Micropin head geometry significantly influences surface contact and electrical conductivity. In this paper, the preforming process of extrusion is investigated to establish it as a viable process for microforming. Here, the numerical simulations using DEFORM-3D software are used to examine the effect of preformance and pin shape on the extrusion of microbrass pins with a minimum diameter of 0.88 mm under several design parameters. These parameters are planned with the Taguchi method and help to discover better conditions for the minimum extrusion loads. For obtaining the required parameters to enable the finite element software, a compression test is first performed to determine the true stress and true strain curve of the materials. The result acquired from the experiment is compared with the simulation outcome and verified the accuracy. The consequences show that the optimal microextrusion forming conditions appear on stage rod length 0.015 mm, extruding angle 60°, upper front-end taper 60°, and bottom stage angle 60° to minimalize the forming load, and the dimensions of the deformed micropin reveal a good identification with the simulation. The study hence shows a potential tool for the combination of Taguchi method and finite element software to analyze the microforming process in the fastener industry.
[1]
Liang-An Zheng,et al.
Processing animation simulation and FEM analysis of multi-stage cold forging of stainless automotive battery fastener
,
2013
.
[2]
Horacio Dante Espinosa,et al.
Study of the size effects and friction conditions in microextrusion - Part II: Size effect in dynamic friction for brass-steel pairs
,
2007
.
[3]
Forming characteristics of AZ31B magnesium alloy in bidirectional extrusion process
,
2008
.
[4]
Chun-Yin Wu,et al.
The influence of die shape on the flow deformation of extrusion forging
,
2002
.
[5]
Jyhwen Wang,et al.
An experimental study on size effects on flow stress and formability of aluminm and brass for microforming
,
2007
.
[6]
Jian Cao,et al.
Microforming: Experimental Investigation of the Extrusion Process for Micropins and its Numerical Simulation Using RKEM
,
2004
.
[7]
Chengliang Hu,et al.
Study on a new technological scheme for cold forging of spur gears
,
2007
.