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Influence of amine and vinyl functional groups of silanes on total performance of thermoplastic-based composites

机译:硅烷的胺基和乙烯基官能团对热塑性基复合材料总性能的影响

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The influence of amine (polar) and vinyl (nonpolar) functionalized organosilanes were investigated on the total performance of neat high-density polyethylene (HDPE) and wood-HDPE composites. Thus, micro-size silicate-based mineral fillers were treated with 3 mass% amine and vinyl silanes and then 15 and 30 mass% plus 1 and 5 mass% of treated mineral fillers were blended with neat HDPE and wood-HDPE composites, respectively. Based on the achieved mechanical, thermal, rheological, water absorption, and microstructural results, the affinity of amine functional group and HDPE matrix predominantly decreased the rigidity, improved the thermal stability, reduced the water uptake, and facilitated the dispersion of fillers within the polymeric composite. As demonstrated by FTIR test, due to the lack of chemical bonding between the polyethylene and amine/vinyl functional groups, the electrostatic forces can explain the affinity between the filler and matrix. The affinity of the non-polar vinyl group and non-polar HDPE matrix resulted in the agglomeration of mineral fillers that can represent the repulsive electrostatic forces between the vinyl treated filler and the polymeric matrix. (C) 2018 Elsevier Ltd. All rights reserved.
机译:研究了胺(极性)和乙烯基(非极性)官能化有机硅烷对纯高密度聚乙烯(HDPE)和木材-HDPE复合材料总性能的影响。因此,用3质量%的胺和乙烯基硅烷处理微米级硅酸盐基矿物填料,然后分别将15和30质量%加上1和5质量%的处理过的矿物填料与纯HDPE和木HDPE复合材料进行共混。基于所获得的机械,热,流变,吸水和微观结构结果,胺官能团与HDPE基质的亲和力主要降低了刚性,提高了热稳定性,降低了吸水率,并促进了填料在聚合物中的分散综合。如FTIR测试所示,由于聚乙烯与胺/乙烯基官能团之间缺乏化学键合,静电力可以解释填料与基体之间的亲和力。非极性乙烯基和非极性HDPE基质的亲和力导致矿物填料发生团聚,这代表了乙烯基处理过的填料与聚合物基质之间的排斥静电力。 (C)2018 Elsevier Ltd.保留所有权利。

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