Proposal of Novel Friction Testing Method in Bulk Metal Forming

체적성형공정에서의 새로운 마찰시험법 제안

  • 강성훈 (한국기계연구원 부설 재료연구소 융합공정연구본부) ;
  • 윤여웅 (한국기계연구원 부설 재료연구소 산업기술지원본부) ;
  • 이영선 (한국기계연구원 부설 재료연구소 융합공정연구본부)
  • Published : 2009.05.07

Abstract

With the recent increase in the demand for the net-shape forming, numerical simulations are being commonly adopted to increase the efficiency and effectiveness of design of bulk metal forming processes. Proper consideration of tribological problems at the contact interface between the tool and workpiece is crucial in such simulations. In other words, lubrication and friction play important roles in metal forming by influencing the metal flow, forming load and die wear. In order to quantitatively estimate such friction condition or lubricant characteristic, the constant shear friction model is widely used for bulk deformation analyses. For this, new friction testing method based on the forward or backward extrusion process is proposed to predict the shear friction factor in this work. In this method, the tube-shaped punch pressurizes the workpiece so that the heights at the center and outer of punch (or mandrel) become different according to the friction condition. That is, the height at the center of punch is higher than that at the outer of the punch when the friction condition at the contact interface is severe. From this founding, the proposed friction testing method can be applied to effectively evaluate the friction condition in bulk metal forming processes.

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