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Continuous squeeze casting process by mass production

Continuous squeeze casting process by mass production
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摘要 Squeeze casting has become the most competitive casting process in the automotive industry because of its many advantages over high pressure die casting (HPDC). Many squeeze casting R & D and small amount volume making have been implemented around the world, but the mass production control still exists problem. SPX Contech squeeze casting process P2000 successfully achieved the goal of mass production; it includes lower metal turbulence, less gas entrapment, minimum volumetric shrinkage, and thus less porosity. Like other casting processes, however, the quality of squeeze castings is still sensitive to process control and gate and runner design. Casting defects can form in both die-filling and metal solidification phases. The occurrence of casting defects is directly attributed to improper adjustment or lack of control of process parameters including metal filling velocity, temperature, dwell time, cooling pattern, casting design, and etc. This paper presents examples using P2000 techniques to improve part quality in the following areas: runner & gate design, casting & runner layout in the die, squeeze pin application, high thermal conductivity inserts, cooling/heating systems, spray & lubricant techniques, and part stress calculation from shrinkage or displacement prediction after stress relief. Squeeze casting has become the most competitive casting process in the automotive industry because of its many advantages over high pressure die casting (HPDC). Many squeeze casting R & D and small amount volume making have been implemented around the world, but the mass production control still exists problem. SPX Contech squeeze casting process P2000 successfully achieved the goal of mass production; it includes lower metal turbulence, less gas entrapment, minimum volumetric shrinkage, and thus less porosity. Like other casting processes, however, the quality of squeeze castings is still sensitive to process control and gate and runner design. Casting defects can form in both die-filling and metal solidification phases. The occurrence of casting defects is directly attributed to improper adjustment or lack of control of process parameters including metal filling velocity, temperature, dwell time, cooling pattern, casting design, and etc. This paper presents examples using P2000 techniques to improve part quality in the following areas: runner & gate design, casting & runner layout in the die, squeeze pin application, high thermal conductivity inserts, cooling/heating systems, spray & lubricant techniques, and part stress calculation from shrinkage or displacement prediction after stress relief.
作者 Rich Jacques
机构地区 SPX Contech
出处 《China Foundry》 SCIE CAS 2006年第4期258-262,共5页 中国铸造(英文版)
关键词 SQUEEZE CASTING DIE CASTING CASTING PROCESS squeeze casting die casting casting process
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参考文献4

  • 1Xia Yun,Cincilla J,Mohley E.Optimized Fluid Flow Patternfor Automotive Lightweight Component Castings[].SAETechnical Paper.2004
  • 2Xia Yun et al.Several Techniques Applied in Squeeze CastingDefect Reduction[].NADCA.2003
  • 3Dasgupta B,Xia Yun.Squeeze Casting: Principles andApplications[].Die Casting Magazine.2004
  • 4Xia Yun et al.Thixo-Casting Flow Pattern Study and DefectPrediction[].NADCA.2003

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