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Organosilane coatings applied on bronze: Influence of UV radiation and thermal cycles on the protectiveness

机译:适用于青铜的有机硅烷涂层:紫外线辐射和热循环对保护性的影响

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摘要

3-mercapto-propyl-trimethoxy-silane (PropS-SH) coatings, with or without the addition of three types of oxide particles (CeO2 (nano-sized), TiO2 (nano-sized) and La2O3 (micro-sized)), were applied on quaternary bronze (Cu-Sn-Zn-Pb) and tested through natural and artificial exposures. In particular, uncoated and coated samples were exposed both in the coastal town of Rimini (Italy) under sheltered/unsheltered conditions and in a climatic chamber where the samples underwent temperature/UV cycles, at constant humidity. The sample surfaces were periodically characterized by SEM, EDS, micro-Raman, FTIR and XRD techniques. Moreover, during natural exposures, the leaching rain was monthly collected, in order to evaluate the release of the alloying metals from bronze by Atomic Absorption Spectrometry (AAS). The results showed that micro-scale cracking and spalling phenomena took place during natural exposure, partly limiting the protective efficiency of the organosilane coating. In fact, UV radiation has a strong influence on coating performance, inducing structural modifications of the polymer. Oxide particle- and especially TiO2-charged coatings proved to be more resistant to UV degradation.
机译:3-巯基 - 三乙氧基 - 硅烷(ProPS-SH)涂层,具有或不添加三种类型的氧化物颗粒(CeO 2(纳米大小),TiO 2(纳米大小)和La2O3(微尺寸)),应用于季青铜(Cu-Sn-Zn-PB)并通过天然和人工曝光测试。特别是,在庇护/未受处置的条件下,在庇护/未受欢迎的条件下,在沿海镇的里米尼(意大利)以及在恒定湿度下进行温度/紫外线循环的气候室来暴露未涂覆和涂层样品。通过SEM,EDS,微拉曼,FTIR和XRD技术定期表征样品表面。此外,在自然曝晒,浸出雨水收集每月,以评估合金金属青铜原子吸收光谱(AAS)的释放。结果表明,在自然暴露过程中进行了微观裂缝和剥落现象,部分限制了有机硅烷涂层的保护效率。实际上,紫外线辐射对涂层性能有很大影响,诱导聚合物的结构改性。氧化物颗粒和尤其是TiO 2带电涂层被证明是对紫外降解更抗性的。

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