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Influence of different clays on the mechanical, thermal, and water absorption properties of recycled high-density polyethylene/wood flour hybrid composites

机译:不同粘土对再生高密度聚乙烯/木粉杂交复合材料的机械,热和吸水性能的影响

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Wood plastic composites based on recycled high-density polyethylene (r-HDPE)/wood flour with the addition of organically modified clays were prepared by melt mixing and compression molding. The effect of two different types and contents of clays, bentonite and layered double hydroxide – on the mechanical, thermal, and water absorption properties of the wood plastic composites – was examined to identify the most effective clay type for wood plastic composites. It was found that incorporation of 2?wt% modified bentonite (mBNT) clay was the most effective in the composite formulation; it has significantly enhanced the properties of the wood plastic composites. The scanning electron micrographs of the fractured surfaces showed improved interfacial adhesion of the composite components. The tensile strength of wood plastic composites was increased by 9.7% when 2?wt% mBNT clay was incorporated in the composite formulation; however, the tensile strength slightly decreased as the clay content was further increased. The izod impact strength was lowered about 10.5% by 2?wt% mBNT clay. Moreover, the addition of 2?wt% mBNT clay enhanced the water resistance of the wood plastic composites by 27.5% after immersion in water for five days. On the other hand, the modified layered double hydroxide (mLDH) clay did not cause any remarkable improvement in the properties of the wood plastic composites. The tensile strength showed a decreasing trend with an increase in mLDH content. However, both clays did not improve the thermal stability of wood plastic composites. In addition, there are no noticeable changes in the values of melting temperature by increasing the content of clays. The experimental results indicated that the properties of the wood plastic composites were significantly improved when combined with the appropriate clay type and content. However, the interaction between wood flour and the intercalated clay particles as well as the processing conditions will need further stu
机译:通过熔融混合和压缩成型制备基于再循环的高密度聚乙烯(R-HDPE)/木粉的木塑复合材料。两种不同类型和粘土含量的含量,膨润土和层次双氢氧化物的效果 - 在木塑复合材料的机械,热和吸水性质上进行研究 - 以鉴定木塑复合材料最有效的粘土类型。发现掺入2〜WT%改性膨润土(MBNT)粘土在复合配方中最有效;它显着提高了木材塑料复合材料的性质。裂缝表面的扫描电子显微照片显示出改善复合组分的界面粘附。当掺入复合制剂中时,2〜重量%MBNT粘土,木塑复合材料的拉伸强度增加了9.7%;然而,随着粘土含量进一步增加,拉伸强度略微降低。 Izod冲击强度降低了约10.5%(2)〜0.5%,%MBNT粘土。此外,加入2〜wt%MBNT粘土在浸入水中浸泡五天后,将木塑复合材料的耐水性增强了27.5%。另一方面,改性的层状双氢氧化物(MLDH)粘土在木塑复合材料的性能下没有引起任何显着改善。拉伸强度显示出降低趋势,随着MLDH含量的增加。然而,两种粘土都没有提高木塑复合材料的热稳定性。另外,通过增加粘土的含量,熔融温度的值没有明显的变化。实验结果表明,当与合适的粘土类型和含量结合时,木塑复合材料的性能显着改善。然而,木面粉与插入粘土颗粒之间的相互作用以及加工条件将需要进一步的STU

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