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Numerical Simulation of Microstructure Refinement of Al-Cu-Mg-Ag Alloy During Solidification
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作者 ZHU Shiqing ZHANG Hong CHEN Linghao 《材料科学与工程学报》 北大核心 2025年第4期513-519,524,共8页
Al-Cu-Mg-Ag alloys have become a research hotspot because of its good heat resistance.Its excellent mechanical properties are inseparable from the regulation of the structure by researchers.The method of material stru... Al-Cu-Mg-Ag alloys have become a research hotspot because of its good heat resistance.Its excellent mechanical properties are inseparable from the regulation of the structure by researchers.The method of material structure simulation has become more and more perfect.This study employs numerical simulation to investigate the microstructure evolution of Al-Cu-Mg-Ag alloys during solidification with the aim of controlling its structure.The size distribution of Ti-containing particles in an Al-Ti-B master alloy was characterized via microstructure observation,serving as a basis for optimizing the nucleation density parameters for particles of varying radii in the phase field model.The addition of refiner inhibited the growth of dendrites and no longer produced coarse dendrites.With the increase of refiner,the grains gradually tended to form cellular morphology.The refined grains were about 100μm in size.Experimental validation of the simulated as-cast grain morphology was conducted.The samples were observed by metallographic microscope and scanning electron microscope.The addition of refiner had a significant effect on the refinement of the alloy,and the average grain size after refinement was also about 100μm.At the same time,the XRD phase identification of the alloy was carried out.The observation of the microstructure morphology under the scanning electron microscope showed that the precipitated phase was mainly concentrated on the grain boundary.The Al_(2)Cu accounted for about 5%,and the matrix phase FCC accounted for about 95%,which also corresponded well with the simulation results. 展开更多
关键词 Al-Cu-Mg-Ag alloy Phase field simulation Dendrite refinement Phase diagram calculation
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Progress in the Application of Cellular Automata to the Evolution of Solidified Microstructure
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作者 WEI Pengfei CHEN Yunbo +5 位作者 WEI Shizhong MAO Feng WANG Xiaodong CHEN Chong WANG Jinnan WANG Zidong 《材料导报》 北大核心 2025年第12期196-213,共18页
The performance of a material is directly affected by its microstructural development during the solidification phase. Discrete cellular automaton (CA) models are widelyused in materials science to simulate and predic... The performance of a material is directly affected by its microstructural development during the solidification phase. Discrete cellular automaton (CA) models are widelyused in materials science to simulate and predict microstructural growth. This review comprehensively explains the developments and applications of CA in solidification structure simulation, including the theoretical underpinnings, computational procedures, software development, and recent advances. Summarizes the potential and limitations of cellular automata in understanding microstructure evolution during solidification, explores the evolution of microstructures during solidification, and adds to our existing knowledge of cellular automaton theory. Finally, the research trend in simulating the evolution of the solidification microstructure using cellular automaton theory is explored. 展开更多
关键词 cellular automata dendritic growth SIMULATION microstructure evolution SOLIDIFICATION
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稀土元素La、Ce含量对Cu-0.4Cr-0.2Zr-0.15Mg合金组织和性能的影响 被引量:19
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作者 钟江伟 张鸿 陈彦旭 《中国有色金属学报》 EI CAS CSCD 北大核心 2016年第5期1092-1099,共8页
采用真空感应熔炼技术得到Cu-0.4Cr-0.2Zr-0.15Mg-RE铸锭,通过金相显微镜观察加入不同含量稀土的金相组织,采用SEM观察组织形貌并对合金组织进行EDXS能谱分析,最后测试铜合金的力学性能和导电性能。结果表明:加入La和Ce后,合金晶粒细化... 采用真空感应熔炼技术得到Cu-0.4Cr-0.2Zr-0.15Mg-RE铸锭,通过金相显微镜观察加入不同含量稀土的金相组织,采用SEM观察组织形貌并对合金组织进行EDXS能谱分析,最后测试铜合金的力学性能和导电性能。结果表明:加入La和Ce后,合金晶粒细化,组织均匀致密,Cr、Mg析出相在基体中的分布由条状、带状转变为点状、细块状。稀土元素主要分布在晶界处,加入稀土元素后,合金的抗拉强度有大幅度的提高,分别加入0.10%的La和0.10%的Ce后,合金的峰值强度分别为250.13 MPa和259.32 MPa,相比于不加稀土的212.34 MPa,分别提高了17.80%、22.13%;加入0.15%稀土元素La和Ce后,合金的导电率则随着稀土元素含量的增加呈单调增加,且La对铜合金导电性能的提高作用优于Ce的,但两者相差微小。因此,从提高合金综合性能方面考虑,加入0.10%的Ce是最佳选择。 展开更多
关键词 Cu-0.4Cr-0.2Zr-0.15Mg-RE 显微组织 元素分布 稀土 LA CE 力学性能
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