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Effect of the Cross-Linking Modification on Corn Stalk Fiber Reinforced Polypropylene Composites

机译:交联改性对玉米秸秆纤维增强聚丙烯复合材料的影响

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In this study, corn stalk fiber (CSF) was used as a reinforcer to prepare wood plastic composite (WPC). The primitive CSF was subjected to alkali treatment in a low alkali solution to expose the cellulose fiber. Alkali-treated CSF (AT-CSF) was cross-linking modified with chitosan and glutaraldehyde. Then, the untreated CSF (UT-CSF) and the cross-linked modified CSF (CL-CSF) were added to polypropylene (PP) with different contents (10 wt%, 20 wt%, 30 wt%, 40 wt%), respectively. The morphology, mechanical, thermal and water absorption behaviours of WPC were investigated in detail. The results indicated that the crosslinking modification is an efficient method to improve the mechanical properties of WPC. Compared with UT-CSF, the crystallinity index (CrI) of CL-CSF was increased from 33.8% to 39.5%. The cross-linking modification promoted an increase in flexural strength of 19.2% and an increase in flexural modulus of 8.3% compared to the composite reinforced by UT-CSF. The water absorption of the composite reinforced by CL-CSF was lower than the composite reinforced by UT-CSF.
机译:在这项研究中,玉米茎纤维(CSF)用作加强能,用于制备木塑复合物(WPC)。将原始CSF在低碱溶液中进行碱处理以暴露纤维素纤维。碱处理的CSF(AT-CSF)用壳聚糖和戊二醛进行交联。然后,将未处理的CSF(UT-CSF)和交联改性的CSF(CL-CSF)加入聚丙烯(PP)中,用不同的内容物(10wt%,20重量%,30wt%,40wt%),分别。详细研究了WPC的形态,机械,热和吸水性行为。结果表明交联改性是提高WPC机械性能的有效方法。与UT-CSF相比,CL-CSF的结晶性指数(CRI)从33.8%增加到39.5%。交联改性促进弯曲强度的增加19.2%,与UT-CSF加强的复合材料相比,弯曲模量的增加8.3%。 CL-CSF加强的复合材料的吸水率低于UT-CSF加强的复合材料。

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