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首页> 外文期刊>Journal of Applied Polymer Science >Photo-fabricated unsaturated polyester resin composites reinforced by kenaf fibers, synthesis and characterization
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Photo-fabricated unsaturated polyester resin composites reinforced by kenaf fibers, synthesis and characterization

机译:洋麻纤维增强的光加工不饱和聚酯树脂复合材料,合成与表征

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摘要

New bio-fiber composites (UPRC) cured by ultraviolet radiation were produced using kenaf fiber as reinforcing agent and unsaturated polyester resins as matrix in the presence of styrene and IRGACURE 1800 as photoinitiator. Unsaturated polyester resins based on palm oil were prepared from various ratios of monoglyceride (MG)/maleic anhydride (MA) by the interaction of the corresponding MG monomer, with different equivalents of MA, in the presence of 2-methylimidazole as catalyst. The various characteristics of the obtained bio-fiber composites, including mechanical, gel content, water absorption and thickness swelling test, thermal analysis, were determined and the data were discussed. Bio-fiber composite with MG: MA ratio (1: 4 eq./eq.) showed better mechanical properties (tensile, flexural, and impact strength) than other formulations. Gel content increased as the amount of MA was increased up to the MG: MA ratio was 1: 4 (eq./eq.) then slightly decreased at the higher ratio formulation. Bio-fiber composite (UPRC_c) was considered the best prepared bio-fiber composite which contained higher degree double bond, cross-linking and thermal stability. Moreover, morphological study of selected examples of the formed bio-fiber composites was also carried out and showed the evidence of the enhancement of the compatibility between fiber and polymer matrix.
机译:以红麻纤维为增强剂,以不饱和聚酯树脂为基质,在苯乙烯存在下,以IRGACURE 1800为光引发剂,制备了新型的紫外线固化生物纤维复合材料(UPRC)。在2-甲基咪唑作为催化剂的情况下,通过相应的MG单体与不同当量的MA相互作用,由各种比例的甘油单酸酯(MG​​)/马来酸酐(MA)制备基于棕榈油的不饱和聚酯树脂。确定了获得的生物纤维复合材料的各种特性,包括机械性能,凝胶含量,吸水率和厚度溶胀试验,热分析,并讨论了数据。 MG:MA比(1:4当量/当量)的生物纤维复合材料显示出比其他配方更好的机械性能(拉伸,挠曲和冲击强度)。凝胶含量随MA含量的增加而增加,直至MG:MA的比例为1:4(eq./eq。),然后在较高比例的配方中略有下降。生物纤维复合材料(UPRC_c)被认为是最佳制备的生物纤维复合材料,它具有更高的双键度,交联性和热稳定性。此外,还对所形成的生物纤维复合材料的选定实例进行了形态学研究,并显示出纤维与聚合物基质之间相容性增强的证据。

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