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Sub-surface mechanical properties and sub-surface creep behavior of wood-plastic composites reinforced by organoclay

机译:有机粘土增强木塑复合材料的亚表面力学性能和亚表面蠕变行为

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Wood-plastic composites (WPC) were manufactured from polypropylene, wood flour, maleic anhydride grafted polypropylene and organoclay. The sub-surface mechanical properties and the sub-surface creep behavior of the organoclay-based WPC were examined by the nanoindentation technique. The results showed that the hardness, elastic modulus and creep resistance of the WPC enhanced with the loading of C20 organoclay. This enhancement was subject to the organoclay content and the dispersion of organoclay in the polymer matrix. The hardness, elastic modulus and creep resistance of WPC with 1 wt% organoclay content enhanced by approximately 36%, 41% and 17%, respectively, in contrast with WPC without organoclay. To study the impact of organoclay content on the creep performance of WPC, a viscoelastic model was actualized. The results demonstrated that the model was in good agreement with the experimental information. Reinforcement of organoclay prompts expansion in elastic deformation and instigates a higher initial displacement at the early stage of creep.
机译:木塑复合材料(WPC)由聚丙烯,木粉,马来酸酐接枝聚丙烯和有机粘土制成。通过纳米压痕技术检查了有机粘土基木塑复合材料的表面力学性能和表面蠕变行为。结果表明,木炭的硬度,弹性模量和抗蠕变性随C20有机粘土含量的增加而提高。这种增强取决于有机粘土含量和有机粘土在聚合物基质中的分散性。与没有有机粘土的WPC相比,有机粘土含量为1 wt%的WPC的硬度,弹性模量和抗蠕变性分别提高了约36%,41%和17%。为了研究有机粘土含量对木塑复合材料蠕变性能的影响,建立了粘弹性模型。结果表明该模型与实验信息吻合良好。有机粘土的增强促使弹性变形扩展,并在蠕变的早期促使较高的初始位移。

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