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首页> 外文期刊>Journal of thermal analysis and calorimetry >Thermal stability of phosphorus-containing styrene–acrylic copolymer and its fire retardant performance in waterborne intumescent coatings
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Thermal stability of phosphorus-containing styrene–acrylic copolymer and its fire retardant performance in waterborne intumescent coatings

机译:含磷苯乙烯-丙烯酸共聚物的热稳定性及其在水性膨胀型涂料中的阻燃性能

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Phosphorus-containing styrene–acrylic copolymers are synthesized by free radical seeded emulsion polymerization with the monomers of MMA/St/BA/MAA and phosphorus-containing vinyl monomer (SIPOMER PAM100). The properties of copolymer films are characterized by water adsorption test, thermogravimetry, Fourier transform infrared spectroscopy (FTIR), and energy dispersive spectroscopy (EDS), etc. The copolymer emulsions are used as the binder in an intumescent coatings formulation, and the fire-retardant performances of the coatings are determined by an instrument which the furnace temperature is analoging the cellulose fire temperature. The water adsorption of copolymer film increases remarkably owing to the increasing of phosphoric acid group in the polymer chain. The thermal decomposition stability and thermal-oxidative decomposition stability of the copolymer are improved when PAM100 is introduced into its chain, which is strongly supported by the FTIR and EDS results of copolymer residual treated at different temperature. The EDS results also illustrate that the fire retardancy enhanced by PAM100 during combustionowing to the condensed-phase mechanism. The fire-retardant test results show that the intumescent coatings using StA-P1.5 copolymer emulsion as the binder obtains the best fire retardant performance. We suggested that StA-P1.5 presents the lower reactivity with the acid source (APP) in 275–400 ℃, and the higher reactivity with APP when the temperature is greater than 500 ℃ would be benefit for the swelling–charring process and the final fire retardant performance. The exorbitant crosslinking in StA-P7 brings a negative effect on the fire-retardant performance of intumescent coatings, even if it introduces a densy swollen char layer.
机译:含磷的苯乙烯-丙烯酸共聚物是通过自由基种子乳液聚合与MMA / St / BA / MAA单体和含磷的乙烯基单体(SIPOMER PAM100)合成的。共聚物薄膜的性能通过吸水试验,热重分析,傅立叶变换红外光谱(FTIR)和能量分散光谱(EDS)等进行表征。共聚物乳液在膨胀型涂料配方中用作粘合剂,并具有防火性能。涂层的阻燃性能由仪器确定,该仪器的炉温类似于纤维素燃烧温度。由于聚合物链中磷酸基团的增加,共聚物膜的吸水率显着增加。当将PAM100引入其链中时,共聚物的热分解稳定性和热氧化分解稳定性得到改善,这在不同温度下处理后的共聚物残留物的FTIR和EDS结果得到了有力的支持。 EDS结果还表明,PAM100在燃烧过程中由于凝聚相机理而提高了阻燃性。阻燃测试结果表明,使用StA-P1.5共聚物乳液作为粘合剂的膨胀型涂料具有最佳的阻燃性能。我们建议StA-P1.5在275-400℃时与酸源(APP)的反应性较低,而在温度高于500℃时与APP的反应性较高,这对溶胀-炭化过程和最终的阻燃性能。 StA-P7的高交联度对膨胀型涂料的阻燃性能产生负面影响,即使它引入了一个稠密的炭层。

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