Ceraulo Manuela, La Mantia Francesco Paolo, Mistretta Maria Chiara, Titone Vincenzo
Department of Engineering, University of Palermo, VialedelleScienze, 90128 Palermo, Italy.
INSTM, Consortium for Materials Science and Technology, Via Giusti 9, 50125 Florence, Italy.
Polymers (Basel). 2022 May 25;14(11):2151. doi: 10.3390/polym14112151.
Biodegradable Mater-Bi (MB) composites reinforced with hazelnut shell (HS) powder were prepared in a co-rotating twin-screw extruder followed by compression molding and injection molding. The effects of reinforcement on the morphology, static and dynamic mechanical properties, and thermal and rheological properties of MB/HS biocomposites were studied. Rheological tests showed that the incorporation of HS significantly increased the viscosity of composites with non-Newtonian behavior at low frequencies. On the other hand, a scanning electron microscope (SEM) examination revealed poor interfacial adhesion between the matrix and the filler. The thermal property results indicated that HS could act as a nucleating agent to promote the crystallization properties of biocomposites. Furthermore, the experimental results indicated that the addition of HS led to a significant improvement in the thermomechanical stability of the composites. This paper demonstrates that the incorporation of a low-cost waste product, such as hazelnut shells, is a practical way to produce low-cost biocomposites with good properties. With a content of HS of 10%, a remarkable improvement in the elastic modulus and impact strength was observed in both compression and injection-molded samples. With a higher content of HS, however, the processability in injection molding was strongly worsened.
采用同向旋转双螺杆挤出机,随后进行压缩成型和注塑成型,制备了用榛子壳(HS)粉末增强的可生物降解材料 - 生物(MB)复合材料。研究了增强剂对MB/HS生物复合材料的形态、静态和动态力学性能以及热性能和流变性能的影响。流变学测试表明,加入HS显著提高了复合材料在低频下具有非牛顿行为的粘度。另一方面,扫描电子显微镜(SEM)检查显示基体与填料之间的界面粘附性较差。热性能结果表明,HS可作为成核剂促进生物复合材料的结晶性能。此外,实验结果表明,加入HS导致复合材料的热机械稳定性显著提高。本文表明,加入低成本的废品,如榛子壳,是生产具有良好性能的低成本生物复合材料的一种实用方法。当HS含量为10%时,在压缩成型和注塑成型样品中均观察到弹性模量和冲击强度有显著提高。然而,当HS含量较高时,注塑成型的加工性能严重恶化。