Banaszak Aleksandra, Woźniak Magdalena, Dziurka Dorota, Mirski Radosław
Department of Mechanical Wood Technology, Poznan University of Life Sciences, Wojska Polskiego 28, 60-627 Poznań, Poland.
Department of Chemistry, Faculty of Forestry and Wood Technology, Poznan University of Life Sciences, Wojska Polskiego 75, 60-625 Poznań, Poland.
Materials (Basel). 2023 Jun 15;16(12):4400. doi: 10.3390/ma16124400.
This study investigated the mechanical, physical, and thermal properties of three-layer particleboards produced from annual plant straws and three polymers: polypropylene (PP), high-density polyethylene (HDPE), and polylactic acid (PLA). The rape straw ( L. var. Napus) was used as an internal layer, while rye ( L.) or triticale ( Witt.) was applied as an external layer in the obtained particleboards. The boards were tested for their density, thickness swelling, static bending strength, modulus of elasticity, and thermal degradation characteristics. Moreover, the changes in the structure of composites were determined by infrared spectroscopy. Among the straw-based boards with the addition of tested polymers, satisfactory properties were obtained mainly using HDPE. In turn, the straw-based composites with PP were characterized by moderate properties, while PLA-containing boards did not show clearly favorable properties either in terms of the mechanical or physical features. The properties of straw-polymer boards produced based on triticale straw were slightly better than those of the rye-based boards, probably due to the geometry of the strands, which was more favorable for triticale straw. The obtained results indicated that annual plant fibers, mainly triticale, can be used as wood substitutes for the production of biocomposites. Moreover, the addition of polymers allows for the use of the obtained boards in conditions of increased humidity.
聚丙烯(PP)、高密度聚乙烯(HDPE)和聚乳酸(PLA)制成的三层刨花板的机械性能、物理性能和热性能。油菜秸秆(甘蓝型油菜变种)用作内层,而黑麦(黑麦属)或小黑麦(×Triticosecale Wittm.)用作所得刨花板的外层。对这些板材进行了密度、厚度膨胀率、静态弯曲强度、弹性模量和热降解特性测试。此外,通过红外光谱法测定了复合材料结构的变化。在添加了测试聚合物的秸秆基板材中,主要使用HDPE获得了令人满意的性能。反过来,含PP的秸秆基复合材料性能中等,而含PLA的板材在机械或物理性能方面也没有表现出明显良好的性能。基于小黑麦秸秆生产的秸秆-聚合物板材的性能略优于基于黑麦的板材,这可能是由于秸秆的几何形状,小黑麦秸秆更有利。所得结果表明,一年生植物纤维,主要是小黑麦,可以用作木材替代品来生产生物复合材料。此外,添加聚合物可以使所得板材在湿度增加的条件下使用。