Faculty of Environmental Engineering, Wrocław University of Science and Technology, Wybrzeże Wyspiańskiego 27, 50-370 Wrocław, Poland.
Department of Mechanical Engineering, Koszalin University of Technology, Raclawicka 15-17, 75-620 Koszalin, Poland.
Molecules. 2020 Dec 31;26(1):149. doi: 10.3390/molecules26010149.
Recently, biocomposites have emerged as materials of great interest to the scientists and industry around the globe. Among various polymers, polylactic acid (PLA) is a popular matrix material with high potential for advanced applications. Various particulate materials and nanoparticles have been used as the filler in PLA based matrix. One of the extensively studied filler is cellulose. However, cellulose fibres, due to their hydrophilic nature, are difficult to blend with a hydrophobic polymer matrix. This leads to agglomeration and creates voids, reducing the mechanical strength of the resulting composite. Moreover, the role of the various forms of pure cellulose and its particle shape factors has not been analyzed in most of the current literature. Therefore, in this work, materials of various shapes and shape factors were selected as fillers for the production of polymer composites using Polylactic acid as a matrix to fill this knowledge gap. In particular, pure cellulose fibres (three types with different elongation coefficient) and two mineral nanocomponents: precipitated calcium carbonate and montmorillonite were used. The composites were prepared by a melt blending process using two different levels of fillers: 5% and 30%. Then, the analysis of their thermomechanical and physico-chemical properties was carried out. The obtained results were presented graphically and discussed in terms of their shape and degree of filling.
最近,生物复合材料已经成为全球科学家和工业界关注的焦点。在各种聚合物中,聚乳酸(PLA)是一种很有前途的基质材料,具有很高的应用潜力。各种颗粒材料和纳米颗粒已被用作 PLA 基基质的填料。其中一种广泛研究的填料是纤维素。然而,由于纤维素纤维的亲水性,它们很难与疏水性聚合物基质混合。这导致团聚并产生空隙,从而降低了复合材料的机械强度。此外,在大多数当前文献中,各种形式的纯纤维素及其颗粒形状因素的作用尚未得到分析。因此,在这项工作中,选择了各种形状和形状因素的材料作为填充剂,使用聚乳酸作为基质生产聚合物复合材料,以填补这一知识空白。具体来说,使用了三种具有不同伸长系数的纯纤维素纤维和两种矿物纳米复合材料:沉淀碳酸钙和蒙脱石。通过熔融共混工艺制备了两种不同填充水平(5%和 30%)的复合材料。然后,对它们的热机械和物理化学性能进行了分析。得到的结果以图形方式呈现,并根据其形状和填充程度进行了讨论。