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Microstructure and properties of rheo-HPDC Al-8Si alloy prepared by air-cooled stirring rod process 被引量:5
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作者 Ming-fan QI Yong-lin KANG Guo-ming ZHU 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2017年第9期1939-1946,共8页
A new and effective semisolid slurry preparation process with air-cooled stirring rod(ACSR)is reported,in which the compressed air is constantly injected into the inner cavity of a stirring rod to cool the melt.The sl... A new and effective semisolid slurry preparation process with air-cooled stirring rod(ACSR)is reported,in which the compressed air is constantly injected into the inner cavity of a stirring rod to cool the melt.The slurry of a newly developed high thermal conductivity Al?8Si alloy was prepared,and thin-wall heat dissipation shells were produced by the ACSR process combined with a HPDC machine.The effects of the air flow on the morphology ofα1-Al particles,mechanical properties and thermal conductivity of rheo-HPDC samples were studied.The results show that the excellent slurry of the alloy could be obtained with the air flow exceeding3L/s.Rheo-HPDC samples that were produced with the air flow of5L/s had the maximum UTS,YS,elongation,hardness and thermal conductivity of261MPa,124MPa,4.9%,HV99and153W/(m·K),respectively.Rheo-HPDC samples show improved properties compared to those formed by HPDC,and the increasing rates of UTS,YS,elongation,hardness and thermal conductivity were20%,15%,88%,13%and10%,respectively. 展开更多
关键词 rheo-hpdc Al.8Si alloy air-cooled stirring rod microstructure mechanical properties thermal conductivity
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大体积流变浆料制备与压铸成形一体化工艺及其应用 被引量:4
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作者 祁明凡 李静媛 +4 位作者 康永林 李谷南 王继成 刘爱森 陈俊臣 《精密成形工程》 2020年第3期12-19,共8页
目的研究气体流量对ACSR流变压铸Al-Si-Fe合金组织的影响,同时研究与对比流变压铸与传统压铸合金的组织性能。方法通过改变气体流量制备流变压铸Al-Si-Fe合金,采用光学显微镜、扫描电子显微镜、电子探针、万能试验机等研究了合金的微观... 目的研究气体流量对ACSR流变压铸Al-Si-Fe合金组织的影响,同时研究与对比流变压铸与传统压铸合金的组织性能。方法通过改变气体流量制备流变压铸Al-Si-Fe合金,采用光学显微镜、扫描电子显微镜、电子探针、万能试验机等研究了合金的微观组织与拉伸性能。结果随着气体流量由0提高至6 L/s,流变压铸合金中α1-Al平均尺寸由35.6μm下降到23.9μm,形状因子由0.71上升到0.82;与传统压铸合金相比,流变压铸合金的抗拉强度和伸长率分别提高了15%和75%。结论 ACSR流变压铸工艺可以制备出组织细小圆整且力学性能高的铸件。 展开更多
关键词 大体积流变浆料 流变压铸 AL-SI-FE合金 气冷搅拌棒 力学性能
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