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首页> 外文期刊>Journal of Materials Processing Technology >Microstructural evolution and mechanical property development with nickel addition in low-carbon weld butt joints
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Microstructural evolution and mechanical property development with nickel addition in low-carbon weld butt joints

机译:低碳焊接接头中镍加入微观结构演化与机械性能开发

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摘要

Four metal powder flux-cored wires with added nickel (Ni) were designed to systematically investigate how Ni influences the microstructure and toughness in low-carbon bainitic weld metals (WMs). The microstructure was safely predicted by utilizing reasonable welding craft parameters (i.e., appropriate heat input and proper interpass temperature). Microstructural characterization, crystallographic analysis, microhardness mapping, fracture microparameter measurement, and finite element method calculations were all taken into account. This work showed that more martensite transformation occurs with increasing Ni and that the ductile-brittle transition temperature drops with added Ni. The boundaries with low-angle misorientation (i.e., less than 4) enhance microhardness and the optimal inclusion size is in the range of 0.3-0.45 gm, thus revealing the reasons for the resulting microhardness and toughness variations. In addition, the high-angle grain boundaries in close packed plane packets effectually prevent cracks. From a practical perspective, 4 wt.% Ni could be the best design for welding wires in the present work. This work confirmed many of the results found in recently published literature. These results provide a reference for the composition design of welding wires and the processing method of WMs.
机译:四个与加入镍(Ni)的金属粉末的焊剂芯焊丝被设计为系统地研究的Ni如何影响在低碳贝氏体组织与韧性焊金属(WMS)。微观结构被安全通过利用合理的焊接工艺参数(即,适当的热输入和适当的层间温度)进行预测。微观结构的表征,结晶学分析,显微硬度映射,骨折microparameter测量,和有限元法的计算都考虑在内。这项工作表明用Ni越来越大,韧脆转变温度下降添加了镍出现更多的马氏体转变。与低角度取向差(即,小于4)的边界增强显微硬度和最佳夹杂物尺寸在0.3-0.45克的范围内,从而揭示出为所得的显微硬度和韧性的变化的原因。此外,在接近所述高角度晶界填充平面分组有效地防止裂纹。从实践的角度,4重量%的Ni可用于本工作焊丝的最佳设计。这项工作证实了许多在最近发表的文献中找到的结果。这些结果提供了用于焊接导线的成分设计和WMS的处理方法的基准。

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