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Entrapment of corrosion inhibitors in silane coatings to improve bronze corrosion protection

机译:将腐蚀抑制剂截留在硅烷涂料中以改善青铜腐蚀防护

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The corrosion protection of a coating depends largely on the intrinsic barrier properties of the polymer film, but can be reinforced by the presence of corrosion inhibitors trapped in the coating itself. In the case of bronze artworks exposed outdoors, commercial coatings such as Incralac contain benzotriazole that operates in the dual function of inhibitor of bronze corrosion and anti-UV substance. In this case, the inhibitor is soluble in the electrolyte (the rain) that permeates through the coating, so producing an inhibited solution that can exert its protective action at the coating / metal interface. In general, the addition of inhibitors in coatings may be limited by solubility problems. Moreover, rainfalls may induce a rapid inhibitor leaching, which determines a fast drop of protection performances. To overcome these problems, in recent years great efforts were devoted to encapsulation of inhibitors in suitable carriers, which may be constituted by porous particles or nanocapsules containing inhibitors, coated by poly electrolytes, or particles with lamellar structure containing intercalated corrosion inhibiting species. Such particles dispersed in the coating may release corrosion inhibiting species due to variations of solution pH linked to local onset of corrosion phenomena or due to ion-exchange phenomena at the arrival of aggressive ions. In addition, also P-cyclodextrin is known to be capable of encapsulation by complexing inhibiting organic molecules of small dimensions, which can be progressively released into the aggressive solution inside the coating, when the free corrosion inhibitor is subtracted from the complexation equilibrium at the onset of corrosion phenomena. The introduction of the inhibitor-containing carriers in the coatings can lead to a significant increase in the durability of the coating protectiveness. For this reason, as part of the M-ERA.NET European project called B-IMPACT, some organic substances containing a mercapto group, which proved to be good corrosion inhibitors of bronze in concentrated synthetic acid rain (ARX10), were added to silane coatings in the form of P-cyclodextrin complexes. The performances of the obtained coatings were compared to those of plain coatings or coatings containing only p-cyclodextrin, during both 20 day immersions in ARx10 and exposures to wet&dry cycles with synthetic AR spray. During immersion tests, the corrosion behavior was monitored by electrochemical impedance spectra, followed by the recording of cathodic and anodic polarization curves. On the coated samples exposed to cyclic acid rain spray a cross cut was present at which the corrosion attack was particularly intense in the absence of inhibitors. The best results were achieved in the presence of β-cyclodextrin complexes which improved the coating protectiveness.
机译:涂层的腐蚀防护在很大程度上取决于聚合物膜的固有阻隔性能,但是可以通过在涂层本身中捕获的缓蚀剂的存在来加强。对于暴露在户外的青铜艺术品,商业涂料(例如Incralac)包含苯并三唑,其具有抑制青铜腐蚀和抗紫外线物质的双重功能。在这种情况下,抑制剂可溶于渗透穿过涂层的电解质(雨水)中,因此产生了一种抑制溶液,可在涂层/金属界面上发挥保护作用。通常,在涂料中添加抑制剂可能会受到溶解度问题的限制。此外,降雨可能导致抑制剂快速浸出,这决定了防护性能的快速下降。为了克服这些问题,近年来人们致力于将抑制剂包封在合适的载体中,该载体可以由多孔颗粒或含有抑制剂的纳米胶囊组成,用聚电解质涂覆,或由具有层状结构的颗粒组成,该颗粒具有嵌入的腐蚀抑制物质。由于与腐蚀现象的局部发作有关的溶液pH值的变化,或者由于侵蚀性离子到达时发生的离子交换现象,分散在涂层中的此类颗粒可能释放出腐蚀抑制物质。另外,还已知P-环糊精能够通过络合小尺寸的抑制性有机分子来包封,当在开始时从络合平衡中减去游离的腐蚀抑制剂时,该有机分子可以逐渐释放到涂层内部的侵蚀性溶液中。腐蚀现象。在涂层中引入含抑制剂的载体可导致涂层保护性的耐久性显着提高。因此,作为M-ERA.NET欧洲项目B-IMPACT的一部分,向硅烷中添加了一些含有巯基的有机物质,这些物质被证明是浓合成酸雨(ARX10)中青铜的良好腐蚀抑制剂。 P-环糊精复合物形式的涂层。将所得涂料的性能与普通涂料或仅含对环糊精的涂料在ARx10中浸泡20天以及使用合成AR喷雾剂暴露于干湿循环期间的性能进行了比较。在浸没测试期间,通过电化学阻抗谱监测腐蚀行为,然后记录阴极和阳极极化曲线。在暴露于环状酸雨喷雾的涂​​层样品上,存在一个划痕,在没有抑制剂的情况下,腐蚀特别强烈。在存在β-环糊精配合物的情况下,可获得最佳结果,该配合物可改善涂层的保护性。

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