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Excellent Fire Retardant Properties of CNF/VMT Based LBL Coatings Deposited on Polypropylene and Wood-Ply

机译:基于CNF / VMT的LBL涂层的优异阻燃性能沉积在聚丙烯和木材上

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摘要

In this report, layer by layer (LBL) fire retardant coatings were produced on wood ply and Polypropylene Homopolymer/Flax fiber composites. FE-SEM and EDAX analysis was carried out to analyze the surface morphology, thickness, growth rate and elemental composition of the samples. Coatings with a high degree of uniformity were formed on Polypropylene composite (PP/flax), while coatings with highest thickness were obtained on wood ply (wood). FTIR and Raman spectroscopy were further used for the molecular identifications of the coatings, which confirmed the maximum deposition of the solution components on the wood substrate. A physiochemical analysis and model was proposed to explain the forces of adhesion between the substrate and solution molecules. Fire protection and thermal properties were studied using TGA and UL-94 tests. It was explored, that the degradation of the coated substrates was highly protected by the coatings as follows: wood > PP/flax > PP. From the UL-94 test, it was further discovered that more than 83% of the coated wood substrate was protected from burning, compared to the 0% of the uncoated substrate. The flammability resistance of the samples was ranked as wood > PP/flax > PP.
机译:在本报告中,在木层和聚丙烯均聚物/亚麻纤维复合材料上产生层(LBL)阻燃涂层。进行Fe-SEM和EDAX分析,以分析样品的表面形态,厚度,生长速率和元素组成。在聚丙烯复合物(PP /亚麻)上形成具有高均匀性的涂层,而木层(木材)在木材(木材)上获得具有最高厚度的涂层。 FTIR和拉曼光谱进一步用于涂层的分子鉴定,其证实了溶液组分在木材基材上的最大沉积。提出了一种物理化学分析和模型来解释基材和溶液分子之间的粘合力。使用TGA和UL-94测试研究了防火和热性能。探索了,涂层基材的降解由涂层高度保护,如下:木材> PP /亚麻> PP。从UL-94测试中,进一步发现,与未涂覆的基材的0%相比,保护超过83%的涂覆木材基材免受燃烧。样品的可燃性抗性排名为木材> PP /亚麻> PP。

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