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高真空压铸AlSi10MnMgFe合金的组织和力学性能 被引量:21

Microstructure and Mechanical Properties of High Vacuum Die Casting AlSi10MnMgFe Alloy
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摘要 借助于平板压铸件,研究了T1、T5、T6热处理对高真空压铸AlSi10MnMgFe合金的微观组织和力学性能的影响。结果表明,高真空压铸件组织致密,性能优于普通压铸件。170℃×8h时效处理后压铸件的抗拉强度达到351.3MPa,高于铸态,伸长率为3.5%,比铸态有所下降。T5、T6热处理可以改善压铸件的组织。T5热处理后试样的伸长率达到8.3%,明显高于铸态;而T6热处理后,压铸件的抗拉强度、屈服强度、伸长率和硬度(HB)分别达到358.4 MPa、286.6 MPa、6.1%、110.4,均高于铸态。 Effects of heat treatment, such as artificial aging (T1), T5, Tg, on mierostructure and me- chanical properties of high vacuum die casting A1Si10MnMgFe alloy plates were investigated. The results indicate that high vacuum die casting specimens exhibit sound structure and a better mechanical properties compared with conventional die castings. After artificial aging at 170℃ for 8 hours, the ten- sile strength and the elongation of the high vacuum die casting specimens reach 351.3 MPa and 3.5%, respectively, which is the higher and lower those of the as-cast specimens, respectively. In addition, mechanical properties of the specimens produced are improved after T5 and T6 heat treatment. After T5 heat treatment, the elongation of the high vacuum die casting specimens is increased to 8.3 %, obviously superior to that of as-cast ones. The tensile strength , yield strength, elongation and hardness of the T6 specimens reach 358.4 MPa,286.6 MPa,6.1% and 110.4, respectively.
出处 《特种铸造及有色合金》 CAS CSCD 北大核心 2014年第5期499-503,共5页 Special Casting & Nonferrous Alloys
基金 广东省教育部产学研结合重大专项资助项目(2012A090300016)
关键词 高真空压铸 AlSi10MnMgFe合金 热处理 力学性能 High Vacuum Die Casting, AISil0MnMgFe Alloy, Heat Treatment, Mechanical Property
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参考文献15

  • 1万里,林海,刘后尧,陈国强,冯佳雄,吴湛方,杨林方,吴树森.真空压铸用真空阀及真空控制装置的开发[J].特种铸造及有色合金,2011,31(3):222-225. 被引量:16
  • 2万里,潘欢,罗吉荣.高真空压铸技术及高强韧压铸铝合金开发和应用的现状及前景[J].特种铸造及有色合金,2007,27(12):939-942. 被引量:58
  • 3ZHANG X Z, AHMMED K Z, WANG M,et al. Influence of agingtemperatures and times on mechanical properties of vacuum highpressure die cast aluminum Alloy A356 [J]. Advanced MaterialsResearch, 2012,445-.277-282.
  • 4NIU X P, HU BH, PINWILL I,et al. Vacuum assisted high pres-sure die casting of aluminium alloys[J], Journal of Materials Pro-cessing Technology .2000,105-119-127.
  • 5WONCINA M,MEDVED J , MRVAR P. Thermal analysis of Al-SilOMg alloy[J]. Materials and Geoenvironment, 2006,52 (3):621-633.
  • 6万里,林海,何伟,吴树森.压铸用高真空控制系统的开发与应用[J].特种铸造及有色合金,2010,30(7):633-635. 被引量:21
  • 7LU S Z, HELLAWELL A. Growth mechanism of silicon in Al-Sialloy[J]. Journal of Crystal Growth, 1985,73(2) : 316-328.
  • 8韩延峰,刘相法,杨志强,边秀房.压力铸造对Al-Si-Cu合金组织的影响[J].铸造,2001,50(4):183-186. 被引量:27
  • 9EMMA S,SALEM S. The heat treatment of Al-Si-Cu-Mg castingalloys[J]. Journal of Materials Processing Technology, 2010,210: 1 249-1 259.
  • 10KASHYAP K T, MURALI S, RAMAN K S S, et al. Castingand heat treatment variables of Al-7Si-Mg alloy [J]. Mater. Sci.Technology, 1993,9(3) : 189-203.

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