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Effects of chemical modifications on the rheological and the expansion behavior of polylactide (PLA) in foam extrusion

机译:化学修饰对泡沫挤压丁基(PLA)流变和膨胀行为的影响

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摘要

It is well known that polylactide (PLA) is difficult to foam due to its low melt strength. Thus, many ways were described in the literature to enhance the foamabi-lity. However, the melt strength was actually determined only in a limited number of publications. In this study, the addition of chemical modifiers was used to change the rheological behavior of PLA and thereby improve its foamability in foam extrusion process. For the first time the use of dicumyl peroxide modified PLA in foam extrusion is described. Both modifications lead to a distinct increase in melt strength. Here, the highest increase was shown for the PLA modified with dicumyl peroxide. Furthermore, strain hardening was observed for PLA modified with the peroxide. Low density foams were achieved for neat and modified PLA in foam extrusion. Neat PLA showed a density of 45 kg/m3, while the peroxide modified PLA showed the highest expansion with a density reduction down to 32 kg/m3. Both modifications result in a more uniform cell structure and an improved compression strength. Here, the foamed, peroxide modified PLA showed outstanding performance compared to neat PLA foam with twice the compression strength (151 Pa) even at a 30% lower density.
机译:众所周知,由于其熔体强度的低熔体强度,聚丙酯(PLA)难以泡沫。因此,在文献中描述了许多方式以增强泡沫状尺寸。然而,熔体强度实际上仅在有限数量的出版物中确定。在该研究中,使用化学改性剂来改变PLA的流变行为,从而改善其在泡沫挤出过程中的发泡性。首次描述了在泡沫挤出中使用二甲基过氧化物改性PLA的使用。这两个修改都导致熔体强度不同。这里,显示用二甲基二甲基二磺酰基改性的PLA的最高增加。此外,用过氧化物改性PLA观察到应变硬化。在泡沫挤出中实现低密度泡沫以纯化和改性PLA实现。整洁的PLA显示密度为45kg / m 3,而过氧化物改性PLA显示出最高膨胀,密度降低至32kg / m 3。这两个修改都导致更均匀的电池结构和改善的压缩强度。这里,与纯PLA泡沫相比,泡沫过氧化物改性PLA表现出具有较好的压缩强度(151Pa)的纯PLA泡沫的效果,即使密度低30%。

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