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Longitudinal acoustic properties of poly(lactic acid) and poly(lactic-co-glycolic acid)

机译:聚乳酸和聚乳酸-乙醇酸共聚物的纵向声学特性

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Acoustics offers rich possibilities for characterizing and monitoring the biopolymer structures being employed in the field of biomedical engineering. Here we explore the rudimentary acoustic properties of two common biodegradable polymers: poly(lactic acid) and poly(lactic-co-glycolic acid). A pulse-echo technique is developed to reveal the bulk speed of sound, acoustic impedance and acoustic attenuation of small samples of the polymer across a pertinent temperature range of 0-70 °C. The glass transition appears markedly as both a discontinuity in the first derivative of the speed of sound and a sharp increase in the acoustic attenuation. We further extend our analysis to consider the role of ethanol, whose presence is observed to dramatically modify the acoustic properties and reduce the glass transition temperature of the polymers. Our results highlight the sensitivity of acoustic properties to a range of bulk properties, including visco-elasticity, molecular weight, co-polymer ratio, crystallinity and the presence of plasticizers.
机译:声学为表征和监测生物医学工程领域中使用的生物聚合物结构提供了丰富的可能性。在这里,我们探索两种常见的可生物降解聚合物的基本声学特性:聚乳酸和聚乳酸-乙醇酸共聚物。开发了一种脉冲回波技术来揭示在0-70°C的相关温度范围内聚合物小样品的声速,声阻抗和声衰减。玻璃化转变明显表现为声速的一阶导数的不连续性和声衰减的急剧增加。我们进一步扩展分析以考虑乙醇的作用,观察到乙醇的存在会极大地改变声学性能并降低聚合物的玻璃化转变温度。我们的结果强调了声学特性对一系列本体特性的敏感性,包括粘弹性,分子量,共聚物比,结晶度和增塑剂的存在。

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