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Physical and mechanical properties of composites based on polypropylene and timber industry waste

机译:基于聚丙烯和木材工业废料的复合材料的物理和机械性能

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Wood polymer composites (WPC) are widely used materials in different industries because of many application, processing and recycling advantages compared to traditional thermoplastic polymer composites containing mineral fillers [1]. However, the commercial success of these materials primarily depends on improvements in moisture performance, and ability to use recycled and waste material as a wood filler. The research regarding WPC is focused on the chemical interaction between dissimilar material components with an aim to provide strong adhesion to the surface of wood filler-polymer matrix [2]. The goal of this paper was to present results of investigations of exploitation properties of composites containing different plywood production industry byproducts and polypropylene. It was shown that modification of all composites with coupling agent maleated polypropylene (MAPP) considerably improve physical mechanical properties (tensile, flexural, impact strength) of WPC. MAPP (5 wt.%) additions also significantly improve water resistance of WPC. SEM investigations confirmed positive action of interfacial modifiers on strengthening of adhesion interaction between components wood and PP matrix that give considerable increase of exploitation properties of the WPC.
机译:木质聚合物复合材料(WPC)与包含矿物填料的传统热塑性聚合物复合材料相比具有许多应用,加工和回收利用优势,因此在不同行业中被广泛使用[1]。但是,这些材料的商业成功主要取决于防潮性能的提高以及将回收利用的废料用作木材填料的能力。关于WPC的研究集中在异种材料组分之间的化学相互作用上,目的是提供对木材填料-聚合物基体表面的牢固粘合力[2]。本文的目的是提出研究含不同胶合板生产行业副产品和聚丙烯的复合材料开发性能的结果。结果表明,用马来酸化聚丙烯酸酯(MAPP)偶联剂对所有复合材料进行改性可显着提高WPC的物理机械性能(拉伸,弯曲,冲击强度)。 MAPP(5重量%)的添加也显着改善了WPC的耐水性。 SEM研究证实了界面改性剂对增强木材和PP基体之间的粘合相互作用的积极作用,从而大大提高了WPC的利用性能。

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