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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effect of ZrO_2:SiO_2 dispersion on the thermal stability, mechanical properties and corrosion behavior of hybrid coatings deposited on carbon steel
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Effect of ZrO_2:SiO_2 dispersion on the thermal stability, mechanical properties and corrosion behavior of hybrid coatings deposited on carbon steel

机译:ZrO_2:SiO_2分散液对碳钢混合涂层热稳定性,力学性能和腐蚀行为的影响

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In this work we present the development of a nanocomposite material composed by ZrO_2:SiO_2 (25:75 mol%) nanoparticles in a polyurethane (PU) matrix for corrosion protection of AISI 1018 carbon steel. Specifically, the effect of the pre-dispersion method of ZrO_2:SiO_2 nanoparticles to reinforce PU coatings in delayed the corrosion and enhance mechanical properties of mild steel, were analyzed by applying two conventional methods: mechanical stirring (1, 3 and 5 h) and sonication (30, 60 and 120 min). The effect of pre-dispersed the ceramic nanoparticles by mechanical stirring and sonication on the mechanical properties and corrosion behavior was analyzed. Sonication improved the dispersion and hardness properties reducing the time of dispersion of the nanoparticles in comparison with mechanical stirring. The EIS results also showed that the hybrid coatings using sonication as method to pre-dispersed the nanoparticles enhanced the dispersion and the degradation resistance of the carbon steel by more than two-order of magnitude as compared to the coated samples with pure polyurethane after 2 h exposure in 3 wt.% NaCl solution. Long-term (20 days) EIS results also confirmed that the hybrid coating synthesized with sonically pre-dispersed particles improved the mechanical properties and degradation resistance in comparison with that observed with coatings using pre-dispersed particles by mechanical stirring, which could be better in service mechanical integrity.
机译:在这项工作中,我们提出了由ZrO_2:SiO_2(25:75 mol%)纳米粒子在聚氨酯(PU)基质中组成的纳米复合材料的开发,用于AISI 1018碳钢的腐蚀防护。具体而言,通过采用两种常规方法分析了ZrO_2:SiO_2纳米粒子的预分散方法对PU涂层增强延迟软涂层和增强低碳钢的机械性能的效果,这两种方法分别为:机械搅拌(1、3和5 h)和超声处理(30、60和120分钟)。分析了通过机械搅拌和超声处理预分散陶瓷纳米粒子对机械性能和腐蚀行为的影响。与机械搅拌相比,超声处理改善了分散性和硬度特性,减少了纳米颗粒的分散时间。 EIS结果还表明,与2小时后用纯聚氨酯涂覆的样品相比,使用超声处理作为预分散纳米颗粒的方法的杂化涂层将碳钢的分散性和抗降解性提高了两个数量级以上。暴露于3 wt%的NaCl溶液中。长期(20天)的EIS结果还证实,与通过机械搅拌使用预分散颗粒的涂层相比,用超声预分散颗粒合成的杂化涂层改善了机械性能和耐降解性。服务机械完整性。

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