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Precipitation Behaviour and Its Strengthening Effect of Maraging Steel in Laser Cladding Remanufacturing

机译:马氏体时效钢在激光熔覆再制造中的析出行为及其强化作用

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Laser hot-wire cladding is one of the major remanufacturing processes used to repair damaged compressor impellers. The strength of cladding layer and heat affected zone (HAZ) is essential to the functionality and reliability of repaired parts. This paper makes a qualitative explanation of strength variation by analyzing the microstructure of the substrate. A thermal simulation experiment was conducted to investigate the effect of aging temperature on the strength of the substrate. Results showed that the strength trend in the cladding layer and HAZ varied with respect to the aging temperature as a result of precipitation behavior. Heat treatment temperature was divided into three intervals depending on its effect. Further, the tip temperature of substrate solid solution was found out to be 500 °C. Precipitates coarsening and dissolution in aging state substrate led to heat affected zone softening.
机译:激光热线熔覆是用于修复损坏的压缩机叶轮的主要再制造工艺之一。包层和热影响区(HAZ)的强度对于维修零件的功能和可靠性至关重要。通过分析基体的微观结构,本文对强度变化进行了定性解释。进行了热模拟实验,以研究时效温度对基材强度的影响。结果表明,由于析出行为,熔覆层和热影响区的强度趋势随时效温度而变化。根据其效果,将热处理温度分为三个间隔。此外,发现基板固溶体的尖端温度为500℃。沉淀物在老化状态下会粗化和溶解,导致热影响区软化。

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