期刊文献+

Phase Behaviors in Bi-phase Simulation of Powder Segregation in Metal Injection Molding 被引量:1

Phase Behaviors in Bi-phase Simulation of Powder Segregation in Metal Injection Molding
在线阅读 下载PDF
导出
摘要 Powder segregation induced by mold filling is an important phenomenon that affects the final quality of metal injection molding (MIM). The prediction of segregation in MIM requires a bi-phase flow model to describe distinctly the flows of metallic powder and polymer binder. Viscous behaviors for the flows of each phase should hence be determined. The coefficient of interaction between the flows of two phases should also be evaluated. However, only viscosity of the mixed feedstock is measurable by capillary tests. Wall sticking is supposed in the traditional model for capillary tests, while the wall slip is important to be taken into account in MIM injection. Objective of the present paper is to introduce the slip effect in bi-phase simulation, and search the suitable way to determine the viscous behaviors for each phase with the consideration of wall slip in capillary tests. Analytical and numerical methods were proposed to realize such a specific purpose. The proposed method is based on the mass conservation between the capillary flows in mono-phase model for the mixed feedstock and in bi-phase model for the flows of two phases. Examples of the bi-phase simulation in MIM were realized with the software developed by research team. The results show evident segregation, which is valuable for improving the mould designs. Powder segregation induced by mold filling is an important phenomenon that affects the final quality of metal injection molding (MIM). The prediction of segregation in MIM requires a bi-phase flow model to describe distinctly the flows of metallic powder and polymer binder. Viscous behaviors for the flows of each phase should hence be determined. The coefficient of interaction between the flows of two phases should also be evaluated. However, only viscosity of the mixed feedstock is measurable by capillary tests. Wall sticking is supposed in the traditional model for capillary tests, while the wall slip is important to be taken into account in MIM injection. Objective of the present paper is to introduce the slip effect in bi-phase simulation, and search the suitable way to determine the viscous behaviors for each phase with the consideration of wall slip in capillary tests. Analytical and numerical methods were proposed to realize such a specific purpose. The proposed method is based on the mass conservation between the capillary flows in mono-phase model for the mixed feedstock and in bi-phase model for the flows of two phases. Examples of the bi-phase simulation in MIM were realized with the software developed by research team. The results show evident segregation, which is valuable for improving the mould designs.
出处 《Journal of Southwest Jiaotong University(English Edition)》 2006年第4期363-371,共9页 西南交通大学学报(英文版)
基金 Specialized Research Fund for the Doc-toral Program of Higher Education (No.20020613005)
关键词 Viscous behaviors Bi-phases simulation Powder segregation Metal injection molding Wall slip Viscous behaviors Bi-phases simulation Powder segregation Metal injection molding Wall slip
  • 相关文献

参考文献1

二级参考文献1

  • 1LanteriB .BurletH .PoitouA .etal.Simulationofpowderinjectionmouldingusingthemixturetheory,Mathematicalmodellingformaterialsprocessing,Ed.byMarkCross,PittmanJ .F .T .WoodR[].Oxford.1993

共引文献2

同被引文献2

引证文献1

二级引证文献3

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部