热加工工具钢基底材料对气体金属弧焊硬面焊层的元素分布、微观结构和硬度的影响

M. Lachowicz, Paweł Sokołowski, Marcin Kaszuba
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引用次数: 0

摘要

本文介绍了对三种热加工工具钢(即 55NiCrMoV7、X37CrMoV5-1 和改良 X38CrMoV5-3 钢)进行气体金属弧焊(GMAW)硬面堆焊测试的结果:55NiCrMoV7、X37CrMoV5-1 和改良 X38CrMoV5-3 牌号。进行了金属组织学研究,主要是微观结构研究,并分析了硬度曲线。对硬面镀层和基体材料各层的化学成分进行了调查,以获得剖面图。化学成分剖面测量评估结果显示,后续焊接层的基本元素和合金元素含量存在明显差异。基底材料化学成分的多样性导致所有测试材料只有在第三层,即上部焊缝层才能达到统一的化学成分。尽管合金元素和碳的含量各不相同,各焊接层的微观结构也略有差异,但在所获得的硬面涂层的整个横截面上,都保持了近乎稳定的高硬度。在热影响区(HAZ)区域,硬度有所下降,这与高温回火马氏体的分解和微观结构的球化有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Influence of the Hot Working Tool Steel Substrate Material on the Element Distribution, Microstructure and Hardness of Gas Metal Arc Welding Hardfaced Layers
The paper presents the results of gas metal arc welding (GMAW) hardfacing testing performed on three grades of hot working tool steels, namely: 55NiCrMoV7, X37CrMoV5-1 and modified X38CrMoV5-3 grade. Metal - lographic investigations, mainly microstructural ones, were carried out and hardness profiles were analyzed. The chemical composition was investigated in each individual layer of the hardfaced deposits and the substrate material, in order to obtain a profile representation. The obtained results of profilometric evaluation of the chemical composition showed clear differences in the content of basic and alloying elements in the subsequent weld layers. The diversity of the chemical composition of the substrate material caused that the uniform chemical composition for all tested materials was achieved only in the third, upper weld layer. Despite the variable content of alloying elements and carbon, as well as slight differences in microstructure occurring for individual weld layers, a sub - stantially stable and high hardness was maintained over the entire cross-section of the obtained hardfaced coatings. In the area of the heat-affected zone (HAZ), a decrease in hardness was observed, which is associated with the decomposition of the high-temperature tempered martensite and the spheroidization of the microstructure.
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