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首页> 外文期刊>European Polymer Journal >A benzoxazine/substituted borazine composite coating: A new resin for improving the corrosion resistance of the pristine benzoxazine coating applied on aluminum
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A benzoxazine/substituted borazine composite coating: A new resin for improving the corrosion resistance of the pristine benzoxazine coating applied on aluminum

机译:苯并恶嗪/取代的硼嗪复合涂料:一种新型,用于改善铝上施加的原始苯并恶嗪涂层的耐腐蚀性

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In this paper, laboratory synthesized Phenol-paraPhenyleneDiAmine (P-pPDA) benzoxazine containing different amounts of B-trimesityl-N-triphenylborazine was applied by spin coating on aluminum and thermally cured. The addition of the borazine derivative (borazine 1) does not appear to modify the curing characteristics of the P-pPDA matrix itself as shown by FTIR, DSC and DEA analyses; however, some interactions - chemical and/or physical (co-crystallization) - between P-pPDA and borazine 1 cannot be excluded. The microstructure of the composites is characterized by a two phase system consisting of a dispersion of nanosized (10-20 nm) clusters for the lowest borazine 1 concentration (0.5 wt%), evolving towards bigger (100-200 nm), agglomerated clusters for higher borazine 1 concentrations (3 wt%) and finally, continuous, dendritic structures within the P-pPDA matrix for the highest borazine 1 concentration (10 wt%). The benzoxazine composite coating containing 0.5 wt % trimesitylborazine derivative showed a largely increased and durable ability to protect the aluminum substrate. It is shown that a highly capacitive behavior and durable barrier properties can be obtained for P-pPDA coatings containing such a low amount of borazine derivative homogeneously dispersed in the benzoxazine matrix. For concentrations of 3 wt%, as agglomeration took place and dendrites appeared for the highest concentration of borazine derivative (10 wt%), the corrosion resistance decreased with time.
机译:本文通过纺合涂层施加铝和热固化,施加实验室合成的酚类 - 对苯二胺(P-PPDA)含有不同量的B-TrimeityL-N-三苯基硼酰胺的苯并恶嗪。添加硼杉衍生物(硼唑啉1),似乎不改变P-PPDA基质本身的固化特性,如FTIR,DSC和DEA分析所示;然而,不能排除一些相互作用 - 化学和/或物理(共结晶) - 不能排除P-PPDA和硼嗪1之间。复合材料的微观结构的特征在于,由两种相位系统组成,该系统由纳米型(10-20nm)簇的分散体组成,用于最低硼嗪1浓度(0.5wt%),朝向更大(100-200nm),凝聚的聚集簇更高的硼嗪1浓度(3wt%),最后,在P-PPDA基质内连续,树枝状结构最高的硼唑浓度(10wt%)。含有0.5wt%的Timesitylborazine衍生物的苯并恶嗪复合涂料显示出大量增加和耐用的保护铝基基材。结果表明,可以获得高性电容性和耐用的阻隔性能,用于含有均匀分散在苯并恶嗪基质中的均匀分散在苯并恶嗪基质中的这种低量的硼嗪衍生物的P-PPDA涂层。对于3wt%的浓度,由于聚集,并且为硼杉衍生物的最高浓度(10wt%)出现树枝状,随着时间的推移降低。

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