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首页> 外文期刊>Journal of Applied Polymer Science >Synthesis of silane-modified polyphosphate esters and its application in transparent flame-retardant coatings
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Synthesis of silane-modified polyphosphate esters and its application in transparent flame-retardant coatings

机译:硅烷改性多磷酸酯的合成及其在透明阻燃涂层中的应用

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Polyphosphate ester (PPAE) made from poly(phosphoric acid), pentaerythritol, and 1,3-butylene glycol has been synthesized. The PPAE reacted with dimethyldichlorosilane (DMDCS) to improve its thermal stability and flame retardancy. Four silane-modified polyphosphate esters (SiPPAEs) were obtained. FTIR, P-31 NMR, and Si-29 NMR results showed that the Si Symbol of the Klingon Empire Cl bond of DMDCS could react with the C Symbol of the Klingon Empire OH and P Symbol of the Klingon Empire OH bonds of PPAE, producing Si Symbol of the Klingon Empire O Symbol of the Klingon Empire C and P Symbol of the Klingon Empire O Symbol of the Klingon Empire Si bond in SiPPAEs. Different transparent coatings were obtained by mixing the PPAE and SiPPAEs with amino resin. The results of TGA showed that the stability of SiPPAEs was higher than that of PPAE. With the increase of silane content, the thermal stability of the coating increased. As the silane content increased within a certain range, the fire resistance and expansion coefficient increased. But too high silane content had adverse effects on the expansion and reduced the overall insulation effect. The digital photos and SEM/EDX microphotographs of coatings after combustion showed that silica segments could enriched in the surface to form a hard protective layer to prevent further degradation of the char layer. (c) 2018 Wiley Periodicals, Inc.
机译:已经合成了由聚(磷酸),季戊四醇和1,3-丁二醇制成的多磷酸酯(PPAE)。 PPAE与二甲基二氯硅烷(DMDC)反应以改善其热稳定性和阻燃性。得到四种硅烷改性的多磷酸酯(Sippaes)。 FTIR,P-31 NMR和SI-29 NMR结果表明,DMDCs的Klingon帝国Cl键的Si符号可以与klingon帝国的C符号与PPAE的Klingon Empire OH键的C符号作出反应。 Klingon Empire C和Klingon Empire o符号的Klingon Empire C和P象征的SI标志克林顿帝国SI债券的象征。通过将PPAE和SippaE与氨基树脂混合来获得不同的透明涂层。 TGA的结果表明,Sippaes的稳定性高于PPAE的稳定性。随着硅烷含量的增加,涂层的热稳定性增加。随着硅烷含量在一定范围内增加,耐火和膨胀系数增加。但太高的硅烷含量对扩张产生不利影响并降低了整体绝缘效果。燃烧后涂料的数码照片和SEM / EDX显微镜涂膜显示,二氧化硅段可以富集在表面中以形成硬保护层以防止炭层的进一步降解。 (c)2018 Wiley期刊,Inc。

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