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Analysis on properties of water-based fire-retardant nano-coatings

机译:水基阻燃纳米涂层性能分析

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The study explores the effects of the flame-retardant properties of nano-particles on water-based fire-retardant coatings, which include the effects on thermal stability and combustion properties. The coating used by the paper is acrylate resin (VAC), which is added with 3 basic components, including fire-retardant ammonium polyphosphate, pentaerythritol and melamine (APP-PER-MEL), to form an itumescent fire retardant (IFR). Then the fire retardent is added with magnesium hydroxide (Mg(OH)_2, MH) nano-particles, multiwall carbon nanotubes (MWNT) and zinc borate (ZB) nano-powders of different concentrations, to form water-based fire-retardant coatings. By adjusting and controlling the concentration ratios of flame retardant to the 3 kinds of nano-particles with different profiles, the study analyzes the fire-retardant multiplying effect of nano-particles on water-based coatings. The nano-coatings mixed in special proportion are coated on plywood. Through thermogeavimetric analyzer (TGA) and cone calorimeter (CCT), the study inspects the thermal stability and combustion properties of water-based fire-retardant nano-coatings. The experimental results show that when the fire-retardant nano-coating composed of MH of concentration 28% and MWNT of concentration 2% is compared with the fire-retardant coating added with flame retardant only, the amount of residue can be increased by around 80% at combustion temperature 580°C- Besides, when the fire-retardant nano-coating composed of MH of weight concentration 28% and MWNT of weight concentration 2% is compared with the fire-retardant coating added with flame retardant only, the maximum heat release can be decreased by about 15%. The time required for this fire-retardant nano-coating to achieve maximum heat release is delayed by around 70 seconds when compared with other samples. Besides, the char-layered structure formed during thermal decomposition of nano-coating is more compact than the char-layered structure of water-based coating composed of the flame-retardant APP-PER-MEL components only. Therefore, nano-coatings can effectively decrease the transfer of heat and inflammable volatiles to plywood surface, and can enhance the flame retardant performance of plywood.
机译:的研究探讨纳米粒子对水性防火涂料的阻燃性能,其中包括对热稳定性和燃烧性能的影响的效果。由纸所使用的涂料是丙烯酸酯树脂(VAC),其添加有3个基本部件,包括阻燃聚磷酸铵,季戊四醇和三聚氰胺(APP-PER-MEL),以形成itumescent阻燃剂(IFR)。然后将火阻燃剂中加入氢氧化镁(镁(OH)_2,MH)的纳米颗粒,多壁碳纳米管(MWNT)和硼酸锌(ZB)纳米粉体不同浓度的,以形成水性防火涂料。通过调节和控制阻燃剂的浓度比率3种纳米颗粒具有不同的配置文件,该研究分析了水基涂料的纳米颗粒的阻燃乘法效应。纳米涂料在特殊比例混合涂在胶合板上。通过thermogeavimetric分析仪(TGA)和锥形量热仪(CCT),该研究考察水基阻燃纳米涂层的热稳定性和燃烧性能。实验结果表明,当阻燃纳米涂层浓度的浓度为28%和MWNT组成MH 2%与具有仅阻燃剂加入阻燃涂层相比,残余物的量可以被增加约80 %在燃烧温度580℃ - 此外,当阻燃纳米涂层重量浓度28%,重量浓度的MWNT组成MH 2%的用阻燃只,最大热添加阻燃涂层相比释放可通过约15%降低。所需的时间这阻燃纳米涂层以达到最大的热释放是由约70秒的时候,与其它样品相比延迟。此外,纳米涂层的热分解过程中所形成的炭层结构比的水性涂料仅由阻燃APP-PER-MEL成分的炭层结构更紧凑。因此,纳米涂层能有效地降低热量和易燃挥发物转移到胶合板表面,并能增强胶合板的阻燃性能。

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