木质素增强的木塑复合材料性能及微观形貌特征研究

Study on Properties and Microscopic Morphology of Lignin-reinforced Wood Plastic Composites

  • 摘要: 利用碱木质素、桉木粉、高密度聚乙烯和助剂,采用挤出造粒、热压成型的方法制备木塑复合材料,分析研究了碱木质素制备木塑复合材料以及碱木质素含量对复合材料多项性能的影响。结果表明:碱木质素可以作为原料之一用来制备木塑复合材料,在一定添加范围内,制备的木塑复合材料内部结构更为致密、均匀,同时碱木质素的加入还可以提高木塑复合材料的拉伸强度、冲击强度,改善尺寸稳定性。此外,腐朽实验表明,木质素制备的木塑复合材料体现出了更好的耐腐性。综合考虑木塑复合材料的多项指标及木质素的利用率,碱木质素添加量为10%与15%时,制备的木塑复合材料性能较佳。

     

    Abstract: Wood plastic composites (WPC) were prepared by alkali lignin, eucalyptus powder, high density polyethylene (HDPE) and additives through extrusion granulation and hot compression molding. The effects of alkali lignin content on the properties of WPC were multi-analyzed in the study. The results show that alkali lignin can be used as one of the raw materials to prepare WPC materials, and within a certain range of lignin content, the internal structure of the prepared WPC materials was more compact and uniform. Meanwhile, the addition of alkali lignin can also improve the tensile strength, impact strength and dimensional stability of the composite materials. Furthermore, the decay experiments show that WPC prepared by lignin have preferable decay resistance against decay fungi. Through multi-analysis of experimental results, the optimum formulation is proposed with the addition amount of alkali lignin is 10%–15%.

     

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