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Process Optimization for AZ91 Mg-alloy Low-pressure EPC Process 被引量:2

Process Optimization for AZ91 Mg-alloy Low-pressure EPC Process
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摘要 The influence of a key process variable on the mold filling characteristics of AZ91 Mg-alloy was studied in the low pressure EPC process.The applied flow quantity of insert gas from 1 to 5 m~3/h associated with the pressurizing rate in the low pressure EPC casting process was considered for rectangle and L-shape plate casting. The experimental results show that there is an optimal flow quantity of insert gas for good mold filling characteristics in AZ91 Mg-alloy low-pressure EPC process. The optimal flow quantity of insert gas for the specimens is 3 to 4 m~3/h. Either less or higher than the optimal flow quantity of insert gas would lead to misrun defects or folds, blisters and porosity defects. The practice of hub casting confirmed that the low-pressure EPC process with an optimal processing variable exemplified as 4 m~3/h gas flow quantity was capable of producing complicated magnesium castings without misrun defects. The influence of a key process variable on the mold filling characteristics of AZ91 Mg-alloy was studied in the low pressure EPC process.The applied flow quantity of insert gas from 1 to 5 m^3/h associated with the pressurizing rate in the low pressure EPC casting process was considered for rectangle and L-shape plate casting. The experimental results show that there is an optimal flow quantity of insert gas for good mold filling characteristics in AZ91 Mg-alloy low-pressure EPC process. The optimal flow quantity of insert gas for the specimens is 3 to 4 m^3/h. Either less or higher than the optimal flow quantity of insert gas would lead to misrun defects or folds, blisters and porosity defects. The practice of hub casting confirmed that the low-pressure EPC process with an optimal processing variable exemplified as 4 m^3/h gas flow quantity was capable of producing complicated magnesium castings without misrun defects.
作者 吴和保
出处 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2005年第2期42-44,共3页 武汉理工大学学报(材料科学英文版)
基金 FundedbytheNationalNaturalScienceFoundationofChina(No.50275058)
关键词 magnesium alloy low-pressure casting expandable pattern casting process optimization magnesium alloy low-pressure casting expandable pattern casting process optimization
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  • 1H Fridrich and S Schumann.Research for a New Age of Magnesium in the Automotive Industry.J. Meter[].Proc Technol.2001 被引量:1
  • 2J Thomson,F A Fasoyinu.Casting Characteristics of Permanent Mold Cast Mg-alloy AZ91E[].AFS Transactions.2002 被引量:1
  • 3AFS Magnesium Lost Foam Casting Committee.Genesis of a New Process: Magnesium Lost Foam Casting[].Modern Casting.2003 被引量:1
  • 4E N Pan,K Y Liao.Study on the Filling Behavior of the Evaporative Pattern Casting A356 Alloy[].AFS Transactions.1998 被引量:1
  • 5B L Mordike,T Ebert.Magnesium Properties, Application and Potential[].Journal of Materials Science. 被引量:1
  • 6R B Brown.International Magnesium Association 55th Annual World Conference[].Light Metal Age.1988 被引量:1
  • 7Anon.Metals Handbook, 10th ed[].ASM International Handbook Committee ASM International Materials Park OH.1990 被引量:1
  • 8J Campbell.The Concept of Net Shape for Casting[].Materials and Design.2000 被引量:1
  • 9S Shivkumar.The Lost-foam Casting of Aluminum Alloy Components[].Journal of Occupational Medicine. 被引量:1
  • 10M A Tschopp.Fluidity of Aluminum A356 in the Lost Foam Casting Process[].AFS Transactions.2002 被引量:1

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