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3D-Printed Polyester-Based Prototypes for Cosmetic Applications—Future Directions at the Forensic Engineering of Advanced Polymeric Materials

机译:用于化妆品的3D打印聚酯基原型—先进聚合物材料法医工程的未来方向

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摘要

Knowledge of degradation and impairment phenomena of (bio)degradable polymeric materials under operating conditions, and thus the selection of test procedures and prediction of their behavior designates the scope and capabilities as well as possible limitations of both: the preparation of the final product and its durability. The main novelty and objective of this research was to determine the degradation pathways during testing of polylactide and polylactide/polyhydroxyalkanoate materials made with three-dimensional printing and the development of a new strategy for the comprehensive characterization of such complex systems including behavior during waste disposal. Prototype objects were subjected to tests for damage evolution performed under simulating operating conditions. The reference samples and the tested items were characterized by gel permeation chromatography and differential scanning calorimetry to determine changes in material properties. The studies showed that: polyhydroxyalkanoate component during accelerated aging and degradation in environments rich in microorganisms accelerated the degradation of the material; paraffin accelerates polylactide degradation and slows degradation of polyhydroxyalkanoate-based material; under the influence of an environment rich in enzymes, paraffin contamination accelerates biodegradation; under the influence of natural conditions, paraffin contamination slowed degradation; the processing conditions, in particular the printing orientation of individual parts of the container, influenced the material properties in its various regions, affecting the rate of degradation of individual parts.
机译:对(生物)可降解聚合物材料在操作条件下的降解和损伤现象的了解,以及对测试程序的选择以及对它们行为的预测,指定了范围和能力以及两者的局限性:最终产品的制备及其耐用性。这项研究的主要新颖性和目的是确定在测试由三维印刷制成的聚丙交酯和聚丙交酯/聚羟基链烷酸酯材料过程中的降解途径,并开发出一种新的策略来对这种复杂系统进行全面表征,包括废物处理过程中的行为。对原型对象进行了模拟运行条件下的损伤演化测试。通过凝胶渗透色谱和差示扫描量热法对参比样品和被测物进行表征,以确定材料性能的变化。研究表明:在富含微生物的环境中,加速老化和降解过程中的聚羟基链烷酸酯组分加速了材料的降解;石蜡可加速聚丙交酯的降解,并减慢基于聚羟基链烷酸酯的材料的降解;在富含酶的环境的影响下,石蜡污染会加速生物降解。在自然条件下,石蜡污染减缓了降解;加工条件,特别是容器各个部分的印刷方向,影响了其各个区域的材料性能,影响了各个部分的降解速度。

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