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Systematic literature Review of PLA-Magnesium Composite Material for Fused Deposition Modelling for Biomedical Applications

Aishwarya Ramesh Desale, Vishal Jogdankar, Vaibhav Sunil Hirnaik, Prashant Gawali

Abstract


Magnesium is one of most liberally available metal in nature forming about 2% of earth’s crust. Polylactic acid or Polylactide is a bioplastic. Magnesium-Polylactide composites are a promising new form of biodegradable materials with established good mechanical properties. Our critical survey of research papers helped us to compile information about fabrication and treatment of this composite material using various techniques and methodologies to understand prospects for future research for FDM (Fused Deposition Modelling). The main aim of this review is to comprehend advancement in creating different compositions of Mg-PLA composite for generation of implants, for creating cheap customizable prosthetics using additive manufacturing techniques (3D printing). This paper analyses literature of articles in English distributed between year 2016-2020 associated to magnesium-polylactide composite and fused deposition modelling to form a link between usage of Mg-PLA as a filament or base material to broaden the use of fused deposition modelling in bio-medical applications.


Keywords


Magnesium, Polylactic acid, FDM, 3D printing, composite material.

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References


Gebisa AW, Lemu HG. Influence of 3D printing FDM process parameters on tensile property of ULTEM 9085. Procedia Manufacturing. 2019 Jan 1;30:331-8.

Karunakaran R, Ortgies S, Tamayol A, Bobaru F, Sealy MP. Additive manufacturing of magnesium alloys. Bioactive Materials. 2020 Mar 1;5(1):44-54.

Haghshenas M. Mechanical characteristics of biodegradable magnesium matrix composites: A review. Journal of magnesium and alloys. 2017 Jun 1;5(2):189-201.

Zhang W, Chen Y, Chen M, Zhao S, Mao J, Qu A, Li W, Zhao Y, Huang N, Wan G. Strengthened corrosion control of poly (lactic acid)(PLA) and poly (ε-caprolactone)(PCL) polymer-coated magnesium by imbedded hydrophobic stearic acid (SA) thin layer. Corrosion Science. 2016 Nov 1;112:327-37.

Ferrández-Montero A, Lieblich M, Benavente R, González-Carrasco JL, Ferrari B. Study of the matrix-filler interface in PLA/Mg composites manufactured by Material Extrusion using a colloidal feedstock. Additive Manufacturing. 2020 May 1;33:101142.

Cai H, Li X, Chu C, Xue F, Guo C, Dong Q, Bai J. Insight into the effect of interface on the mechanical properties of Mg/PLA composite plates. Composites Science and Technology. 2019 Oct 20;183:107801.

Jin J, Zhou S, Duan H. Preparation and properties of heat treated FHA@ PLA composition coating on micro-oxidized AZ91D magnesium alloy. Surface and Coatings Technology. 2018 Sep 15;349:50-60.

Niu B, Shi P, Shanshan E, Wei D, Li Q, Chen Y. Preparation and characterization of HA sol–gel coating on MAO coated AZ31 alloy. Surface and Coatings Technology. 2016 Jan 25;286:42-8.

Ferrández-Montero A, Lieblich M, González-Carrasco JL, Benavente R, Lorenzo V, Detsch R, Boccaccini AR, Ferrari B. Development of biocompatible and fully bioabsorbable PLA/Mg films for tissue regeneration applications. Actabiomaterialia. 2019 Oct 15;98:114-24.

Ren Y, Babaie E, Bhaduri SB. Nanostructured amorphous magnesium phosphate/poly (lactic acid) composite coating for enhanced corrosion resistance and bioactivity of biodegradable AZ31 magnesium alloy. Progress in Organic Coatings. 2018 May 1;118:1-8.

Li X, Qi C, Han L, Chu C, Bai J, Guo C, Xue F, Shen B, Chu PK. Influence of dynamic compressive loading on the in vitro degradation behavior of pure PLA and Mg/PLA composite. Actabiomaterialia. 2017 Dec 1;64:269-78.

Ferrandez-Montero A, Lieblich M, Benavente R, González-Carrasco JL, Ferrari B. New approach to improve polymer-Mg interface in biodegradable PLA/Mg composites through particle surface modification. Surface and Coatings Technology. 2020 Feb 15;383:125285.

Li X, Yu W, Han L, Chu C, Bai J, Xue F. Degradation behaviors of Mg alloy wires/PLA composite in the consistent and staged dynamic environments. Materials Science and Engineering: C. 2019 Oct 1;103:109765.

Zhao C, Wu H, Ni J, Zhang S, Zhang X. Development of PLA/Mg composite for orthopedic implant: tunable degradation and enhanced mineralization. Composites Science and Technology. 2017 Jul 28;147:8-15.

Cai H, Zhang Y, Meng J, Li X, Xue F, Chu C, Tao L, Bai J. Enhanced fully-biodegradable Mg/PLA composite rod: Effect of surface modification of Mg-2Zn wire on the interfacial bonding. Surface and Coatings Technology. 2018 Sep 25;350:722-31.


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