode and cooling behavior of melt during atomization. It is indicated that there are amorphous particles in the atomized M-based powders, which are basically below 26μm in diameter. The critical cooling rate for glass formation of the M-based alloy is about 106s-1 Melt atomization is such a complicated process that powders form under the coupling interaction of breakup and solidification, where rapid solidification (>104 K·s-1) restrains the breakup of melt; meanwhile, the breakup mode of melt has great influences on solidification. The present close-coupled gas atomization can only produce the mixture powders of crystal and amorphous particles.

     

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