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首页> 外文期刊>Progress in Organic Coatings: An International Review Journal >The lifetime assessment of low infrared emissivity composite coatings in chloride environments
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The lifetime assessment of low infrared emissivity composite coatings in chloride environments

机译:低氯化物发射率复合材料在氯化物环境中的寿命评估

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摘要

The microstructural-electrochemical model is employed to predict the lifetime of low infrared emissivity composite coatings in chloride environments. Electrochemical data collected in 3.5 wt.% NaCl solution is presented for the low infrared emissivity coating, and these values are used as inputs for a mechanistic-based corrosion model which yields the salt spray life of the coating. To check the calculated results, the model predictions were compared with the results of salt spray tests. The current work showed that the model was able to predict lifetime of low infrared emissivity coating under salt spray, but tended to under-predict lifetime at short times and over-predict at long times. Under-prediction may be associated with corrosion protection of metallic pigment particles by polymer. Over-prediction by the model at longer exposure times may be associated with the fact that an influence of porosity is not included as a part of this simple model.
机译:微观结构电化学模型用于预测氯化物环境中低红外发射率复合涂层的寿命。给出了在3.5 wt。%NaCl溶液中收集的低红外发射率涂层的电化学数据,这些值用作基于机械的腐蚀模型的输入,该模型产生了涂层的盐雾寿命。为了检查计算结果,将模型预测与盐雾测试的结果进行了比较。当前的工作表明,该模型能够预测盐雾下低红外发射率涂层的寿命,但往往会在短时间内预测寿命不足,而在长时间内则预测过度。预测不足可能与聚合物对金属颜料颗粒的腐蚀防护有关。该模型在更长的暴露时间下的过度预测可能与以下事实有关:在该简单模型中未包含孔隙率的影响。

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