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Synthesis and evaluation of protective poly(lactic acid) and fluorine-doped hydroxyapatite-based composite coatings on AZ31 magnesium alloy

机译:AZ31镁合金上保护性聚乳酸和掺氟羟基磷灰石基复合涂层的合成与评价

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摘要

Magnesium (Mg) alloys have received considerable attention as favorable orthopedic implant materials. However, their uncontrolled degradation in the physiological environment has led to premature implant failure. Thus, to address this problem, the present study was focused on developing protective monolayer coatings of fluorine-doped hydroxyapatite (FHA) and a bilayer coating of FHA and poly(lactic acid) (FHA-PLA) on AZ31 Mg. The synthesis involved microwave irradiation which helped in rapid synthesis of FHA coatings and spin coating for developing the PLA layer. Results revealed the formation of dense and defect-free FHA-PLA hybrid coatings. Importantly, they helped in significant reduction of galvanic-corrosion reactions of AZ31 in a physiological medium. The corrosion current density of FHA/PLA-coated samples was about two orders of magnitude lower than uncoated samples. Their lower weight losses further confirmed the coatings' corrosion resistance. Combined, the as-synthesized FHA-PLA coatings can provide favorable corrosion protection to AZ31 Mg.
机译:镁(Mg)合金作为良好的骨科植入材料已受到相当多的关注。但是,它们在生理环境中的失控降解导致植入物过早失效。因此,为了解决这个问题,本研究集中于在AZ31 Mg上开发氟掺杂羟基磷灰石(FHA)的保护性单层涂层以及FHA和聚乳酸(FHA-PLA)的双层涂层。合成过程涉及微波辐射,这有助于快速合成FHA涂层和旋涂以形成PLA层。结果揭示了致密且无缺陷的FHA-PLA杂化涂层的形成。重要的是,它们有助于显着减少生理介质中AZ31的电腐蚀反应。 FHA / PLA涂层样品的腐蚀电流密度比未涂层样品低约两个数量级。它们较低的重量损失进一步证实了涂层的耐腐蚀性。综合起来,合成后的FHA-PLA涂层可以为AZ31 Mg提供良好的腐蚀防护。

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