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Experimental and numerical investigation into mechanical degradation of polymers

机译:聚合物机械降解的实验和数值研究

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摘要

Polymers have myriad uses in the modern world, but their advantageous properties can be compromised by degradation induced via moisture absorption. This work presents a novel reduced order numerical model for the mechanical behavior and degradation of polymers, along with experimental results, illustrating the influence of water absorption on 3D printed and injection molded nylon 6. The nylon 6 specimens are immersed in water at 21 degrees C and 70 degrees C, temperatures above and below the glass transition temperature. Both the water absorption behavior and the influence of the absorbed water on thermomechanical and tensile properties are investigated. The hygroscopic nylon 6 absorbs up to 10% water when immersed at 21 degrees C. The rate of absorption for the 3D printed specimens is higher than that of the injection molded specimens at both temperatures. This absorbed water enhances polymer chain mobility and results in significantly lower storage modulus and glass transition temperatures after only 1 day of immersion. Consequently, as much as 30% reduced modulus and strength are observed during this period. The constitutive model capably captures the degradation of polymer mechanical behavior as a function of water concentration for both materials and temperatures investigated.
机译:聚合物在现代世界中有无数的用途,但它们的有利特性可以通过通过吸湿性诱导的降解来损害。该工作提出了一种新颖的减少阶数值数值模型,用于对聚合物的力学行为和降解,以及实验结果,说明吸水对3D印刷和注塑尼龙6的影响。尼龙6样品在21℃下浸入水中和70℃,温度高于和低于玻璃化转变温度。研究了吸水性行为和吸收水对热机械和拉伸性能的影响。吸湿尼龙6在浸入21摄氏度时吸收至10%的水。3D印刷样本的吸收率高于两个温度下的注塑试样的吸收率。该吸收的水增强了聚合物链迁移率,并导致仅在浸渍1天后显着降低储存模量和玻璃化转变温度。因此,在此期间观察到模量和强度的增加多达30%。本构模型可将聚合物机械行为的劣化作为两种材料和温度的水浓度的函数捕获。

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