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Thermal deformation of aluminum alloy casting materials for tire mold by numerical analysis 被引量:6

Thermal deformation of aluminum alloy casting materials for tire mold by numerical analysis
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摘要 Thermal deformation of aluminum alloy casting materials for manufacturing the tire mold was numerically investigated.The AC7A and AC4C casting material was selected as casting material and the metal casting device was used in order to manufacture the mold product of automobile tire in the actual industrial field.The temperature distribution and the cooling time of casting materials were numerically calculated by finite element analysis (FEA).Also,the thermal deformation such as displacement and stress distribution was calculated from the temperature results.The thermal deformation was closely related to the temperature difference between the surface and inside of the casting.The numerical analysis results reveal that the thermal deformation of AC7A casting material is higher than that of AC4C casting material.Also,the thermal deformation results at the central part are larger than that on the side of casting because of the shrinkage caused by the cooling speed difference. Thermal deformation of aluminum alloy casting materials for manufacturing the tire mold was numerically investigated.The AC7A and AC4C casting material was selected as casting material and the metal casting device was used in order to manufacture the mold product of automobile tire in the actual industrial field.The temperature distribution and the cooling time of casting materials were numerically calculated by finite element analysis (FEA).Also,the thermal deformation such as displacement and stress distribution was calculated from the temperature results.The thermal deformation was closely related to the temperature difference between the surface and inside of the casting.The numerical analysis results reveal that the thermal deformation of AC7A casting material is higher than that of AC4C casting material.Also,the thermal deformation results at the central part are larger than that on the side of casting because of the shrinkage caused by the cooling speed difference.
出处 《中国有色金属学会会刊:英文版》 CSCD 2012年第S3期859-863,共5页 Transactions of Nonferrous Metals Society of China
基金 Project supported by Research Funds from Chosun University(2009),Korea
关键词 thermal DEFORMATION FINITE ELEMENT analysis AC7A CASTING MATERIAL AC4C CASTING MATERIAL thermal deformation finite element analysis AC7A casting material AC4C casting material
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  • 1Pecker D,Bernstein I M.Handbood of stainless steels. . 1977 被引量:1
  • 2RAFIQUE M M A,IQBAL J.Modeling and simulation of heat transfer phenomena during investment casting. International Journal of Heat and Mass Transfer . 2009 被引量:1
  • 3S. M. H. Mirbagheri,H. Esmaeileian,S. Serajzadeh,N. Varahram,P. Davami.Simulation of melt flow in coated mould cavity in the casting process. Journal of Materials . 2003 被引量:1
  • 4MIRBAGHERI S M H,DADASHZADEH M,SERAJZADEH S,TAHERI A K,DAVAMI P.Modeling the effect of mould wall roughness on the melt flow simulation in casting process. Journal of Applied Mathematics . 2004 被引量:1
  • 5T.R. Vijayaram,S. Sulaiman,A.M.S. Hamouda,M.H.M. Ahmad.Numerical simulation of casting solidification in permanent metallic molds. Journal of Materials Processing Technology . 2006 被引量:1
  • 6Properties and Selection: Irons, Steel and High Performance Alloys . 1990 被引量:1
  • 7KIM G W,JUNG H S,CHO J R,YANG Y S.Finite element analysis in residual aligning torque and frictional energy of a tire with detailed tread blocks. Transactions of KSAE . 2004 被引量:1
  • 8OH Y K,YOON H S,YANG H D.A study on thermal deformation of AC4C aluminum alloy casting material for tire mold in metal casting method. International Journal of Modern Physics B . 2010 被引量:1
  • 9THOMAS B G,NAJJAR F M.Finite element modelling of turbulent fluid flow and heat transfer in continuous casting. Journal of Applied Mathematics . 1991 被引量:1
  • 10LIU X J,BHAVNANI S H,OVERFELT R A.Simulation of EPS foam decomposition in the lost foam casting process. Journal of Materials . 2007 被引量:1

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