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Influence of carbon, manganese and nickel on microstructure and properties of strong steel weld metals: Part 3 – Increased strength resulting from carbon additions

机译:碳,锰和镍对强钢焊接金属的组织和性能的影响:第3部分–由于添加碳而提高了强度

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摘要

Neural network predictions suggested that the strength of a high strength steel weld metal with 7 wt-% nickel and 0·5 wt-% manganese could be increased significantly at moderate expense to impact toughness by additions of carbon. Based on this, three experimental weld metals were produced with carbon contents between 0·03 and 0·11 wt-%. Mechanical test results were in agreement with predictions. At low carbon content the microstructure was largely bainitic in dendrite core regions whereas martensite was found at interdendritic regions. From microstructural studies and dilatometry experiments it was found that carbon stabilised austenite to lower transformation temperatures and that the microstructure became more martensitic in nature. Effects on strength and impact toughness were explainable in terms of a refinement of the microstructure and tempering behaviour.
机译:神经网络的预测表明,添加适量的碳可以显着提高镍含量为7%(重量)和锰含量为0·5%(重量)的高强度钢焊接金属的强度,以提高韧性。基于此,生产了三种实验焊缝金属,碳含量在0·03和0·11 wt%之间。机械测试结果与预测一致。在低碳含量下,显微组织在枝晶核心区域主要是贝氏体,而在枝晶间区域则发现马氏体。从微观结构研究和膨胀学实验中发现,碳稳定了奥氏体以降低相变温度,并且微观结构在本质上变得更像马氏体。通过细化组织和回火行为可以解释对强度和冲击韧性的影响。

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