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Creep behavior of PLA-based biodegradable plastic exposed to a hydrocarbon liquid

机译:暴露于烃类液体的PLA基生物可降解塑料的蠕变行为

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摘要

This study explores the effect of hydrocarbon liquid on creep behavior of polylactic acid (PLA)-based plastic. Evolution of the mechanical properties of the material was investigated experimentally by measurement of creep under tensile load. Tensile creep behavior was studied with a constant load over a temperature range from 30 to 50°C using specimens containing different levels of liquid. It was shown that the hydrocarbon liquid diffusion obeys the Fickian law of diffusion. The viscoelastic properties vary with temperature and these properties dramatically decrease above the glass transition temperature (T_g). Significant decreases in modulus and in the peak of tan δ were observed with an increase in liquid concentration at low temperatures. In contrast, at high temperatures, drier material recorded lower storage modulus. However, only small changes of T_g were recorded. Dependence of compliance on temperature was observed in the creep test at all levels of liquid content. With respect to drier samples, it was noted that the high liquid content material had a lower rate of increasing creep strain with temperature. Therefore, at elevated temperatures, higher creep strain of dry specimens was observed compared to those with a higher liquid content. The improvement of creep resistance and stiffening of material at high temperatures can be attributed to the significant increase of crystallinity fraction induced by liquid absorption. Understanding the effect of liquid diffusion in conjunction with temperature provides useful information for assessment of the potential use of this biodegradable plastic in load-bearing applications exposed to an organic liquid.
机译:这项研究探讨了烃液体对基于聚乳酸(PLA)的塑料的蠕变行为的影响。通过测量拉伸载荷下的蠕变,实验研究了材料力学性能的演变。使用包含不同含量液体的样品在30至50°C的温度范围内以恒定载荷研究了拉伸蠕变行为。结果表明,烃类液体的扩散服从菲克扩散定律。粘弹性性质随温度变化,并且这些性质在玻璃化转变温度(T_g)以上急剧降低。在低温下,随着液体浓度的增加,模量和tanδ的峰值显着下降。相反,在高温下,干燥剂材料的储能模量较低。但是,仅记录了T_g的微小变化。在蠕变试验中,在所有含量的液体中都观察到温度依从性。对于干燥样品,应注意的是,高液体含量的材料随温度的蠕变应变增加速率较低。因此,在高温下,与液体含量较高的样品相比,干燥样品的蠕变应变更高。高温下材料的耐蠕变性和刚性的提高可归因于液体吸收引起的结晶度的显着提高。了解液体扩散与温度的关系可以为评估这种可生物降解塑料在承受有机液体的承重应用中的潜在用途提供有用的信息。

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