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首页> 外文期刊>Science and Technology of Welding and Joining >Effect of microstructural heterogeneities on scatter of toughness in multi-pass weld metal of C–Mn steels
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Effect of microstructural heterogeneities on scatter of toughness in multi-pass weld metal of C–Mn steels

机译:显微组织异质性对C–Mn钢多道次焊缝金属的韧性散布的影响

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摘要

Often, scatter in mechanical properties of multi-pass steel weldments is qualitatively attributed to the underlying heterogeneous microstructure brought about by spatial variations of multiple thermal cycles. In this research, a method for quantitative heterogeneity calculation based on measured variations of microstructure and hardness throughout the multi-pass weld metals including various reheated regions was explored. Published data from multi-pass welds with controlled titanium additions (7–32 wt ppm) were correlated to comprehensive microstructure characterization. The scatter in 7 wt ppm Ti steel welds was larger than that of 32 wt ppm Ti steel welds. This change in scatter is correlated to spatial distributions of microstructural heterogeneity parameter, rather than the average value of heterogeneity parameter for the whole weldment.
机译:通常,定性将多道次钢焊件的力学性能分散归因于由多个热循环的空间变化引起的底层异质微观结构。在这项研究中,探索了一种基于测量的遍及整个焊道金属(包括多个再加热区域)的显微组织和硬度变化的定量异质性计算方法。钛添加量受控(7–32 wt ppm)的多道次焊缝的公开数据与全面的显微组织表征相关。 7 wt ppm Ti钢焊缝中的散布大于32 wt ppm Ti钢焊缝中的散布。散射的这种变化与微结构异质性参数的空间分布有关,而不是与整个焊件异质性参数的平均值有关。

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