Vilaseca Fabiola, Valadez-Gonzalez Alex, Herrera-Franco Pedro J, Pèlach M Angels, López Joan Pere, Mutjé Pere
Grup Lepamap, Departament d'Enginyeria Química Agrària i Tecnologia Agroalimentària, Universitat de Girona, Campus Montilivi s/n, 17071 Girona, Spain.
Bioresour Technol. 2010 Jan;101(1):387-95. doi: 10.1016/j.biortech.2009.07.066. Epub 2009 Aug 22.
In this paper, abaca strands were used as reinforcement of polypropylene matrix and their tensile mechanical properties were studied. It was found relevant increments on the tensile properties of the abaca strand-PP composites despite the lack of good adhesion at fiber-matrix interface. Afterwards, it was stated the influence of using maleated polypropylene (MAPP) as compatibilizer to promote the interaction between abaca strands and polypropylene. The intrinsic mechanical properties of the reinforcement were evaluated and used for modeling both the tensile strength and elastic modulus of the composites. For these cases, the compatibility factor for the ultimate tensile strength was deduced from the modified rule of mixtures. Additionally, the experimental fiber orientation coefficient was measured, allowing determining the interfacial shear strengths of the composites and the critical fiber length of the abaca strand reinforcement. The mechanical improvement was compared to that obtained for fiberglass-reinforced PP composites and evaluated under an economical and technical point of view.
在本文中,蕉麻纤维束被用作聚丙烯基体的增强材料,并对其拉伸力学性能进行了研究。结果发现,尽管在纤维 - 基体界面缺乏良好的粘结力,但蕉麻纤维束 - 聚丙烯复合材料的拉伸性能仍有显著提高。随后,阐述了使用马来酸酐接枝聚丙烯(MAPP)作为增容剂来促进蕉麻纤维束与聚丙烯之间相互作用的影响。对增强材料的固有力学性能进行了评估,并用于对复合材料的拉伸强度和弹性模量进行建模。在这些情况下,根据修正的混合法则推导出了极限拉伸强度的相容性因子。此外,测量了实验纤维取向系数,从而确定了复合材料的界面剪切强度和蕉麻纤维束增强材料的临界纤维长度。将这种力学性能的改善与玻璃纤维增强聚丙烯复合材料所获得的改善进行了比较,并从经济和技术角度进行了评估。