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Experimental study on degradation of mechanical properties of biodegradable magnesium alloy (AZ31) wires/poly(lactic acid) composite for bone fracture healing applications

Authors
Ali, WahaajMehboob, AliHan, Min-GuChang, Seung-Hwan
Issue Date
Feb-2019
Publisher
ELSEVIER SCI LTD
Keywords
Biodegradable composites; Orthopedic prosthesis; Magnesium wires; Corrosion
Citation
COMPOSITE STRUCTURES, v.210, pp 914 - 921
Pages
8
Journal Title
COMPOSITE STRUCTURES
Volume
210
Start Page
914
End Page
921
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/18230
DOI
10.1016/j.compstruct.2018.12.011
ISSN
0263-8223
1879-1085
Abstract
In recent years, biodegradable materials have garnered increasing attention from researchers for use as orthopedic implants. In this study, the fabrication of unidirectional magnesium alloy (AZ31) wire-reinforced poly (lactic acid) (PLA) composites by lamina stacking is presented for bone fracture healing. The tensile and flexural properties of unidirectional composites with wire volume contents of 20%, 30%, 40%, and 50% were measured. Under the simulated human body temperature of 37 degrees C and accelerated environment of 50 degrees C, the degradation behaviors of 50-Mg/PLA composite (50% Mg wires by volume) and pure PLA were evaluated by testing water uptake, mass loss, and pH variation. Scanning electron microscopy helped to understand the fracture mode and degradation of magnesium wires inside the composites. Moreover, energy-dispersive spectroscopy confirmed the formation of an apatite layer that mainly consisted of a Ca-P phase deposited on the composite surface and wires, which is essential for bone healing.
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공과대학 (기계공학부)
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