Panthapulakkal S, Zereshkian A, Sain M
Center for Biocomposites and Biomaterial Processing, Faculty of Forestry, University of Toronto, 33 Willcocks Street, Toronto, Canada.
Bioresour Technol. 2006 Jan;97(2):265-72. doi: 10.1016/j.biortech.2005.02.043. Epub 2005 Apr 14.
The potential of wheat straw fibers prepared by mechanical and chemical processes as reinforcing additives for thermoplastics was investigated. Fibers prepared by mechanical and chemical processes were characterized with respect to their chemical composition, morphology, and physical, mechanical and thermal properties. Composites of polypropylene filled with 30% wheat straw fibers were prepared and their mechanical properties were also evaluated. The fibers prepared by chemical process exhibited better mechanical, physical and thermal properties. Wheat straw fiber reinforced polypropylene composites exhibited significantly enhanced properties compared to virgin polypropylene. However, the strength properties of the composites were less for chemically prepared fiber filled composites. This was due to the poor dispersion of the fibers under the processing conditions used. These results indicate that wheat straw fibers can be used as potential reinforcing materials for making thermoplastic composites.
研究了通过机械和化学方法制备的麦秸纤维作为热塑性塑料增强添加剂的潜力。对通过机械和化学方法制备的纤维的化学成分、形态以及物理、机械和热性能进行了表征。制备了填充30%麦秸纤维的聚丙烯复合材料,并对其机械性能进行了评估。通过化学方法制备的纤维表现出更好的机械、物理和热性能。与纯聚丙烯相比,麦秸纤维增强聚丙烯复合材料的性能显著提高。然而,化学制备的纤维填充复合材料的强度性能较低。这是由于在所用加工条件下纤维分散性较差。这些结果表明,麦秸纤维可作为制备热塑性复合材料的潜在增强材料。