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Does magnesium compromise the high temperature processability of novel biodegradable and bioresorbables PLLA/Mg composites?

机译:镁是否会损害新型可生物降解和可生物吸收的PLLA / Mg复合材料的高温加工性能?

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摘要

This paper addresses the influence of magnesium on melting behaviour and thermal stability of novel bioresorbable PLLA/Mg composites as a way to investigate their processability by conventional techniques, which likely will require a melt process at high temperature to mould the material by using a compression, extrusion or injection stage. For this purpose, and to avoid any high temperature step before analysis, films of PLLA loaded with magnesium particles of different sizes and volume fraction were prepared by solvent casting. DSC, modulated DSC and thermogravimetry analysis demonstrate that although thermal stability of PLLA is reduced, the temperature window for processing the PLLA/Mg composites by conventional thermoplastic routes is wide enough. Moreover, magnesium particles do not alter the crystallization behaviour of the polymer from the melt, which allows further annealing treatments to optimize the crystallinity in terms of the required combination of mechanical properties and degradation rate.
机译:本文探讨了镁对新型生物可吸收PLLA / Mg复合材料的熔融行为和热稳定性的影响,以此作为通过常规技术研究其可加工性的方法,这很可能需要高温下的熔融工艺才能通过压缩成型来成型,挤出或注射阶段。为了这个目的,并且为了避免分析之前的任何高温步骤,通过溶剂流延制备了负载有不同尺寸和体积分数的镁颗粒的PLLA膜。 DSC,调制DSC和热重分析表明,尽管PLLA的热稳定性降低,但通过常规热塑性路线加工PLLA / Mg复合材料的温度窗口足够宽。而且,镁颗粒不会改变聚合物从熔体中的结晶行为,这允许进一步的退火处理以根据所需的机械性能和降解速率的组合来优化结晶度。

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