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Correlation between the mechanical properties and the amount of desorbed water for composites based on a recycled low-density polyethylene and linen yarn production waste

机译:基于回收的低密度聚乙烯和亚麻纱线生产废料的复合材料的机械性能与解吸水量之间的相关性

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The effect of the amount of sorbed water on the mechanical properties (tensile modulus, tensile strength, unit work of fracture, and characteristic strains) of composites based on a recycled low-density polyethylene, both unmodified and modified with diphenylmethane diisocyanate (DIC), is an a lyzed by statistical methods. The results of tensile tests are found to depend on the amount of sorbed water considerably. The elastic modulus, the unit work of fracture, and the characteristic strains correlate linearly with the amount of water. It is found that the elastic modulus drops after the sorption of water, but then, during the desorption process, it is restored gradually and reaches its initial value after a 30-day drying. This is explained by the plasticizing effect of water on composite materials containing hydrophilic natural fibers. DIC improves the interfacial interaction of the fiber-matrix interface and slows down the desorption of water. The investigations of the main deformational and strength characteristics of the unmodified and modified systems showed that the ad verse effect of water completely disappeared after a 30-day drying. The same conclusion, with a 95% probability, can be drawn from the results of an analysis of variance (ANOVA).
机译:吸附水量对未改性的和经二苯基甲烷二异氰酸酯(DIC)改性的循环再用低密度聚乙烯的复合材料的机械性能(拉伸模量,拉伸强度,断裂单位功和特征应变)的影响,是通过统计方法进行分析的。发现拉伸试验的结果很大程度上取决于吸附的水量。弹性模量,断裂的单位功和特征应变与水量线性相关。发现吸水后弹性模量下降,但是随后在解吸过程中,弹性模量逐渐恢复并在干燥30天后达到其初始值。这可以通过水对含有亲水性天然纤维的复合材料的增塑作用来解释。 DIC改善了纤维-基质界面的界面相互作用,并减慢了水的解吸速度。对未改性和改性体系的主要变形和强度特性的研究表明,干燥30天后,水的不利影响完全消失。可以从方差分析(ANOVA)的结果得出具有95%概率的相同结论。

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