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首页> 外文期刊>Acta biomaterialia >Noninvasive high-frequency acoustic microscopy for 3D visualization of microstructure and estimation of elastic properties during hydrolytic degradation of lactide and epsilon-caprolactone polymers
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Noninvasive high-frequency acoustic microscopy for 3D visualization of microstructure and estimation of elastic properties during hydrolytic degradation of lactide and epsilon-caprolactone polymers

机译:非侵入性高频声学显微镜,用于三维可视化微观结构和丙酮水解降解过程中弹性性能的估计

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摘要

The monitoring of degradation processes' kinetics in polymers is one of the attractive possibilities of ultrasound technique applications that provide non-destructive imaging of polymers' internal microstructure and measurements of elastic properties. In this work, biodegradable polymers and copolymers based on L,L-lactide, D,L-lactide and epsilon-caprolactone have been studied at different stages of hydrolysis at 37 degrees C by high-frequency (100 and 200 MHz) ultrasound. The acoustic microscopy technique has been developed to reveal changes in the internal microstructure and bulk sound speed in polymer samples over a hydrolysis period of 25 weeks. Ultrasound imaging provides visualization of amorphous and crystalline phases, internal imperfections, variation in packing density, and other microstructural features. Acoustic images demonstrate nucleation, growth, and the changes in internal inhomogeneities in polymers during degradation accompanied by a decrease in the polymers' molecular weight. We associate the changes in the elastic properties (the speed of a longitudinal wave) with crystallinity variations in polymers during hydrothermal aging. The results of the ultrasound investigations are supplemented by gel permeation chromatography, differential scanning calorimetry, and wide-angle X-ray spectroscopy.
机译:在聚合物中的降解过程的监测是超声技术应用的有吸引力的可能性之一,其提供了聚合物内部微观结构和弹性性能测量的非破坏性成像。在该工作中,通过高频(100和200MHz)超声,在37℃下的不同阶段研究了基于L,L-丙交酯,D,L-丙交酯和ε-己内酯的可生物降解的聚合物和共聚物。已经开发了声学显微镜技术,以揭示在25周的水解时间内聚合物样品中的内部微观结构和散装声速的变化。超声成像提供无定形和结晶阶段的可视化,内部缺陷,填充密度的变化和其他微观结构特征。声学图像显示成核,生长和聚合物在降解期间的内部不均匀性的变化伴随着聚合物分子量的降低。我们将弹性性质(纵波速度)的变化与水热老化期间聚合物中的结晶变化相关联。超声研究的结果通过凝胶渗透色谱,差示扫描量热法和广角X射线光谱补充。

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