Del Rey Romina, Serrat Ramon, Alba Jesus, Perez Ildefonso, Mutje Pere, Espinach Francesc X
Universitat Politècnica de València, Centro de Tecnologías Físicas, Escola Politècnica Superior Gandia, Valencia 46730, Spain.
Laboratory of Paper Engineering and Polymer Materials, Dpt. Of Chemical Engineering, University of Girona, Girona 17003, Spain.
Polymers (Basel). 2017 Aug 19;9(8):377. doi: 10.3390/polym9080377.
The formulation of greener composite materials by substituting glass fibers with natural fibers is a current field of research. If such natural fiber reinforcements come from industrial side streams, as hemp core fibers (HCFs) come from the extraction of hemp strands for the textile industry, an additional advantage can be identified. Nonetheless, such by-product fibers show some drawbacks, such as high lignin contents, which can make it difficult to obtain a good interphase between the fibers and the matrix and to obtain a good fiber individualization. A digestion treatment at different NaOH contents is proposed to eliminate soluble lignin and extractives from the surface of the fibers. At the same time, the use of a coupling agent solves incompatibilities between the fibers and the matrix. The composites were tensile tested and the impact of the proposed treatments is evaluated and discussed. Later, the Kelly-Tyson modified equation and a modified rule of mixtures-the micro-mechanic models-is used to study the impact of such treatments on the quality of the interphase between the polymer and the reinforcement. Both treatments showed a high impact on the tensile strength and the quality of the interphase, obtaining competitive composite materials reinforced with HCFs derived from a by-product.
用天然纤维替代玻璃纤维来制备更环保的复合材料是当前的一个研究领域。如果这种天然纤维增强材料来自工业副产物,比如麻芯纤维(HCFs)来自纺织工业中麻线的提取,那么还能发现一个额外的优势。然而,这种副产物纤维存在一些缺点,比如木质素含量高,这可能会导致难以在纤维与基体之间获得良好的界面,也难以实现良好的纤维分散。本文提出了一种在不同氢氧化钠含量下的消化处理方法,以去除纤维表面的可溶性木质素和提取物。同时,使用偶联剂解决纤维与基体之间的不相容问题。对复合材料进行了拉伸测试,并对所提出处理方法的影响进行了评估和讨论。随后,使用凯利 - 泰森修正方程和修正的混合法则——微观力学模型——来研究这种处理方法对聚合物与增强材料之间界面质量的影响。两种处理方法对拉伸强度和界面质量都有很大影响,从而获得了由副产物衍生的麻芯纤维增强的具有竞争力的复合材料。