Prediction of a Material Property Gradient near the Friction Surface in Axisymmetric Extrusion and Drawing

The present paper provides a theoretical prediction of the evolution of material properties near the friction surface in axisymmetric extrusion and drawing. The method employed is based on the strain rate intensity factor and uses empirical equations that connect the integrated strain rate intensity...

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Main Author: Elena Lyamina
Format: Article
Language:English
Published: MDPI AG 2022-08-01
Series:Metals
Subjects:
Online Access:https://www.mdpi.com/2075-4701/12/8/1310
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author Elena Lyamina
author_facet Elena Lyamina
author_sort Elena Lyamina
collection DOAJ
description The present paper provides a theoretical prediction of the evolution of material properties near the friction surface in axisymmetric extrusion and drawing. The method employed is based on the strain rate intensity factor and uses empirical equations that connect the integrated strain rate intensity factor with the thickness of a narrow layer of intensive plastic deformation and the hardness of the surface layer. The material obeys Hosford’s yield criterion. Therefore, the empirical equations above are reformulated in terms of the work rate intensity factor. Since no numerical method is available, the strain rate and work rate intensity factors are determined from an approximate solution. The solution reveals the effect of process and material parameters on the thickness of a layer of intensive plastic deformation and the hardness of the surface layer. Since the solution is semi-analytical, it is straightforward to use its results to design the metal forming processes.
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spelling doaj.art-0a6b86c04d8642d0a1103429044aaf5a2023-12-03T14:06:56ZengMDPI AGMetals2075-47012022-08-01128131010.3390/met12081310Prediction of a Material Property Gradient near the Friction Surface in Axisymmetric Extrusion and DrawingElena Lyamina0Metal Forming Department, Samara National Research University, 334086 Samara, RussiaThe present paper provides a theoretical prediction of the evolution of material properties near the friction surface in axisymmetric extrusion and drawing. The method employed is based on the strain rate intensity factor and uses empirical equations that connect the integrated strain rate intensity factor with the thickness of a narrow layer of intensive plastic deformation and the hardness of the surface layer. The material obeys Hosford’s yield criterion. Therefore, the empirical equations above are reformulated in terms of the work rate intensity factor. Since no numerical method is available, the strain rate and work rate intensity factors are determined from an approximate solution. The solution reveals the effect of process and material parameters on the thickness of a layer of intensive plastic deformation and the hardness of the surface layer. Since the solution is semi-analytical, it is straightforward to use its results to design the metal forming processes.https://www.mdpi.com/2075-4701/12/8/1310extrusiondrawingfrictiongradient of material propertiesstrain rate intensity factorwork rate intensity factor
spellingShingle Elena Lyamina
Prediction of a Material Property Gradient near the Friction Surface in Axisymmetric Extrusion and Drawing
Metals
extrusion
drawing
friction
gradient of material properties
strain rate intensity factor
work rate intensity factor
title Prediction of a Material Property Gradient near the Friction Surface in Axisymmetric Extrusion and Drawing
title_full Prediction of a Material Property Gradient near the Friction Surface in Axisymmetric Extrusion and Drawing
title_fullStr Prediction of a Material Property Gradient near the Friction Surface in Axisymmetric Extrusion and Drawing
title_full_unstemmed Prediction of a Material Property Gradient near the Friction Surface in Axisymmetric Extrusion and Drawing
title_short Prediction of a Material Property Gradient near the Friction Surface in Axisymmetric Extrusion and Drawing
title_sort prediction of a material property gradient near the friction surface in axisymmetric extrusion and drawing
topic extrusion
drawing
friction
gradient of material properties
strain rate intensity factor
work rate intensity factor
url https://www.mdpi.com/2075-4701/12/8/1310
work_keys_str_mv AT elenalyamina predictionofamaterialpropertygradientnearthefrictionsurfaceinaxisymmetricextrusionanddrawing