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Structure and Properties of Gas-Filled Biocomposites on the Basis of Polyethylene

机译:基于聚乙烯的气体填充生物复合材料的结构与性能

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Gas-filled composite materials were obtained by foaming of low density polyethylene (PE) and introduction of natural components. Particulate chemical gas-generating agent hydrocerol was used for the polyethylene porosity. Particulate biodegradable filler, wood flour, and corn starch were used as the natural components. Investigation of structure, physical, and physicomechanical properties of the materials was performed. It is shown that the polyethylene structure became inhomogeneous: pores and foreign inclusions were observed. The density and physicomechanical properties decreased. It is noted that such peculiarities of the material as low density and the presence of pores and particles of the hydroscopic filler increase the capacity for biodegradation. Evaluation of the capacity of the material to degrade in the environment was conducted. Results of the evaluation demonstrate the weight loss of the samples with the biodegradable filler, which may be explained by the destructive effect of microorganisms, partial washing of the filler, and fragmentation of the sample. The samples of the gas-filled composite materials, with reduced performance properties but retained at a sufficient level, proved the promising outlook for their application as packaging materials and sealing packaging elements for the nonfood goods.
机译:充气复合材料是通过低密度聚乙烯(PE)发泡并引入天然成分获得的。颗粒化学气体发生剂水蜡油用于聚乙烯的孔隙率。颗粒状可生物降解的填料,木粉和玉米淀粉被用作天然成分。对材料的结构,物理和物理机械性能进行了研究。结果表明聚乙烯结构变得不均匀:观察到孔和异物。密度和物理力学性能下降。应当指出的是,这种材料的特性如低密度以及吸水填充物的孔和颗粒的存在增加了生物降解的能力。评估了材料在环境中降解的能力。评价结果证明了具有可生物降解的填料的样品的重量损失,这可以用微生物的破坏作用,填料的部分洗涤和样品的破碎来解释。充气复合材料的样品虽然性能特性有所下降,但仍保持了足够的水平,证明了其作为非食品包装材料和密封包装元件的应用前景广阔。

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