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Thermo-mechanical degradation and stabilization of poly(butylene succinate)

机译:聚丁二酸丁二醇酯的热机械降解和稳定化

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The thermo-mechanical degradation and recyclability of poly(butylene succinate) (PBS) have been investigated by means of consecutive extrusion cycles under different temperature profiles, in order to simulate reprocessing intensive conditions. Herein it was found that PBS, when reprocessed at temperatures higher than 190 ℃, suffers from branching/recombination degradation reactions, resulting in extrudates of higher solution viscosity, and of bimodal distribution of molar masses. When typical stabilizers (Irganox~® 1010, Irgafos~® 168) were added, the thermo-mechanical degradation of PBS was significantly suppressed, revealing the radical character of the pertinent degradation reactions. The incorporation of stabilizers at the level of 0.1% efficiently maintained polymer properties through reprocessing, while the higher concentration of 0.5% had a negative impact on extrudates quality. On thermal properties basis, degraded and stabilized PBS exhibited similar melting and degradation points compared to virgin material, showing its possibility for mechanical recycling. However, the induced degradation resulted in accelerated melt crystallization and lower degree of crystallinity, which might be attributed to the nucleating effect of the formed branches. The addition of stabilizers restricted the increase of the melt crystallization rate, and the relevant melt behavior was found similar to virgin material.
机译:聚丁二酸丁二酯(PBS)的热机械降解和可回收性已通过在不同温度曲线下的连续挤出循环进行了研究,以模拟密集的后处理条件。在此发现,当在高于190℃的温度下进行再处理时,PBS会发生支链/重组降解反应,从而导致挤出物具有更高的溶液粘度,并且具有摩尔质量的双峰分布。当添加典型的稳定剂(Irganox®1010,Irgafos®®168)时,PBS的热机械降解得到了显着抑制,从而揭示了相关降解反应的自由基特征。稳定剂含量为0.1%时,可通过后处理有效地保持聚合物的性能,而0.5%的较高浓度对挤出物的质量有负面影响。基于热性质,与原始材料相比,降解和稳定的PBS表现出相似的熔点和降解点,显示了其机械回收的可能性。然而,诱导的降解导致熔体结晶加速和结晶度降低,这可能归因于所形成的分支的成核作用。稳定剂的加入限制了熔体结晶速率的增加,并且发现相关的熔体行为类似于原始材料。

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