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聚乳酸及聚乳酸/淀粉复合材料在温暖潮湿环境中水解降解与热氧化降解的区分

Differentiation between Hydrolytic and Thermo-Oxidative Degradation of Poly(lactic acid) and Poly(lactic acid)/Starch Composites in Warm and Humid Environments.

作者信息

Goetjes Victoria, Zarges Jan-Christoph, Heim Hans-Peter

机构信息

Institute of Material Engineering, Polymer Engineering, University of Kassel, Mönchebergstr. 3, 34125 Kassel, Germany.

出版信息

Materials (Basel). 2024 Jul 25;17(15):3683. doi: 10.3390/ma17153683.

Abstract

For the application of poly(lactic acid) (PLA) and PLA/starch composites in technical components such as toys, it is essential to know their degradation behavior under relevant application conditions in a hydrothermal environment. For this purpose, composites made from PLA and native potato starch were produced using twin-screw extruders and then processed into test specimens, which were then subjected to various one-week ageing processes with varying temperatures (23, 50, 70, 90 °C) and humidity levels (10, 50, 75, 90%). This was followed by mechanical characterization (tensile test) and identification of degradation using Gel Permeation Chromatography (GPC), Thermogravimetric Analysis (TGA), Fourier Transform Infrared Spectroscopy (FTIR), and Nuclear Magnetic Resonance spectroscopy (NMR). With increasing temperature and humidity, there was a clear degradation of the PLA, which could be reduced or slowed down by adding 50 wt.% starch, due to increased crystallinity. Hydrolysis was identified as the main degradation mechanism for PLA and PLA/starch composites, especially above the glass transition temperature, with thermo-oxidative degradation also playing a subordinate role. Both hydrolytic degradation and thermo-oxidative degradation led to a reduction in mechanical properties such as tensile strength.

摘要

对于聚乳酸(PLA)和PLA/淀粉复合材料在玩具等技术部件中的应用而言,了解它们在水热环境中相关应用条件下的降解行为至关重要。为此,使用双螺杆挤出机制备了由PLA和天然马铃薯淀粉制成的复合材料,然后将其加工成测试样品,随后对这些样品进行了为期一周的不同温度(23、50、70、90°C)和湿度水平(10、50、75、90%)的老化处理。接着进行了机械性能表征(拉伸试验),并使用凝胶渗透色谱法(GPC)、热重分析(TGA)、傅里叶变换红外光谱法(FTIR)和核磁共振光谱法(NMR)来鉴定降解情况。随着温度和湿度的升高,PLA出现明显降解,由于结晶度增加,添加50 wt.%的淀粉可使其降解程度降低或减缓。水解被确定为PLA和PLA/淀粉复合材料的主要降解机制,尤其是在玻璃化转变温度以上,热氧化降解也起次要作用。水解降解和热氧化降解均导致拉伸强度等机械性能下降。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e63a/11313141/f72257f947f2/materials-17-03683-g001.jpg

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