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   effect of process parameters on thermo-mechanical behavior of direct extrusion of aluminum alloy  
   
نویسنده dewang yogesh ,sharma vipin
منبع iranian journal of materials science and engineering - 2021 - دوره : 18 - شماره : 1 - صفحه:21 -31
چکیده    Finite element analysis has been carried out to investigate the effect of various parameters on axisymmetric hot extrusion process using aluminum alloy. the objective of the present work is to investigate the effect of friction coefficient, die angle, die-profile radius and predefined temperature of workpiece through fem simulation of extrusion process. nodal temperature distribution, heat flux, peak temperature at nodes and peak flux induced are identified as the output variables to assess the thermo-mechanical deformation behavior of aluminum alloy. mesh sensitivity analysis is performed for the evaluation of mesh convergence as well as depicts the accuracy of present fem model. the higher the coefficient of friction between interacting surfaces of die-billet assembly, the higher will be the increment in nodal temperature in billet. the higher the coefficient of friction, the higher will be the generation of heat flux within billet, as this is achieved for highest coefficient of friction. peak nodal temperature diminishes with increase in die profile radius nearly by 17 %.maximum heat flux diminishes non-linearly by 30% with increase in die profile radius. maximum nodal temperature increases nearly linearly by 14% with increment in predefined temperature of billet. maximum heat flux decreases non-linearly by 5 % with increment in the initial temperature of workpiece. validation of present numerical model is established on the basis of deformation behavior in terms of evolution of nodal temperature distribution upon comparison with previous studies available in literature.
کلیدواژه extrusion ,friction coefficient ,die-angle ,temperature ,flux ,finite element method (fem).
آدرس lakshmi narain college of technology, department of mechanical engineering, india, sagar institute of research technology & science, department of mechanical engineering, india
پست الکترونیکی vipinsati@gmail.com
 
     
   
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