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Experimental investigation and optimization of the semisolid multicavity squeeze casting process for wrought aluminum alloy scroll

  • Yi Guo
  • , Yongfei Wang
  • , Shengdun Zhao
  • Xi'an Jiaotong University
  • Zhejiang University
  • Huazhong University of Science and Technology

Research output: Contribution to journalArticlepeer-review

11 Scopus citations

Abstract

Scroll compressors are popularly applied in air-conditioning systems. The conventional fabrication process causes gas and shrinkage porosity in the scroll. In this paper, the electromagnetic stirring (EMS)-based semisolid multicavity squeeze casting (SMSC) process is proposed for effectively manufacturing wrought aluminum alloy scrolls. Insulation temperature, squeeze pressure, and the treatment of the micromorphology and mechanical properties of the scroll were investigated experimentally. It was found that reducing the insulation temperature can decrease the grain size, increase the shape factor, and improve mechanical properties. The minimum grain size was found as 111 ± 3 µm at the insulation temperature of 595C. The maximum tensile strength, yield strength, and hardness were observed as 386 ± 8 MPa, 228 ± 5 MPa, and 117 ± 5 HV, respectively, at the squeeze pressure of 100 MPa. The tensile strength and hardness of the scroll could be improved, and the elongation was reduced by the T6 heat treatment. The optimal process parameters are recommended at an insulation temperature in the range of 595–600C and a squeeze pressure of 100 MPa. Under the optimal process parameters, scroll casting was completely filled, and there was no obvious shrinkage defect observed inside. Its microstructure is composed of fine and spherical grains.

Original languageEnglish
Article number5278
Pages (from-to)1-15
Number of pages15
JournalMaterials
Volume13
Issue number22
DOIs
StatePublished - 2 Nov 2020

Keywords

  • Mechanical property
  • Microstructure
  • Scroll compressor
  • Semisolid forming process
  • Wrought aluminum alloy

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