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QPQ Salt Bath Nitriding and Corrosion Resistance

机译:QPQ盐浴渗氮和耐蚀性

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摘要

The QPQ complex salt bath treatment is a type of surface strengthening technology which contains mainly salt bath nitriding and salt bath post-oxidizing processes. The effect of nitriding temperature and duration on the corrosion resistance of QPQ treated specimens is explored by immersion tests and salt spray tests in this paper. The material used in this study was 1020 annealed steel. In the immersion tests, the specimens were immersed in 3960H2O2 and 10% NaCl water solution. In the salt spray tests, specimens were salt spray tested using a 5% NaCl neutral solution. The data indicate that, when the nitriding duration is less than 2 hours at temperature below 590°C(phase change will exist when the nitriding temperature is above 590°C according to Fe-N phase diagram), the higher temperature of the salt bath nitriding , the specimens will have the higher corrosion resistance. In addition we have found that nitriding for too short a time generates a thin compound layer, and nitriding for too long generates too much porosity. Both will deteriorate the corrosion resistance.
机译:QPQ复合盐浴处理是一种表面强化技术,主要包括盐浴渗氮和盐浴后氧化工艺。本文通过浸没试验和盐雾试验探索了氮化温度和持续时间对经QPQ处理的试样的耐蚀性的影响。本研究中使用的材料是1020退火钢。在浸没测试中,将样品浸入3960H2O2和10%NaCl水溶液中。在盐雾测试中,使用5%NaCl中性溶液对样品进行盐雾测试。数据表明,在低于590°C的温度下氮化持续时间少于2小时时(根据Fe-N相图,当氮化温度高于590°C时将存在相变),盐浴的温度更高渗氮后,试样将具有较高的耐蚀性。此外,我们发现氮化时间太短会生成一层薄的化合物层,氮化时间太长会生成太多的孔隙率。两者都会降低耐腐蚀性。

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