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首页> 外文期刊>American Journal of Mechanics and Applications >Composites Based on Iroko Wood Flour Stabilized Using High Density Polyethylene Resin Recovered: 1. Mechanical Properties
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Composites Based on Iroko Wood Flour Stabilized Using High Density Polyethylene Resin Recovered: 1. Mechanical Properties

机译:使用高密度聚乙烯树脂稳定化的Iroko木粉复合材料回收: 1.机械性能

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Nowadays, waste management has become one of the major priorities for the protection of ecosystems. Among these wastes, those of plastic origin require particular importance. As an alternative solution to this problem, this waste is reused for other purposes such as the development of new materials. The work presented proposes, on the one hand, to develop a composite based on Iroko wood flour stabilized by high density polyethylene resin (Hdpe) and, on the other hand, to measure its mechanical characteristics. To do this, resin mass contents varying from 10 to 60 were mixed with the flour to obtain composites according to a well-defined method. The variation of these mechanical properties has been studied as a function of the proportions of the binder. The measurements carried out related to the behavior in compression, in flexion and in traction. It appears that the mechanical strengths increase for high levels of binder. In addition, for each resin content, the composite has an increasingly resistant behavior in compression than in traction and in flexion. For example, for 60 of Hdpe, the strengths are equal to 23.95 MPa in compression, 18.22 MPa in tension and 13,17 MPa in flexion. However, from 50, the material adopts an increasingly stable behavior. In addition, it becomes more ductile and deformable as the binder content increases. The use of the proposed method is an alternative for the management of the waste.
机译:如今,废物管理已成为保护生态系统的主要优先事项之一。在这些废物中,塑料来源的废物尤为重要。作为这个问题的替代解决方案,这些废物被重新用于其他目的,例如开发新材料。所提出的工作一方面建议开发一种基于高密度聚乙烯树脂(Hdpe)稳定的Iroko木粉的复合材料,另一方面测量其机械特性。为此,将10%至60%的树脂质量含量与面粉混合,以根据明确定义的方法获得复合材料。这些机械性能的变化已被研究为粘合剂比例的函数。进行的测量与压缩、屈曲和牵引行为有关。对于高含量的粘合剂,机械强度似乎会增加。此外,对于每种树脂含量,复合材料在压缩方面的抵抗力比在牵引和弯曲方面的抵抗力更强。例如,对于 60% 的 Hdpe,强度等于 23.95 MPa 的压缩、18.22 MPa 的拉伸和 13,17 MPa 的弯曲。然而,从50%开始,材料采用越来越稳定的行为。此外,随着粘合剂含量的增加,它变得更具延展性和可变形性。使用拟议的方法是废物管理的替代方法。

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