The Influence of Solute Contents on Secondary Dendrite Arm Spacings for Multicomponent Alloys
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摘要: 在前人提出的二次枝晶臂等溫粗化的四種物理模型的基礎上建立了多元合金二次枝晶臂等溫粗化動力學數學模型。將這些數學模型運用于Al-Cu-Fe、Al-Cu-Si、Al-Cu-Mn三元合金中發現它們與日本學者森信幸等人所作的實驗結果相一致,說明它們是可信的。實驗與理論分析表明,在多元合金凝固過程中局部凝固時間相同的條件下,溶質濃度的增加有利于二次枝晶臂的細化。Abstract: The mathematical models for secondary dendrite arm isothermal coaening kinetics are developed for multicomponent. alloys on the basis of four physical models previously proposed. Calculations based on these models show qualitive agreement with experiment conducted by Nobuy-uki Moriet on Al-Cu-Si, Al-Cu-Fe and Al-Cu-Mn alloys. It shows that the increasing of solute contents favors the thinning of secondary dendrite arms under the condition that the local solidification times are kept constant for multicomponent alloys during solidification processing.
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