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Wood plastic composites (WPC) based on high-density polyethylene and birch wood plywood production residues

机译:基于高密度聚乙烯和桦木胶合板生产残留物的木塑料复合材料(WPC)

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摘要

uch research is being devoted to green bio-composites production and properties. The most popular materials in this field are wood plastic composites (WPC) based on polyolefins and different wood fibres. Our studies are focussed on investigating the properties (physical, mechanical and water uptake) of high-density polyethylene-based bio-composites, containing birch wood veneer byproduct from plywood production: and plywood sanding dust (PSD). The fluidity of composite melts was noted by melt flow index (MFI) measurements. Fracture mechanisms of the composites were investigated with scanning electron microscopy studies. For WPC modification, the coupling agent maleated polyethylene (MAPE) was used. WPC loaded with PSD showed improvement in tensile,flexural and micro hardness properties, but MFI, impact strength and deformation ability decreased with an increase in the filler content. By contrast, water resistance significantly increases with the presence of MAPE in the composites.
机译:UCH研究正在致力于绿色生物复合材料的生产和性质。 该领域最受欢迎的材料是基于聚烯烃和不同木纤维的木塑复合材料(WPC)。 我们的研究侧重于调查高密度聚乙烯的生物复合材料的性质(物理,机械和水吸收),含有胶合板生产的桦木胶合板副产品:和胶合板砂光粉尘(PSD)。 通过熔融流动指数(MFI)测量来注意复合熔体的流动性。 用扫描电子显微镜研究研究了复合材料的断裂机制。 对于WPC改性,使用偶联剂的聚乙烯(MAPE)。 加载PSD的WPC显示出拉伸,弯曲和微硬度特性的改善,但MFI,冲击强度和变形能力随填料含量的增加而降低。 相比之下,随着复合材料中的MAPE存在,耐水性显着增加。

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