Next Article in Journal
Dynamic Softening Mechanisms and Microstructure Evolution of TB18 Titanium Alloy during Uniaxial Hot Deformation
Next Article in Special Issue
Special Issue: “Processing and Treatment of Hexagonal Metals”
Previous Article in Journal
Analysis of the Main Aspects Affecting Bonding in Stainless Steel Rebars Embedded in a Hydraulic Medium
Previous Article in Special Issue
Microstructure, Mechanical, Corrosion, and Ignition Properties of WE43 Alloy Prepared by Different Processes
 
 
Font Type:
Arial Georgia Verdana
Font Size:
Aa Aa Aa
Line Spacing:
Column Width:
Background:
Article

Influence of the Microstructure of the Initial Material on the Zn Wires Prepared by Direct Extrusion with a Huge Extrusion Ratio

1
Department of Functional Materials, FZU–Institute of Physics of the Czech Academy of Sciences, 182 21 Prague, Czech Republic
2
Department of Materials, Faculty of Nuclear Sciences and Physical Engineering, Czech Technical University in Prague, 110 00 Prague, Czech Republic
3
Department of Material Analysis, FZU–Institute of Physics of the Czech Academy of Sciences, 182 21 Prague, Czech Republic
*
Author to whom correspondence should be addressed.
Metals 2021, 11(5), 787; https://doi.org/10.3390/met11050787
Submission received: 31 March 2021 / Revised: 30 April 2021 / Accepted: 9 May 2021 / Published: 13 May 2021
(This article belongs to the Special Issue Processing and Treatment of Hexagonal Metallic Materials)

Abstract

In this study, we prepared zinc wires with a diameter of 250 µm by direct extrusion using an extrusion ratio of 576. We studied the influence of the extrusion temperature and microstructure of the initial Zn billets on the microstructural and mechanical characteristics of the extruded wires. The extrusion temperature played a significant role in the final grain size. The wires extruded at 300 °C possessed a coarse-grained microstructure and the shape of their tensile stress–strain curves suggested that twinning played an important role during their deformation. A significant influence of the initial grain size on the final microstructure was observed after the extrusion at 100 °C. The wires prepared from the billet with a very coarse-grained microstructure possessed a bimodal grain size. A significant coarsening of their microstructure was observed after the tensile test. The wires prepared from the medium-grained billets at 100 °C were relatively coarse-grained, but their grain size was stable during the straining, resulting in the highest ultimate tensile strength. This preliminary study shows that strong attention should be paid to the extrusion parameters and the microstructure of the initial billets, because they significantly influence the microstructure and mechanical behavior of the obtained wires.
Keywords: Zn-based absorbable materials; biodegradable materials; extrusion; mechanical properties; microstructure Zn-based absorbable materials; biodegradable materials; extrusion; mechanical properties; microstructure

Share and Cite

MDPI and ACS Style

Čapek, J.; Kadeřávek, L.; Pinc, J.; Kopeček, J.; Klimša, L. Influence of the Microstructure of the Initial Material on the Zn Wires Prepared by Direct Extrusion with a Huge Extrusion Ratio. Metals 2021, 11, 787. https://doi.org/10.3390/met11050787

AMA Style

Čapek J, Kadeřávek L, Pinc J, Kopeček J, Klimša L. Influence of the Microstructure of the Initial Material on the Zn Wires Prepared by Direct Extrusion with a Huge Extrusion Ratio. Metals. 2021; 11(5):787. https://doi.org/10.3390/met11050787

Chicago/Turabian Style

Čapek, Jaroslav, Lukáš Kadeřávek, Jan Pinc, Jaromír Kopeček, and Ladislav Klimša. 2021. "Influence of the Microstructure of the Initial Material on the Zn Wires Prepared by Direct Extrusion with a Huge Extrusion Ratio" Metals 11, no. 5: 787. https://doi.org/10.3390/met11050787

APA Style

Čapek, J., Kadeřávek, L., Pinc, J., Kopeček, J., & Klimša, L. (2021). Influence of the Microstructure of the Initial Material on the Zn Wires Prepared by Direct Extrusion with a Huge Extrusion Ratio. Metals, 11(5), 787. https://doi.org/10.3390/met11050787

Note that from the first issue of 2016, this journal uses article numbers instead of page numbers. See further details here.

Article Metrics

Back to TopTop