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首页> 外文期刊>Journal of Composite Materials >Numerical analysis of wood-high-density polyethylene composites: A hyperelastic approach
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Numerical analysis of wood-high-density polyethylene composites: A hyperelastic approach

机译:木材高密度聚乙烯复合材料的数值分析:一种高弹性方法

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The application of a hyperelastic approach to simulate the tensile mechanical behavior of wood fiber/polymer composites is proposed. This research was conducted with the purpose of selecting the theoretical model that best fits the experimental data for use in the finite element model. The analyses by the four strain energy density functions (Polynomial, Ogden, Yeoh, and Marlow models) and the Cauchy-Green tensor invariants were used as the theoretical models. The experimental mechanical behavior of three wood fiber/polymer composites formulated with high-density polyethylene as the polymer matrix, and pine, cherry, and walnut sawdust as the fillers, at a concentration of 40 wt%, was evaluated. Experimental data showed that with filler addition, the tensile modulus of the high-density polyethylene matrix increased almost 131% regarding the neat high-density polyethylene; however, no significant differences were found respecting the kind of sawdust. Nevertheless, it was found that the elongation (%) at break was higher when walnut sawdust was employed. As for the strain energy density function analyses, the best approximation to the experimental data was achieved by the Marlow model, because this model only demands the sum of the principal extension ratios for a polymer-based material, I-1. The numerical results showed that the proposed finite element model predicts the response with less than 1% error, regarding the experimental data, and consequently the use of the finite element models was simplified for the prediction of the tensile mechanical behavior of this kind of composites.
机译:提出了一种超弹性方法来模拟木纤维/聚合物复合材料的拉伸力学行为。该研究是以选择最适合于有限元模型的实验数据的理论模型的理论模型进行。通过四种应变能密度函数(多项式,OGDEN,YeOH和Marlow模型)和Cauchy-Green Tensor不变的分析用作理论模型。评价了用高密度聚乙烯配制的三种木纤维/聚合物复合材料的实验力学行为,作为聚合物基质,以及作为填料的浓度为浓度为40wt%的填料。实验数据表明,通过填充剂,高密度聚乙烯基质的拉伸模量对于整洁的高密度聚乙烯增加了几乎为131%;然而,发现没有显着的差异尊重锯末的那种。然而,发现当使用核桃锯末时,断裂处的伸长(%)更高。对于应变能量密度函数分析,Marlow模型实现了对实验数据的最佳近似,因为该模型仅要求聚合物基材料I-1的主延伸比的总和。数值结果表明,所提出的有限元模型预测误差小于1%的误差,关于实验数据,因此简化了用于预测这种复合材料的拉伸力学行为的有限元模型的使用。

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