Manufacture technology, mechanical and biocorrosion properties of the Zn and ZnMg0.008 alloy wires designed for biodegradable surgical threads

Technology for the production of soluble surgical threads with a diameter of 0.3 mm from the binary alloy Zn-0.008 wt.% Mg has been developed and some of the basic properties of the product have been determined. Thus, an effect of the deformation path applied during drawing (i.e., with and without a...

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Published inJournal of manufacturing processes Vol. 67; pp. 513 - 520
Main Authors Kustra, Piotr, Wróbel, Mirosław, Byrska-Wójcik, Dorota, Paćko, Marek, Płonka, Bartłomiej, Wróbel, Marek, Sulej-Chojnacka, Joanna, Milenin, Andriy
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LanguageEnglish
Published Elsevier Ltd 01.07.2021
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Abstract Technology for the production of soluble surgical threads with a diameter of 0.3 mm from the binary alloy Zn-0.008 wt.% Mg has been developed and some of the basic properties of the product have been determined. Thus, an effect of the deformation path applied during drawing (i.e., with and without any change in the drawing direction after each pass) were tested and the windows of technological parameters for the extrusion and drawing were determined. Mechanical properties in the air and the corrosion resistance in an environment simulating body fluids were determined both for the product and the intermediates from selected stages of the production route and compared to the ones of pure zinc. The mechanical tests included the two-way bending test, tensile test, and tensile stress relaxation tests of the wire without and with a surgical knot. It has been shown that the drawing deformation path and the surgical knot do not significantly influence the stress relaxation rate.
AbstractList Technology for the production of soluble surgical threads with a diameter of 0.3 mm from the binary alloy Zn-0.008 wt.% Mg has been developed and some of the basic properties of the product have been determined. Thus, an effect of the deformation path applied during drawing (i.e., with and without any change in the drawing direction after each pass) were tested and the windows of technological parameters for the extrusion and drawing were determined. Mechanical properties in the air and the corrosion resistance in an environment simulating body fluids were determined both for the product and the intermediates from selected stages of the production route and compared to the ones of pure zinc. The mechanical tests included the two-way bending test, tensile test, and tensile stress relaxation tests of the wire without and with a surgical knot. It has been shown that the drawing deformation path and the surgical knot do not significantly influence the stress relaxation rate.
Author Wróbel, Marek
Byrska-Wójcik, Dorota
Paćko, Marek
Płonka, Bartłomiej
Kustra, Piotr
Wróbel, Mirosław
Sulej-Chojnacka, Joanna
Milenin, Andriy
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CitedBy_id crossref_primary_10_1016_j_jallcom_2024_174669
crossref_primary_10_3390_ma16145017
crossref_primary_10_1007_s43452_021_00311_6
crossref_primary_10_1016_j_jmst_2022_09_017
crossref_primary_10_1039_D2BM00179A
crossref_primary_10_1007_s11661_024_07470_0
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Keywords Sutures
ZnMg0.008
Relaxation
Zn
Corrosion
Production
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Snippet Technology for the production of soluble surgical threads with a diameter of 0.3 mm from the binary alloy Zn-0.008 wt.% Mg has been developed and some of the...
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SubjectTerms Corrosion
Production
Relaxation
Sutures
ZnMg0.008
Title Manufacture technology, mechanical and biocorrosion properties of the Zn and ZnMg0.008 alloy wires designed for biodegradable surgical threads
URI https://dx.doi.org/10.1016/j.jmapro.2021.05.024
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