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Microstructure and properties of high silicon aluminum alloy with 2% Fe prepared by rheo-casting 被引量:6

Microstructure and properties of high silicon aluminum alloy with 2% Fe prepared by rheo-casting
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摘要 The morphology changes of both Fe-containing intermetallic compounds and the primary Si phase of Al-20Si-2Fe- 2Cu-0.4Mg-1.0Ni-0.5Mn (mass fraction, %) alloy produced by semi-solid rheo-diecasting were studied. The semi-solid slurry of high silicon aluminum alloy was prepared by direct ultrasonic vibration (DUV) which was imposed on the alloy near the liquidus temperature for about 2 rain. Then, standard test samples of 6.4 mm in diameter were formed by semi-solid rheo-diecasting. The results show that the DUV treatment suppresses the formation of needle-like ,β-Al5(Fe,Mn)Si phase, and the Fe-containing intermetallic compounds exist in the form of fine Al4(Fe, Mn)Si2 particles. Additionally, the primary Si grows up as fine and round particles with uniform distribution in α(Al) matrix of this alloy under DUV treatment. The tensile strengths of the samples at the room temperature and 573 K are 230 MPa and 145 MPa, respectively. The coefficient of thermal expansion (CTE) between 25 ℃ and 300 ℃ is 16.052 8×10^-6 ℃^-1, and the wear rate is 1.55%. The hardness of this alloy with 2% Fe reaches HB146.3. It is discovered that modified morphology and uniform distribution of the Fe-containing intermetallic compounds and the primary Si phase are the main reasons for reducing the CTE and increasing the wear resistance of this alloy. The morphology changes of both Fe-containing intermetallic compounds and the primary Si phase of Al-20Si-2Fe-2Cu-0.4Mg-1.0Ni-0.5Mn (mass fraction, %) alloy produced by semi-solid rheo-diecasting were studied.The semi-solid slurry of high silicon aluminum alloy was prepared by direct ultrasonic vibration (DUV) which was imposed on the alloy near the liquidus temperature for about 2 min.Then, standard test samples of 6.4 mm in diameter were formed by semi-solid rheo-diecasting.The results show that the DUV treatment suppresses the formation of needle-like β-Al5(Fe,Mn)Si phase, and the Fe-containing intermetallic compounds exist in the form of fine Al4(Fe, Mn)Si2 particles.Additionally, the primary Si grows up as fine and round particles with uniform distribution in α(Al) matrix of this alloy under DUV treatment.The tensile strengths of the samples at the room temperature and 573 K are 230 MPa and 145 MPa, respectively.The coefficient of thermal expansion (CTE) between 25 °C and 300 °C is 16.052 8×10-6 °C-1, and the wear rate is 1.55%.The hardness of this alloy with 2% Fe reaches HB146.3.It is discovered that modified morphology and uniform distribution of the Fe-containing intermetallic compounds and the primary Si phase are the main reasons for reducing the CTE and increasing the wear resistance of this alloy.
出处 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2010年第9期1603-1607,共5页 中国有色金属学报(英文版)
基金 Project(2007AA03Z557) supported by the National High-tech Research and Development Program of China Project(50775086) supported by the National Natural Science Foundation of China
关键词 high silicon aluminum alloy ultrasonic vibration rheo-casting rnicrostructure mechanical properties 高硅铝合金 合金性能 含铁 流变铸造 金属间化合物 低热膨胀系数 编写 密度泛函理论
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  • 1WEI Wei,CHEN Guang,WANG Jingtao,CHEN Guoliang.Microstructure and tensile properties of ultrafine grained copper processed by equal-channel angular pressing[J].Rare Metals,2006,25(6):697-703. 被引量:4
  • 2Flemings M C. Metall Trans, 1991; 22A: 957
  • 3Kirkwood D K. Int Mater Rev, 1994:173
  • 4Abramov V, Abramov O, Bulgakov V, Sommer F. Mater Lett, 1998; 37:27
  • 5Jian X, Xu H, Meek T T, Han Q. Mater Lett, 2005; 59: 190
  • 6Abdel-Rehim M, Reif W. Metallurgie, 1984; 38:131
  • 7Abramov O V. High-Intensity Ultrasonics: Theory and Industrial Applications. Amsterdam: Gordon and Breach Science Publishers, 1998:320
  • 8Eskin G I. Ultrasonic Treatment of Light Alloy Melts. Amsterdam: Gordon and Breach Science Publishers, 1998: 135
  • 9Campbell J. Int Met Rev, 1981; 26:71
  • 10Kapustina O A. The Physical Principles of Ultrasonic Manufacturing. Moscow: Nauka, 1970:45

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