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Erschienen in: International Journal of Material Forming 3/2017

12.04.2016 | Original Research

Evolution of elastic modulus in roll forming

verfasst von: A. Abvabi, J. Mendiguren, A. Kupke, B. Rolfe, M. Weiss

Erschienen in: International Journal of Material Forming | Ausgabe 3/2017

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Abstract

Roll forming is a continuous process in which a flat strip is incrementally bent to a desired profile. This process is increasingly used in automotive industry to form High Strength Steel (HSS) and Advanced High Strength Steel (AHSS) for structural components. Because of the large variety of applications of roll forming in the industry, Finite Element Analysis (FEA) is increasingly employed for roll forming process design. Formability and springback are two major concerns in the roll forming AHSS materials. Previous studies have shown that the elastic modulus (Young’s modulus) of AHSS materials can change when the material undergoes plastic deformation and the main goal of this study is to investigate the effect of a change in elastic modulus during forming on springback in roll forming. FEA has been applied for the roll forming simulation of a V-section using material data determined by experimental loading-unloading tests performed on mild, XF400, and DP780 steel. The results show that the reduction of the elastic modulus with pre-strain significantly influences springback in the roll forming of high strength steel while its effect is less when a softer steel is formed.

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Literatur
1.
Zurück zum Zitat Schuler GH (1998) Metal forming handbook. Berlin. Springer-Verlag, New YorkCrossRef Schuler GH (1998) Metal forming handbook. Berlin. Springer-Verlag, New YorkCrossRef
2.
Zurück zum Zitat Marnette J, Weiss M, Hodgson PD (2014) Roll-formability of cryo-rolled ultrafine aluminium sheet. Mater Des 63:471–478CrossRef Marnette J, Weiss M, Hodgson PD (2014) Roll-formability of cryo-rolled ultrafine aluminium sheet. Mater Des 63:471–478CrossRef
3.
Zurück zum Zitat Abeyrathna B, Rolfe B, Hodgson P, Weiss M (2015) A first step towards a simple in-line shape compensation routine for the roll forming of high strength steel. Int J Mater Form.:1–12 Abeyrathna B, Rolfe B, Hodgson P, Weiss M (2015) A first step towards a simple in-line shape compensation routine for the roll forming of high strength steel. Int J Mater Form.:1–12
4.
Zurück zum Zitat Groche P, Henkelmann M, Gotz P, Berner S (2008) Cold rolled profiles for vehicle construction. Archives of Civil and Mechanical Engineering 8:31–38CrossRef Groche P, Henkelmann M, Gotz P, Berner S (2008) Cold rolled profiles for vehicle construction. Archives of Civil and Mechanical Engineering 8:31–38CrossRef
5.
Zurück zum Zitat Weiss M, Marnette J, Wolfram P, Larranaga J, Hodgson P (2012) Comparison of bending of automotive steels in roll forming and in a V-die. Key Eng Mater 504-506:797–802CrossRef Weiss M, Marnette J, Wolfram P, Larranaga J, Hodgson P (2012) Comparison of bending of automotive steels in roll forming and in a V-die. Key Eng Mater 504-506:797–802CrossRef
6.
Zurück zum Zitat Eggertsen P, Mattiasson K (2009) On the modelling of the bending-unbending behaviour for accurate springback predictions. Int J Mech Sci 51:547–563CrossRef Eggertsen P, Mattiasson K (2009) On the modelling of the bending-unbending behaviour for accurate springback predictions. Int J Mech Sci 51:547–563CrossRef
7.
Zurück zum Zitat Mendiguren J, Cortés F, Gómez X, Galdos L (2015) Elastic behaviour characterisation of TRIP 700 steel by means of loading–unloading tests. Mater Sci Eng A 634:147–152CrossRef Mendiguren J, Cortés F, Gómez X, Galdos L (2015) Elastic behaviour characterisation of TRIP 700 steel by means of loading–unloading tests. Mater Sci Eng A 634:147–152CrossRef
8.
Zurück zum Zitat de Vin LJ, Streppel AH, Singh UP, Kals HJJ (1996) A process model for air bending. J Mater Process Technol. 57:48–54CrossRef de Vin LJ, Streppel AH, Singh UP, Kals HJJ (1996) A process model for air bending. J Mater Process Technol. 57:48–54CrossRef
9.
Zurück zum Zitat Morestin F, Boivin M, Silva C (1996) Elasto plastic formulation using a kinematic hardening model for springback analysis in sheet metal forming. J Mater Process Technol 56:619–630CrossRef Morestin F, Boivin M, Silva C (1996) Elasto plastic formulation using a kinematic hardening model for springback analysis in sheet metal forming. J Mater Process Technol 56:619–630CrossRef
10.
Zurück zum Zitat H. Kim and M. Kimchi (2011) Numerical Modeling for Springback Predictions by Considering the Variations of Elastic Modulus in Stamping Advanced High-Strength Steels (AHSS), in 8th International Conference and Workshop on Numerical Simulation of 3d Sheet Metal Forming Processes. K. Chung, H. N. Han, H. Huh, F. Barlat, and M. G. Lee, Eds., ed Melville: Amer Inst Physics, vol. 1383:pp. 1159–1166. H. Kim and M. Kimchi (2011) Numerical Modeling for Springback Predictions by Considering the Variations of Elastic Modulus in Stamping Advanced High-Strength Steels (AHSS), in 8th International Conference and Workshop on Numerical Simulation of 3d Sheet Metal Forming Processes. K. Chung, H. N. Han, H. Huh, F. Barlat, and M. G. Lee, Eds., ed Melville: Amer Inst Physics, vol. 1383:pp. 1159–1166.
11.
Zurück zum Zitat Yang M, Akiyama Y, Sasaki T (2004) Evaluation of change in material properties due to plastic deformation. J Mater Process Technol 151:232–236CrossRef Yang M, Akiyama Y, Sasaki T (2004) Evaluation of change in material properties due to plastic deformation. J Mater Process Technol 151:232–236CrossRef
12.
Zurück zum Zitat Yu HY, Shen JY (Nov 2014) Evolution of mechanical properties for a dual-phase steel subjected to different loading paths. Mater Des 63:412–418 Yu HY, Shen JY (Nov 2014) Evolution of mechanical properties for a dual-phase steel subjected to different loading paths. Mater Des 63:412–418
13.
Zurück zum Zitat Fei D, Hodgson P (2006) Experimental and numerical studies of springback in air v-bending process for cold rolled TRIP steels. Nucl Eng Des 236:1847–1851CrossRef Fei D, Hodgson P (2006) Experimental and numerical studies of springback in air v-bending process for cold rolled TRIP steels. Nucl Eng Des 236:1847–1851CrossRef
14.
Zurück zum Zitat Li XC, Yang YY, Wang YZ, Bao J, Li SP (2002) Effect of the material-hardening mode on the springback simulation accuracy of V-free bending. J Mater Process Technol. 123:209–211CrossRef Li XC, Yang YY, Wang YZ, Bao J, Li SP (2002) Effect of the material-hardening mode on the springback simulation accuracy of V-free bending. J Mater Process Technol. 123:209–211CrossRef
15.
Zurück zum Zitat Chatti S, Hermi N (Jul 2011) The effect of non-linear recovery on springback prediction. Comput Struct 89:1367–1377 Chatti S, Hermi N (Jul 2011) The effect of non-linear recovery on springback prediction. Comput Struct 89:1367–1377
16.
Zurück zum Zitat Chongthairungruang B, Uthaisangsuk V, Suranuntchai S, Jirathearanat S (2012) Experimental and numerical investigation of springback effect for advanced high strength dual phase steel. Mater Des 39:318–328CrossRef Chongthairungruang B, Uthaisangsuk V, Suranuntchai S, Jirathearanat S (2012) Experimental and numerical investigation of springback effect for advanced high strength dual phase steel. Mater Des 39:318–328CrossRef
17.
Zurück zum Zitat Chatti S (2013) Modeling of the elastic modulus evolution in unloading-reloading stages. Int J Mater Form. 6:93–101CrossRef Chatti S (2013) Modeling of the elastic modulus evolution in unloading-reloading stages. Int J Mater Form. 6:93–101CrossRef
18.
Zurück zum Zitat Chatti S, Fathallah R (2014) A study of the variations in elastic modulus and its effect on springback prediction. Int J Mater Form. 7:19–29CrossRef Chatti S, Fathallah R (2014) A study of the variations in elastic modulus and its effect on springback prediction. Int J Mater Form. 7:19–29CrossRef
19.
Zurück zum Zitat Yu HY (2009) Variation of elastic modulus during plastic deformation and its influence on springback. Mater Des 30:846–850CrossRef Yu HY (2009) Variation of elastic modulus during plastic deformation and its influence on springback. Mater Des 30:846–850CrossRef
20.
Zurück zum Zitat Yoshida F, Uemori T, Fujiwara K (2002) Elastic-plastic behavior of steel sheets under in-plane cyclic tension-compression at large strain. Int J Plast 18:633–659CrossRefMATH Yoshida F, Uemori T, Fujiwara K (2002) Elastic-plastic behavior of steel sheets under in-plane cyclic tension-compression at large strain. Int J Plast 18:633–659CrossRefMATH
21.
Zurück zum Zitat Mendiguren J, Trujillo JJ, Cortés F, Galdos L (2013) An extended elastic law to represent non-linear elastic behaviour: Application in computational metal forming. Int J Mech Sci. 77:57–64CrossRef Mendiguren J, Trujillo JJ, Cortés F, Galdos L (2013) An extended elastic law to represent non-linear elastic behaviour: Application in computational metal forming. Int J Mech Sci. 77:57–64CrossRef
22.
Zurück zum Zitat Chatti S, Hermi N (2011) The effect of non-linear recovery on springback prediction. Comput Struct 89:1367–1377CrossRef Chatti S, Hermi N (2011) The effect of non-linear recovery on springback prediction. Comput Struct 89:1367–1377CrossRef
23.
Zurück zum Zitat Eggertsen PA, Mattiasson K (2010) On constitutive modeling for springback analysis. Int J Mech Sci 52:804–818CrossRef Eggertsen PA, Mattiasson K (2010) On constitutive modeling for springback analysis. Int J Mech Sci 52:804–818CrossRef
24.
Zurück zum Zitat Eggertsen P-A, Mattiasson K (2011) On the identification of kinematic hardening material parameters for accurate springback predictions. Int J Mater Form 4:103–120CrossRef Eggertsen P-A, Mattiasson K (2011) On the identification of kinematic hardening material parameters for accurate springback predictions. Int J Mater Form 4:103–120CrossRef
25.
Zurück zum Zitat Abvabi A, Mendiguren J, Rolfe B, Weiss M (2014) Springback investigation in roll forming of a V-section. Applied Mechanics and Materials 553:643–648CrossRef Abvabi A, Mendiguren J, Rolfe B, Weiss M (2014) Springback investigation in roll forming of a V-section. Applied Mechanics and Materials 553:643–648CrossRef
28.
Zurück zum Zitat A. Abvabi, (2014) Effect of Residual Stresses in Roll Forming Process of Metal Sheets Ph.D., School of Engineering - Faculty of Science, Engineering and Built Environment, Deakin University. A. Abvabi, (2014) Effect of Residual Stresses in Roll Forming Process of Metal Sheets Ph.D., School of Engineering - Faculty of Science, Engineering and Built Environment, Deakin University.
29.
Zurück zum Zitat (2013) MSC.Marc, Volume B: Element Library. USA: MSC.Software Corporation. (2013) MSC.Marc, Volume B: Element Library. USA: MSC.Software Corporation.
30.
Zurück zum Zitat Li KP, Carden WP, Wagoner RH (2002) Simulation of springback. Int J Mech Sci 44:103–122CrossRefMATH Li KP, Carden WP, Wagoner RH (2002) Simulation of springback. Int J Mech Sci 44:103–122CrossRefMATH
31.
Zurück zum Zitat Abvabi A, Rolfe B, Larrañaga J, Galdos L, Yang C, Weiss M (2012) "Using the solid-shell element to model the roll forming of large radii profiles," presented at the 14th international metal forming conference. Krakow, Poland Abvabi A, Rolfe B, Larrañaga J, Galdos L, Yang C, Weiss M (2012) "Using the solid-shell element to model the roll forming of large radii profiles," presented at the 14th international metal forming conference. Krakow, Poland
32.
Zurück zum Zitat Hibbeler RC (2008) Mechanics of materials, 7th ed. Prentice Hall, Upper Saddle River, N.J. Hibbeler RC (2008) Mechanics of materials, 7th ed. Prentice Hall, Upper Saddle River, N.J.
33.
Zurück zum Zitat Gere JM, Goodno BJ (2009) Mechanics of materials, SI ed. Stamford, conn. United Kingdom, Cengage Learning Gere JM, Goodno BJ (2009) Mechanics of materials, SI ed. Stamford, conn. United Kingdom, Cengage Learning
34.
Zurück zum Zitat Cobo R, Pla M, Hernández R, Benito J (2009) "analysis of the decrease of the apparent young’s modulus of advanced high strength steels and its effect in bending simulations," in Proceedings of the IDDRG 2009 International Conference. Golden, CO, USA Cobo R, Pla M, Hernández R, Benito J (2009) "analysis of the decrease of the apparent young’s modulus of advanced high strength steels and its effect in bending simulations," in Proceedings of the IDDRG 2009 International Conference. Golden, CO, USA
35.
Zurück zum Zitat Z. Marciniak, J. Duncan, and J. Hu, Mechanics of sheet metal forming: Butterworth-Heinemann, 2002. Z. Marciniak, J. Duncan, and J. Hu, Mechanics of sheet metal forming: Butterworth-Heinemann, 2002.
36.
Zurück zum Zitat Wiebenga JH, Weiss M, Rolfe B, van den Boogaard AH (2013) Product defect compensation by robust optimization of a cold roll forming process. J Mater Process Technol 213:978–986CrossRef Wiebenga JH, Weiss M, Rolfe B, van den Boogaard AH (2013) Product defect compensation by robust optimization of a cold roll forming process. J Mater Process Technol 213:978–986CrossRef
37.
Zurück zum Zitat Groche P, Mueller C, Traub T, Butterweck K (Jan 2014) Experimental and numerical determination of roll forming loads. Steel Research International 85:112–122 Groche P, Mueller C, Traub T, Butterweck K (Jan 2014) Experimental and numerical determination of roll forming loads. Steel Research International 85:112–122
Metadaten
Titel
Evolution of elastic modulus in roll forming
verfasst von
A. Abvabi
J. Mendiguren
A. Kupke
B. Rolfe
M. Weiss
Publikationsdatum
12.04.2016
Verlag
Springer Paris
Erschienen in
International Journal of Material Forming / Ausgabe 3/2017
Print ISSN: 1960-6206
Elektronische ISSN: 1960-6214
DOI
https://doi.org/10.1007/s12289-016-1295-6

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