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Research on the Effect of Molten Salt Ultrasonic Composite Cleaningfor Paint Removal

机译:熔盐超声复合清洗效果的研究去除油漆

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摘要

Aiming at paint removal on hydraulic cylinder, the effect of molten salt ultrasonic composite cleaning was studied. First, the mechanism of molten salt cleaning and ultrasonic cleaning was reviewed. To further describe the composite cleaning mechanism, the components and internal structure of paint were analyzed by scanning electron microscopy and Fourier transform infrared. Results showed that the paint had a significant layered structure. The total thickness was about 100 μm, and the main components were organic matters, including ester groups, epoxy groups, and aromatic compounds. Then, combining with thermal environment, cleaning medium’s property, and ultrasound, the composite cleaning mechanism was described in terms of three aspects: thermal effect, chemical reaction, and ultrasonic effect. Besides, the reason why this composite cleaning had good effect on paint removal, compared to paint heated in air, was explained through dynamic analysis, which was the reduction of reaction activation energy from 114.4 kJ/mol of paint alone to 74.1 kJ/mol.
机译:针对液压缸上的除漆效果,研究了熔盐超声复合清洗的效果。首先,回顾了熔盐清洗和超声波清洗的机理。为了进一步描述复合清洗机理,通过扫描电子显微镜和傅立叶变换红外光谱分析了涂料的成分和内部结构。结果表明该涂料具有明显的层状结构。总厚度约为100μm,主要成分为有机物,包括酯基,环氧基和芳族化合物。然后,结合热环境,清洁介质的性质和超声,从热效应,化学反应和超声效应三个方面对复合清洁机理进行了描述。此外,通过动态分析解释了与空气中加热的涂料相比,这种复合清洗对涂料的去除效果好的原因,这是将反应活化能从单独的涂料的114.4 kJ / mol降低到74.1 kJ / mol。

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