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Modeling of the mechanical degradation induced by moisture absorption in short natural fiber reinforced composites

机译:天然短纤维增强复合材料吸湿引起的机械降解模型

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摘要

This paper develops a constitutive model of short natural fiber reinforced composites (SNFRCs), with the consideration of nonlinear constitutive relation and large deformation induced by moisture absorption. This model accounts for the processes of moisture absorption and mechanical degradation in SNFRCs by a single internal variable, since these two thermodynamic processes are found correlated with each other. This internal variable is introduced to modify the Neo-Hookean model, from which the evolution equations of these two processes are derived by specifying a suitable energy dissipation function. Both the moisture absorption and the mechanical degradation are shown sensitive to the fiber content and could be enlarged with exposure time in a humid environment. Theoretical predictions of the evolution of the internal variable are compared with experimental results of short sisal fiber reinforced polypropylene and it is shown a good agreement between them. Moreover, this model is used to give a reasonable prediction of the degraded Young's modulus of SNFRCs.
机译:考虑到非线性本构关系和吸水引起的大变形,本文建立了天然短纤维增强复合材料(SNFRCs)的本构模型。该模型通过单个内部变量解释了SNFRC中的吸湿和机械降解过程,因为发现这两个热力学过程相互关联。引入此内部变量以修改Neo-Hookean模型,并通过指定合适的能量耗散函数从中推导这两个过程的演化方程。水分吸收和机械降解都显示出对纤维含量敏感,并且在潮湿环境中会随着暴露时间的增加而增大。将内部变量演变的理论预测与短剑麻纤维增强聚丙烯的实验结果进行了比较,并显示出它们之间的良好一致性。此外,该模型可用于合理预测SNFRC的降级杨氏模量。

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