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非规则共晶凝固理论研究的进展
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作者 贾志伟 张军 +2 位作者 崔春娟 刘林 傅恒志 《铸造》 CAS CSCD 北大核心 2008年第5期428-432,共5页
通过各国学者数十年的不懈努力,现已建立了比较完善的规则共晶凝固理论模型,人们对共晶间距的选择机制及其形态转变有了较深刻的理解。有关非规则共晶凝固理论的研究工作虽有许多,但这些模型仍极不完善。本文中,在综合评述规则共晶凝固... 通过各国学者数十年的不懈努力,现已建立了比较完善的规则共晶凝固理论模型,人们对共晶间距的选择机制及其形态转变有了较深刻的理解。有关非规则共晶凝固理论的研究工作虽有许多,但这些模型仍极不完善。本文中,在综合评述规则共晶凝固理论研究的基础上,着重阐述了近年来非规则共晶凝固理论的研究进展,提出了非规则共晶凝固理论研究的发展方向。 展开更多
关键词 共晶凝固理论 规则共晶 非规则共晶
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共晶合金凝固理论的研究进展
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作者 杨恬 许军锋 +1 位作者 李卓 坚增运 《铸造技术》 CAS 2020年第2期192-196,共5页
综述了近年来规则共晶和非规则反常共晶转变的理论和实验的研究进展。对于规则共晶的形成的研究已趋于成熟,建立了能较好预测实验结果的理论模型;对于非规则反常共晶的形成,目前已获得大量的实验数据,涵盖生长方式,生长速率,生长形态,... 综述了近年来规则共晶和非规则反常共晶转变的理论和实验的研究进展。对于规则共晶的形成的研究已趋于成熟,建立了能较好预测实验结果的理论模型;对于非规则反常共晶的形成,目前已获得大量的实验数据,涵盖生长方式,生长速率,生长形态,空间分布和组织粗化等行为,但在模型描述和预测仍不完善,形成机理仍存争议。然而,由于实际工业合金成分的复杂性,共晶凝固理论至今实际应用仍偏少。因而,如何通过实验和理论研究相结合,将共晶点成分理论松弛到整幅相图范围,二元合金凝固理论拓展到多元合金体系,将理论与最新技术条件相结合应用到工业生产中,仍是凝固理论研究的努力方向。 展开更多
关键词 规则共晶 非规则共晶 共晶转变
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A NUMERICAL MODEL OF LAMELLAR SPACING OF Al-Si EUTECTIC
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作者 W.Q. Zhang and L. Xiao School of Mechanical Engineering, Liaoning Technical University, Fuxin 123000, China 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2001年第4期291-295,共5页
A numerical model is established to simulate the concentration field in irregular lamel- lar eutectic of Al-Si system. Both the undercooling and spacing are dependent on the g... A numerical model is established to simulate the concentration field in irregular lamel- lar eutectic of Al-Si system. Both the undercooling and spacing are dependent on the growth rate and the temperature gradient, and increasing growth rate causes an in- crease of undercooling but a decrease of lamellar spacing, while increasing temperature gradient Leads to a decrease of Lamellar spacing. The computed results are in good agreement with experimental observations. 展开更多
关键词 irregular eutectic Lamellar spacing UNDERCOOLING growth rate
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Interlamellar spacing and average interface undercooling of irregular eutectic in steady-state growth
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作者 孟广慧 林鑫 黄卫东 《中国有色金属学会会刊:英文版》 EI CSCD 2008年第2期405-409,共5页
The average lamellar spacing and interface undercooling in steady-state irregular eutectic growth were estimated based on the Jackson and Hunt’s analysis by relaxing the isothermal interface assumption.At low growth ... The average lamellar spacing and interface undercooling in steady-state irregular eutectic growth were estimated based on the Jackson and Hunt’s analysis by relaxing the isothermal interface assumption.At low growth rates,the average lamellar spacing and average interface undercooling are dependent only on the characteristic thermo-physical properties of a binary eutectic system. For a general Al-Si eutectic,it is found that the eutectic characteristic length based on the present non-isothermal analysis is consistent with that obtained from isothermal analysis;however,the average interface undercooling is remarkably different between them,and such discrepancy in average interface undercooling increases with increasing of growth rate.The measured interface undercooling obtained from literature is reasonably interpreted by present non-isothermal analysis. 展开更多
关键词 冷却过程 层间距 分界面 共晶
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Modeling of aluminum-silicon irregular eutectic growth by cellular automaton model 被引量:3
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作者 Rui Chen Qing-yan Xu Bai-cheng Liu 《China Foundry》 SCIE 2016年第2期114-122,共9页
Due to the extensive application of Al-Si alloys in the automotive and aerospace industries as structural components, an understanding of their microstructural formation, such as dendrite and(Al+Si) eutectic, is of gr... Due to the extensive application of Al-Si alloys in the automotive and aerospace industries as structural components, an understanding of their microstructural formation, such as dendrite and(Al+Si) eutectic, is of great importance to control the desirable microstructure, so as to modify the performance of castings. Since previous major themes of microstructural simulation are dendrite and regular eutectic growth, few efforts have been paid to simulate the irregular eutectic growth. Therefore, a multiphase cellular automaton(CA) model is developed and applied to simulate the time-dependent Al-Si irregular eutectic growth. Prior to model establishment, related experiments were carried out to investigate the influence of cooling rate and Sr modification on the growth of eutectic Si. This CA model incorporates several aspects, including growth algorithms and nucleation criterion, to achieve the competitive and cooperative growth mechanism for nonfaceted-faceted Al-Si irregular eutectic. The growth kinetics considers thermal undercooling, constitutional undercooling, and curvature undercooling, as well as the anisotropic characteristic of eutectic Si growth. The capturing rule takes into account the effects of modification on the silicon growth behaviors.The simulated results indicate that for unmodified alloy, the higher eutectic undercooling results in the higher eutectic growth velocity, and a more refined eutectic microstructure as well as narrower eutectic lamellar spacing. For modified alloy, the eutectic silicon tends to be obvious fibrous morphology and the morphology of eutectic Si is determined by both chemical modifier and cooling rate. The predicted microstructure of Al-7Si alloy under different solidification conditions shows that this proposed model can successfully reproduce both dendrite and eutectic microstructures. 展开更多
关键词 Al-Si alloys irregular eutectic growth cellular automaton MODIFICATION numerical simulation
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