Analysis of Pearlitic Cold Drawn Steel Wire

Article Preview

Abstract:

The effect of microstructure on the mechanical properties of cord steel wires was investigated. Material properties and damage behaviours were identified. Metal cord, for reinforcing articles of an elastomeric material, such as tires, conveyor belts and so on of the single strand type, in particular made up of a plurality of 3, 4 or 6 wires, where in the said wires are twisted together loosely. The metal cord characterized by the fact that the diameter of the individual constituent wires varies between 0.12 and 0.30 mm. Rm tested cord wire was max. 2 946 MPa. Fracture surfaces cords steels were observed.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

288-291

Citation:

Online since:

May 2015

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2015 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] T. Minamida et al., R&D Kobe Steel Engineering Reports, 50 (2000) 32.

Google Scholar

[2] K. Kirihara, Production Technology of Wire Rod for High Tensile Strength Steel Cord, Cobelco Technol. Rev. 30 (2011) 62-65.

Google Scholar

[3] M. Zelin, Microstructure evolution in pearlitic steels during wire drawing, Acta Mater. 50 (2002), 4431-4447.

DOI: 10.1016/s1359-6454(02)00281-1

Google Scholar

[4] M. Buršak et al., Influence of blasting on mechanical properties of steel sheet, Metalurgija, 43 2 (2004) 101-105.

Google Scholar

[5] Y.S. Yang, J.G. Bae, C.C. Park, Nanostructure and mechanical properties of heavily cold-drawn steel wires, Mater. Sci. Eng. A 508 (2009), 148-155.

DOI: 10.1016/j.msea.2008.12.036

Google Scholar

[6] E. Čižmárová, M. Mihaliková, M. Német, Efect of changes deformation rate on mechanical properties microalloyed steels, Chem. Lett. 105 (2011) 546-548.

Google Scholar

[7] T. Z . Zhao et. al. Hardening and softening mechanisms of pearlitic steel wire under torsion, Mater. Des. 59 (2014) 397-405.

DOI: 10.1016/j.matdes.2014.03.029

Google Scholar

[8] E. Kormaníková, K. Kotrasová, Finite element analysis of damage modeling of fiber reinforced laminate plate, App. Mech. Mater. 617 (2014 ) 247-250.

DOI: 10.4028/www.scientific.net/amm.617.247

Google Scholar

[9] J. Slota, M. Jurčišin, E. Spišák, Experimental and numerical analysis of local mechanical properties of drawn part, Key Eng. Mater. 586 (2014) 245-248.

DOI: 10.4028/www.scientific.net/kem.586.245

Google Scholar

[10] R. Bidulský, J. Bidulská, M. A, Grande, Analysis of densification process and structure of PM Al-Mg-Si-Cu-Fe and Al-Zn-Mg-Cu-Sn alloys, Arch. Metall. Mater. 59 (2014) 17-23.

DOI: 10.2478/amm-2014-0003

Google Scholar

[11] E. Evin, M. Tomáš, J. Výboch, Prediction of local limit deformations of steel sheets depending on deformation scheme, Chem. Lett. 106 (2012) 401-404.

Google Scholar