摘要
利用开发的低转速输送管控制浇注工艺制备了A35 6合金半固态组织 ,从不同浇注温度、不同转动速度下晶核的来源和不同结晶器冷却强度下游离晶演变的 2个角度 ,结合凝固微观组织模拟技术分析了非枝晶组织的形成与演变规律。结果表明 :适当的低温浇注和输送管转速可极大地提高有效形核数目 ,降低熔体的冷却强度有利于初生相呈球形生长 ;晶粒周围溶质扩散层的叠加影响着液 /固界面处引起界面失稳的浓度梯度 。
Semi-solid slurry of A356 alloy was produced by a controlled pouring process with a rotating duct. Nucleation behavior and morphology evolution of primary phase under different pouring temperatures were investigated. Rotating speeds of the duct and cooling intensity of crucible were studied. The formation of non-dendrite was analyzed through experiments and microstructure simulation technique. The results show that appropriate combination between pouring temperature and rotating speed of duct can significantly improve effective nucleation rate, decreasing the cooling intensity of the melt metal can give rise to a transition of the growth morphology from dendritic to rosette and to spheroid. Results from simulations indicate that the overlapping diffusion fields from adjacent growing crystals can influence the morphology of crystal by influencing the concentration gradients that can cause instabilities at solid/liquid interface.
出处
《中国有色金属学报》
EI
CAS
CSCD
北大核心
2004年第12期2049-2054,共6页
The Chinese Journal of Nonferrous Metals
基金
南昌大学基础理论基金资助项目 (ncuj 14 )
江西省教育厅科技基金资助项目
江西省自然科学基金资助项目 ( 0 45 0 0 5 0 )
关键词
浆料制备
控制浇注
非枝晶
微观组织模拟
slurry preparation
controlled pouring
non-dendrite
microstructure simulation