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Polymer Composite Materials Based on Polylactide with a Shape Memory Effect for Self-Fitting Bone Implants

机译:基于聚丙酯的聚合物复合材料具有形状记忆效应的自配合骨植入物

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摘要

The development of adaptive medical structures is one of the promising areas of bioengineering. Polymer composite materials based on polylactide (PLA) are interesting not only for their properties, such as biocompatibility, mechanical properties, biodegradation, and convenience of use, but also for demonstrating shape memory effect (SME). In this study, reducing the activation initiation temperature and the SME activation energy was achieved by forming a composite based on PLA containing 10% poly (ε-caprolactone) (PCL). The effect of the plasticizer on the structure, mechanical properties, and especially SME of the composite, was studied by DSC, SEM, FTIR spectroscopy, compression tests, and DMA. By varying the composition, the beginning of the SME activation was reached at 45 °C, and the apparent activation energy of the process decreased by 85 kJ/mol, ensuring safe and effective use of the material as a precursor for temporary self-fitting scaffolds for reconstructive surgery.
机译:自适应医疗结构的发展是生物工程的有希望的区域之一。基于聚物(PLA)的聚合物复合材料不仅具有它们的性质,例如生物相容性,机械性能,生物降解和使用的便利性,而且还用于说明形状记忆效应(SME)。在该研究中,通过基于含有10%Poly(ε-己内酯)(PCL)的PLA形成复合材料来实现活化起始温度和中小企业活化能。通过DSC,SEM,FTIR光谱,压缩试验和DMA研究了增塑剂对复合材料的结构,机械性能和尤其是SME的影响。通过改变组合物,在45℃下达到中小企业活化的开始,并且该方法的表观活化能量减少了85 kJ / mol,确保了材料作为临时自配支架的前体作为前体的安全性和有效地使用用于重建手术。

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