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Influence of dynamic compressive loading on the in vitro degradation behavior of pure PLA and Mg/PLA composite

机译:动态压缩载荷对纯PLA和Mg / PLA复合材料体外降解行为的影响

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Graphical abstract Display Omitted Abstract The effects of dynamic compressive loading on the in vitro degradation behavior of pure poly-lactic acid (PLA) and PLA-based composite unidirectionally reinforced with micro-arc oxidized magnesium alloy wires (Mg/PLA) are investigated. Dynamic compressive loading is shown to accelerate degradation of pure PLA and Mg/PLA. As the applied stress is increased from 0.1MPa to 0.9MPa or frequency from 0.5Hz to 2.5Hz, the overall degradation rate goes up. After immersion for 21days at 0.9MPa and 2.5Hz, the bending strength retention of the composite and pure PLA is 60.1% and 50%, respectively. Dynamic loading enhances diffusion of small acidic molecules resulting in significant pH decrease in the immersion solution. The synergistic reaction between magnesium alloy wires and PLA in the composite is further clarified by electrochemical tests. The degradation behavior of the pure PLA and PLA matrix in the composite under dynamic conditions obey the first order degradation kinetics and a numerical model is postulated to elucidate the relationship of the bending strength, stress, frequency, and immersion time under dynamic conditions. Statement of significance We systematically study the influence of dynamic loading on the degradation behavior of pure PLA and Mg/PLA. Dynamic compressive loading is shown to accelerate degradation of pure PLA and Mg/PLA. The synergistic reaction between magnesium alloy wires and PLA in the composite is firstly clarified by electrochemical tests. The degradation behavior of the pure PLA and PLA matrix in the composite under dynamic conditions obey the first order degradation kinetics. Then, a numerical model is postulated to elucidate the relationship of the bending strength, stress, frequency, and immersion time under dynamic conditions.
机译:图解摘要摘要研究了动态压缩负荷对微弧氧化镁合金线(Mg / PLA)单向增强的纯多乳酸(PLA)和PLA基复合材料的体外降解行为的影响。动态压缩载荷显示为加速纯PLA和MG / PLA的降解。随着施加的应力从0.1MPa增加到0.9MPa或0.5Hz至2.5Hz的频率,总体降解率升高。在0.9MPa和2.5Hz下浸泡21天后,复合材料和纯PLA的弯曲强度保留分别为60.1%和50%。动态负荷增强了小酸分子的扩散,导致浸渍溶液中的显着pH降低。通过电化学试验进一步阐明复合材料中镁合金电线和PLA之间的协同反应。在动态条件下,在动态条件下的复合材料中纯PLA和PLA矩阵的降解行为遵守第一阶降级动力学和数值模型,以阐明动态条件下弯曲强度,应力,频率和浸入时间的关系。重要性陈述我们系统地研究了动态负荷对纯PLA和MG / PLA降解行为的影响。动态压缩载荷显示为加速纯PLA和MG / PLA的降解。通过电化学测试首先阐明复合材料中镁合金线和PLA之间的协同反应。动态条件下复合材料中纯PLA和PLA矩阵的劣化行为遵循第一阶降解动力学。然后,假设数值模型以在动态条件下阐明弯曲强度,应力,频率和浸入时间的关系。

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