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Performance of Poly(lactic acid) Surface Modified Films for Food Packaging Application

机译:食品包装用聚乳酸表面改性膜的性能

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摘要

Five Poly(lactic acid) (PLA) film samples were analyzed to study the gas barrier behavior, thermal stability and mechanical performance for food packaging application. O2, CO2, N2, N2O, and C2H4 pure gases; Air; and Modified Atmosphere (MA, 79% N2O/21% O2) were used to analyze the influence of the chemical structure, storage temperature and crystalline phase on the gas barrier behavior. The kinetic of the permeation process was investigated at different temperatures, ranging from 5 °C to 40 °C. Annealing thermal treatment on the samples led to the crystalline percentage, influencing especially the gas solubility process. Thermal properties such as Tg and χc, and mechanical properties such as tensile strength and modulus were remarkably improved with surface PLA modification. A more pronounced reinforcing effect was noted in the case of metallization, as well as improved gas barrier performance. Tensile testing and tensile cycling tests confirmed the rigidity of the films, with about a 20% loss of elasticity after 25 cycles loading.
机译:分析了五个聚乳酸膜样品,以研究食品包装应用的阻气性,热稳定性和机械性能。 O2,CO2,N2,N2O和C2H4纯气体;空气;并使用改性大气(MA,N2O / 21%O2)(79%N2O / 21%O2)分析化学结构,储存温度和晶相对阻气性能的影响。在5°C至40°C的不同温度下研究了渗透过程的动力学。对样品进行退火热处理会导致结晶百分率,尤其影响气体溶解过程。通过表面PLA改性,Tg和χc等热性能以及拉伸强度和模量等机械性能得到显着改善。在金属化的情况下,观察到更明显的增强效果,并且改善了阻气性能。拉伸试验和拉伸循环试验证实了膜的刚性,在25次循环加载后弹性损失了约20%。

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