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Performance of solvent-borne intumescent fire protective coating with Palm oil clinker as novel bio-filler on steel

机译:棕榈油熟料溶剂型膨胀型火灾防护涂料的性能作为钢上的新型生物填充剂

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This research deals with contribution of hybrid fillers with palm oil clinker (POC) as a novel bio-filler in solvent-borne intumescent fire protective coating for steel. The hybrid fillers with POC were mixed in appropriate amount of additives and acrylic binder to produce the intumescent coatings. The intumescent coatings were characterized by using Bunsen burner test, surface spread of flame, thermogravimetric analysis, field emission scanning electron microscopy, static immersion and Instron micro tester equipment. Specimen with POC as a single filler has significantly enhanced the fire protection performances of the intumescent coating due to the high thermal stability of POC, where less than 10% of temperature different when compared to specimens with hybrid fillers. From the flame spread classification, class 1 is the best classification while Class 4 is the worst and considered high risk. All specimens was classified as class 1 since the final spread of flame was less than 165 mm. For hybrid fillers composition, specimen consist of POC/Al(OH)3/TiO2 has significantly improved the water resistance of the coating due to the low solubility of Al(OH)3 in water, while specimen contain of Mg(OH)2 had higher mechanical strength due to the strong bonding between the metal surface and acrylic binder/Mg(OH)2 filler. It was found that coating with the incorporation of all hybrid fillers gives excellent fire protection performance with good thermal stability, water resistance and mechanical properties. It can be concluded that, the selection of appropriate composition of fillers and binder in intumescent coating was highly influence the intumescent coating performance.
机译:本研究涉及杂交填料与棕榈油熟料(POC)作为钢的溶剂型膨胀型火焰保护涂层的新型生物填料的贡献。将具有POC的杂交填料以适量的添加剂和丙烯酸粘合剂混合以产生膨胀型涂料。通过使用Bunsen燃烧器测试,火焰表面扩散,热重分析,场发射扫描电子显微镜,静电浸没和Instron Micro Tester设备的膨胀涂层。由于POC的高热稳定性,具有POC作为单一填料的POC标本显着增强了膨胀型膨胀性的膨胀性能,其中与用杂交填料的标本相比,温度差异不同。从火焰传播分类中,1级是最佳分类,而第4类是最糟糕的并且被认为是高风险。由于火焰的最终扩散小于165毫米,所有标本均为1类。对于杂交填料组合物,由PoC / Al(OH)3 / TiO 2组成的样品由于Al(OH)3在水中的低溶解度而具有显着提高了涂层的耐水性,而样品含有Mg(OH)2具有由于金属表面和丙烯酸粘合剂粘合剂/ mg(OH)2填料之间的强键合导致的机械强度较高。结果发现,掺入所有杂交填料的涂层具有出色的防火性能,具有良好的热稳定性,耐水性和机械性能。可以得出结论,在膨胀型涂层中选择适当的填料组成和粘合剂的膨胀性涂层性能。

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