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Investigation of Microstructure and Hardness Properties of Hardfacing Surface on SCM 440 Alloy Steel by Using Metal Active Gas and Flux Cored Arc Welding Processes

机译:金属活性气体和磁通芯弧焊工艺对SCM 440合金钢硬化表面的微观结构和硬度性能研究

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This research aimed to investigate the microstructure and hardness properties of hardfacing surface on SCM440 alloy steel by using metal active gas and flux cored arc welding processes. Due to the difficulty of welding the high strength steel, the changes in base metals' microstructures were found after welding. Preheating the specimens at 350°C and post weld heat treatment the specimens at 550°C were performed for 1 hour, to reduce the residual stresses and avoid the undesired formation of microstructures. The weld metals' microstructures that were found from both welding processes are acicular ferrite, polygonal ferrite and side plate ferrite. The hardness value of weld metal resulted from flux cored arc welding process is higher than that of the metal active gas welding process. Each welding process produced different quantities of weld metals' microstructures, causing the difference in hardness values. The data will be used for investigating and improving parameters of shaft repairing, in order to use it more effectively.
机译:该研究旨在通过使用金属活性气体和磁通芯弧焊工艺来研究SCM440合金钢硬化表面的微观结构和硬度特性。由于焊接高强度钢的难度,焊接后发现贱金属的微观结构的变化。将样品在350℃下预热,并焊接热处理550℃的样品进行1小时,以减少残余应力,避免不期望的微观结构形成。从焊接过程中发现的焊接金属的微结构是针状铁氧体,多边形铁氧体和侧板铁氧体。焊剂芯焊接工艺产生的焊接金属的硬度值高于金属活性气体焊接工艺的硬度值。每个焊接过程产生不同量的焊接金属的微观结构,导致硬度值的差异。数据将用于调查和改进轴修复的参数,以便更有效地使用它。

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