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Effects of grain refining and modification on mechanical properties and microstructures of Al-7.5Si-4Cu cast alloy 被引量:3
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作者 刘光磊 司乃潮 +1 位作者 孙少纯 吴勤方 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2014年第4期946-953,共8页
Al-7.5Si-4Cu cast alloy melt modified by Al-5Ti-B, RE and Al-10Sr master alloys were poured in the chromite sand moulds, to investigate comparatively the effects of individual or combined additions of grain refiners a... Al-7.5Si-4Cu cast alloy melt modified by Al-5Ti-B, RE and Al-10Sr master alloys were poured in the chromite sand moulds, to investigate comparatively the effects of individual or combined additions of grain refiners and modifiers on the mechanical properties, microstructures, grain refining and modification, and intermetallic compounds of the alloy. The results show that the mechanical properties and the microstructures of Al-7.5Si-4Cu cast alloys are improved immensely by combining addition of 0.8%Al-5Ti-B, 0.1%RE and 0.1%Al-10Sr grain refiners and modifiers compared with the individual addition and cast conditions. For individual addition condition, addition of 0.8%Al-5Ti-B master alloy can obtain superior tensile strength, Brinell hardness and finer equiaxedα(Al) dendrites. The alloy with 0.1%RE master alloy shows the highest improvement in ductility because the rare earth can purify the molten metal and change the shape of intermetallic compounds. While the alloy with 0.1%Al-10Sr modifier shows only good improvement in yield strength, and the improvement of other performance is unsatisfactory. The Al-10Sr modifier has a significant metamorphism for the eutectic silicon, but will make the gas content in the aluminum alloy melt increase to form serious columnar grain structures. The effects of grain refining and modification on mean area and aspect ratio have the same conclusions obtained in the mechanical properties and the microstructures analyses. 展开更多
关键词 al-7.5si-4cu cast alloy grain refinement modification treatment mechanical properties MICROSTRUCTURES
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Efects of diferent casting mould cooling rates on microstructure and properties of sand-cast Al-7.5Si-4Cu alloy 被引量:1
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作者 Liu Guanglei Si Naichao +1 位作者 Sun Shaochun Wu Qinfang 《China Foundry》 SCIE CAS 2013年第6期396-400,共5页
In this work, AI-7.5Si-4Cu alloy melt modified by AI-10Sr, RE and AI-5-13-B master alloys was poured into multi-step moulds made from three moulding sands, including quartz, alumina and chromite, to investigate compar... In this work, AI-7.5Si-4Cu alloy melt modified by AI-10Sr, RE and AI-5-13-B master alloys was poured into multi-step moulds made from three moulding sands, including quartz, alumina and chromite, to investigate comparatively the effects of different cooling rates of the casting mould on the alloy's microstructures and mechanical properties. The results show that with an increase in wall thickness, the cooling rate decreases, the dendrite arm spacing (DAS) increases significantly and the mechanical properties decrease steadily. The elongation is more sensitive to the cooling rate than the tensile strength. No obvious trend of the effect of wall thickness on hardness of the alloy was found. When the cooling rate is at its greatest, the microstructures and mechanical properties are the best when using chromite sand. The improvement of the properties is mainly attributed to the decrease of the DAS, the grain refinement and the metamorphic effect. Each of the three has a strong impact on the microstructures. Furthermore, a series of fitting models was established based on the data of the DAS to predict the mechanical properties of the multivariate sand-cast AI-7.5Si-4Cu alloy, 展开更多
关键词 al-7.5si-4cu alloy cooling rate properties and microstructure fitting analysis
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多元Al-7.5Si-4Cu合金热疲劳裂纹萌生与扩展行为的研究 被引量:6
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作者 刘光磊 司乃潮 +2 位作者 孙少纯 张志坚 吴勤方 《金属学报》 SCIE EI CAS CSCD 北大核心 2013年第3期303-310,共8页
研究了不同热处理状态的多元Al-7.5Si-4Cu合金在室温至350℃下的热疲劳行为,利用OM和SEM对合金的热疲劳裂纹形貌进行了观察.结果表明:T6处理后多元Al-7.5Si-4Cu合金的热疲劳性能优于铸淬+时效态和铸态.热疲劳裂纹均萌生于V型缺口处,热... 研究了不同热处理状态的多元Al-7.5Si-4Cu合金在室温至350℃下的热疲劳行为,利用OM和SEM对合金的热疲劳裂纹形貌进行了观察.结果表明:T6处理后多元Al-7.5Si-4Cu合金的热疲劳性能优于铸淬+时效态和铸态.热疲劳裂纹均萌生于V型缺口处,热应力诱导使组织氧化疏松最终成为裂纹萌生源.裂纹扩展前期为沿晶生长,主要靠裂尖钝化尖锐化引起裂纹扩展;裂纹扩展后期为沿晶、穿晶混合生长,以裂尖钝化-尖锐化和裂尖前沿空洞连体复合方式扩展.扩展行径受Si相的形状和位向影响,与Si相短轴方向夹角大于60°为"绕墙"扩展;与长轴方向夹角大于60°为"穿墙"扩展.氧化作用在裂纹萌生期表现显著,T6态合金抗氧化性能最优. 展开更多
关键词 多元al-7 5si-4cu 热疲劳 萌生 扩展行径 氧化
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热疲劳环境下多元Al-7.5Si-4Cu合金的裂纹萌生扩展 被引量:1
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作者 陈立佳 《铸造技术》 CAS 北大核心 2015年第8期1955-1958,共4页
研究了多元Al-7.5Si-4Cu合金在不同热处理状态下的热疲劳性能。结果表明,与铸态试样和淬火+时效热处理试样相比,T6态试样的力学性能最好,微观组织均匀,热疲劳性能最优良。当热循环次数≥10 000时,T6状态与淬火+时效试样由于Si相和A12Cu... 研究了多元Al-7.5Si-4Cu合金在不同热处理状态下的热疲劳性能。结果表明,与铸态试样和淬火+时效热处理试样相比,T6态试样的力学性能最好,微观组织均匀,热疲劳性能最优良。当热循环次数≥10 000时,T6状态与淬火+时效试样由于Si相和A12Cu相的出现降低了裂纹扩展速率,铸态试样由于A12Cu相复熔球的存在导致裂纹扩展速率急剧上升。 展开更多
关键词 热疲劳 al-7.5si-4cu合金 裂纹萌生及扩展
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