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首页> 外文期刊>Journal of Applied Polymer Science >Quantification of thermal material degradation during the processing of biomedical thermoplastics
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Quantification of thermal material degradation during the processing of biomedical thermoplastics

机译:量化生物医学热塑性塑料加工过程中热材料降解

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Three-dimensional plotting, a melt-based technique that involves the guided deposition of extruded filaments, is a promising method for the manufacture of thermoplastic scaffolds for tissue engineering. However, the polymer degrades during processing because of a prolonged residence time at an elevated temperature in the dispensing head before actual extrusion. This thermal degradation has been attributed to random chain scission; in this research, it has been quantified as a function of the residence time for a selection of polylactide-based polymers. The utilized techniques include thermogravimetric analysis (overall mass loss), differential scanning calorimetry (glass-transition, melting, and recrystallization temperatures), gel permeation chromatography (molecular mass), and inherent viscosity measurements. Experiments have shown that a static heating interval greater than 6 h is sufficient to destroy the molecular chain integrity of poly(l-lactide) and poly(d,l-lactide). Copolymers with poly(?μ-caprolactone) and poly(glycolic acid) are more resilient to thermal loading but are still severely affected. Overall, the differential scanning calorimetry results have been judged to be a good source of complementary data for the quantification of the degradation phenomenon, whereas inherent viscosity measurements have been confirmed to be related to the gel permeation chromatography results, which indicate shortening of the polymer chain.
机译:三维绘图是一种基于熔体的技术,涉及到挤出长丝的引导沉积,是一种用于组织工程的热塑性支架制造的有前途的方法。然而,由于在实际挤出之前在升高的温度下在分配头中的延长的停留时间,使得聚合物在加工期间降解。这种热降解归因于随机断链。在这项研究中,已根据停留时间的函数对其进行了量化,以选择基于聚丙交酯的聚合物。使用的技术包括热重分析(总体质量损失),差示扫描量热法(玻璃化转变,熔融和重结晶温度),凝胶渗透色谱法(分子量)和比浓对数测量。实验表明,大于6小时的静态加热间隔足以破坏聚(l-丙交酯)和聚(d,l-丙交酯)的分子链完整性。具有聚(β-己内酯)和聚(乙醇酸)的共聚物对热负荷更具弹性,但仍然受到严重影响。总的来说,差示扫描量热法的结果被认为是定量降解现象的补充数据的良好来源,而固有粘度的测量结果已被证实与凝胶渗透色谱法的结果有关,这表明聚合物链的缩短。 。

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