首页> 外文期刊>Journal of polymer engineering >POLY (L-LACTIC ACID)/LAYERED SILICATE NANOCOMPOSITE BLOWN FILM FOR PACKAGING APPLICATION: THERMAL, MECHANICAL AND BARRIER PROPERTIES
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POLY (L-LACTIC ACID)/LAYERED SILICATE NANOCOMPOSITE BLOWN FILM FOR PACKAGING APPLICATION: THERMAL, MECHANICAL AND BARRIER PROPERTIES

机译:用于包装的聚(L-乳酸)/层状硅酸盐纳米复合吹塑薄膜:热,机械和阻隔性能

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摘要

In an attempt to alleviate the global solid waste disposal problem and to reduce the dependence on petroleum-based plastics for packaging materials, biodegradable and compostable thermoplastic polymers are required. Polylactic acid (PLLA) is a highly versatile biodegradable polymer derived from 100% renewable resources. Three types of PLA nanocomposites containing 1, 3 and 5 phr of nanoclay were compounded in a co-rotating twin screw extruder, to study the effect of nanoclay content on film processibility of composites as well as properties of blown films. Differential scanning calorimetry (DSC) showed that the cold crystallization and melting temperatures were influenced by the presence of nanoclay. The thermogravimetric analysis (TGA) showed increase in the decomposition temperature for all of the nanocomposites. Mechanical properties of the nanocomposite film showed that the elongation (%) increased up to 3 phr of clay whereas tensile strength and modulus increased only up to 1 phr of the nanoclay. Nanocomposite films showed an improvement in oxygen barrier and water vapor barrier in comparison to the neat PLA up to 3 phr of nanoclay.
机译:为了减轻全球固体废物处理问题并减少对包装材料对石油基塑料的依赖性,需要可生物降解和可堆肥的热塑性聚合物。聚乳酸(PLLA)是一种高度通用的生物可降解聚合物,源自100%可再生资源。在同向旋转双螺杆挤出机中混合三种类型的含有1、3和5 phr纳米粘土的PLA纳米复合材料,以研究纳米粘土含量对复合材料薄膜加工性能以及吹塑薄膜性能的影响。差示扫描量热法(DSC)表明,冷结晶和熔化温度受纳米粘土的存在影响。热重分析(TGA)显示所有纳米复合材料的分解温度均升高。纳米复合膜的机械性能表明,伸长率(%)增加到粘土的3 phr,而拉伸强度和模量仅增加到粘土的1 phr。与纯净的PLA相比,纳米复合膜在不超过3 phr的纳米粘土中表现出了更好的氧气阻隔性和水蒸气阻隔性。

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  • 来源
    《Journal of polymer engineering》 |2010年第7期|P.361-375|共15页
  • 作者单位

    Centre for Polymer Science & Engineering,Indian Institute of Technology, Delhi, New Delhi, India;

    rnDepartment of Chemical and Metallurgical Engineering, Rheology and Materials Processing Centre, RMIT University, Melbourne,Vic.,Australia;

    rnCentre for Polymer Science & Engineering,Indian Institute of Technology, Delhi, New Delhi, India;

    rnCentre for Polymer Science & Engineering,Indian Institute of Technology, Delhi, New Delhi, India;

    rnDepartment of Chemical and Metallurgical Engineering, Rheology and Materials Processing Centre, RMIT University, Melbourne,Vic.,Australia;

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  • 入库时间 2022-08-17 14:02:57

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