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首页> 外文期刊>Polymer engineering and science >Influence of Hybrid Cellulose/Bentonite Fillers on Structure, Ambient, and Low Temperature Tensile Properties of Thermoplastic Starch Composites
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Influence of Hybrid Cellulose/Bentonite Fillers on Structure, Ambient, and Low Temperature Tensile Properties of Thermoplastic Starch Composites

机译:杂交纤维素/膨润土填料对热塑性淀粉复合材料结构,环境和低温拉伸性能的影响

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Thermoplastic starch (TPS) composites incorporating bentonite/cellulose (Bent/Cellulose) hybrid fillers in different ratios were prepared by film casting. Ultra-sonication was done to promote good dispersion of filler in the host TPS and enhance the filler-matrix interactions. Ultra-sonicated fillers resulted in superior improvement in the tensile properties when the samples preconditioned at both ambient and 2 degrees C. Upon preconditioning at 2 degrees C, the TPS composite containing the ultra-sonicated hybrid bent/cellulose in 80:20 ratio displayed the greatest tensile properties achievement among all the tested materials. These could be due to the effect of low temperature interactions between the starch, plasticizers, and the hybrid fillers. Differential scanning calorimetry analysis proved the changes in the crystallinity and dynamic characteristic of the TPS molecular chains which benefit in enhancing the biopolymer elongation at break and toughness, even when stored at refrigerated condition. In summary, the TPS/bent/cellulose composite has potential to be further developed for refrigerated food packaging application. POLYM. ENG. SCI., 2020. (c) 2020 Society of Plastics Engineers
机译:通过薄膜浇铸制备掺入膨润土/纤维素(弯曲/纤维素)杂化填料的热塑性淀粉(TPS)复合材料。进行超声证,以促进填料在宿主TPS中的良好分散,并增强填充基质相互作用。当在2摄氏度的预处理时,在预处理时预处理时,超声填充剂的抗拉性填料优异地改善了拉伸性能,其中含有80:20中的超声型杂交弯/纤维素的TPS复合材料所有测试材料中最大的拉伸性能成就。这些可能是由于淀粉,增塑剂和杂化填料之间的低温相互作用的影响。差分扫描量热法分析证明了TPS分子链的结晶度和动态特性的变化,其益处在增强在破裂和韧性时,即使储存在冷藏条件下也是如此。总之,TPS /弯曲/纤维素复合材料具有进一步开发用于冷藏食品包装应用的可能性。聚合物。 eng。 SCI。,2020年。(c)2020塑料工程师协会

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