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Investigation of Clusters in Medium Carbon Secondary Hardening Ultra-high-strength Steel After Hardening and Aging Treatments

机译:淬火和时效处理后中碳二次淬火超高强度钢中团簇的研究

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摘要

Clusters, containing between 10 and 1000 atoms, have been investigated in a martensitic secondary hardening ultra-high-strength steel austenitized at 1173 K (900 °C) for 1 hour and tempered at either 768 K or 783 K (495 °C or 510 °C) for 4 or 8 hours using 3D atom probe. The presence of clusters was unambiguously established by comparing the observed spatial distribution of the different alloying elements against the corresponding distribution expected for a random solid solution. Maximum separation envelope method has been used for delineating the clusters from the surrounding “matrix.” Statistical analysis was used extensively for size and composition analyses of the clusters. The clusters were found to constitute a significant fraction accounting for between 1.14 and 2.53 vol pct of the microstructure. On the average, the clusters in the 783 K (510 °C) tempered sample were coarser by ~65 pct, with an average diameter of 2.26 nm, relative to the other samples. In all samples, about 85 to 90 pct of the clusters have size less than 2 nm. The percentage frequency histograms for carbon content of the clusters in 768 K and 783 K (495 °C and 510 °C) tempered samples revealed that the distribution shifts toward higher carbon content when the tempering temperature is higher. It is likely that the presence of these clusters exerts considerable influence on the strength and fracture toughness of the steel.
机译:已经在马氏体二次硬化超高强度钢中对包含10至1000个原子的团簇进行了研究,该钢在1173 K(900°C)的温度下奥氏体化了1小时,并在768 K或783 K(495°C或510)的温度下回火°C)使用3D原子探针进行4或8小时。通过将观察到的不同合金元素的空间分布与对随机固溶体所预期的相应分布进行比较,可以明确地确定团簇的存在。最大分离包络法已用于从周围的“矩阵”中描绘出簇。统计分析被广泛用于群集的大小和组成分析。发现该簇构成相当大的部分,占该微结构的1.14至2.53vol%。平均而言,相对于其他样品,783 K(510°C)回火样品中的团簇粗大约65 pct,平均直径为2.26 nm。在所有样品中,大约85至90 pct的簇的尺寸小于2 nm。在768 K和783 K(495°C和510°C)回火样品中簇的碳含量的百分比频率直方图显示,回火温度越高,分布向碳含量越高的方向移动。这些团簇的存在可能对钢的强度和断裂韧性产生相当大的影响。

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