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首页> 外文期刊>Journal of Applied Polymer Science >Influence of m-Isopropenyi-alpha,alpha-dimethylbenzyl isacyanate grafted polypropylene on the interfacial interaction of wood-ficur/polypropylene composites
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Influence of m-Isopropenyi-alpha,alpha-dimethylbenzyl isacyanate grafted polypropylene on the interfacial interaction of wood-ficur/polypropylene composites

机译:间异丙烯基-α,α-二甲基苄基异氰酸酯接枝聚丙烯对木丝/聚丙烯复合材料界面相互作用的影响

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摘要

In this article, the effects of m-isopropenyl-alpha,alpha-dimethylbenzyl isocyanate grafted polypropylene (m-TMI-PP) on the interfacial interaction of wood-flour/poly-propylene (WF/PP) were investigated by means of scanning electron microscopy (SEM), differential scanning calorimetry (DSC), thermogravimetry, dynamic rheological analysis, and mechanical properties tests. The experimental results demonstrated that m-TMI-PP greatly improved the interfacial interaction between WF and PP. According to the DSC results, m-TMI-PP made the crystallization temperature and the crystallization degree of PP in WF/mTMI-PP/PP decrease when compared with WF/PP composite without m-TMI-PP, but it was still higher than pure PP. These results demonstrated that WF presented the nucleate effect for the crystallization of PP and m-TMI-PP improved the interfacial adhesive, which restrained the mobility of PP chain. The rheological analysis indicated that the complex viscosity, storage, and loss modular of WF/PP composite increased, and the tan 6 decreased with the addition of m-TMI-PP. This was attributed to the strong improvement effects of m-TMI-PP on the interfacial interaction of the composites, and was further confirmed by the mechanical properties tests and SEM analysis of the composites. (c) 2008 Wiley Periodicals, Inc.
机译:本文通过扫描电子研究了间异丙烯基-α,α-二甲基苄基异氰酸酯接枝聚丙烯(m-TMI-PP)对木粉/聚丙烯(WF / PP)界面相互作用的影响显微镜(SEM),差示扫描量热法(DSC),热重分析,动态流变分析和力学性能测试。实验结果表明,m-TMI-PP大大改善了WF和PP之间的界面相互作用。根据DSC结果,与没有m-TMI-PP的WF / PP复合材料相比,m-TMI-PP使WF / mTMI-PP / PP中PP的结晶温度和PP的结晶度降低,但仍高于纯PP。这些结果表明,WF对PP的结晶具有成核作用,而m-TMI-PP改善了界面胶粘剂,抑制了PP链的迁移。流变分析表明,WF / PP复合材料的复数粘度,储能和损失模量增加,而m-TMI-PP的增加使得tan 6降低。这归因于m-TMI-PP对复合材料界面相互作用的强改善作用,并由复合材料的力学性能测试和SEM分析进一步证实。 (c)2008 Wiley期刊公司

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