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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Effect of Cu Addition on Precipitation and Growth Behavior of MnS in Silicon Steel Sheets
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Effect of Cu Addition on Precipitation and Growth Behavior of MnS in Silicon Steel Sheets

机译:Cu添加对硅钢板中MNS沉淀及生长行为的影响

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The influence of Cu addition on MnS precipitation and growth behavior in Fe-2.88Si-0.1Mn-xCu (x = 0, 0.25) has been investigated. SEM observation clarified that Cu addition has no effect on the morphology of MnS or its growth rate at early stage. In contrast, Cu addition suppresses the growth rate at the Ostwald ripening stage. At the early stage of growth, a plateau region was observed both with and without Cu addition. Neither the conventional diffusion limited growth nor the Ostwald ripening theory adequately explains these observations. Using the Kampmann-Wagner Numerical (KWN) model, it was possible to successfully reproduce such behavior, including the plateau region. The interfacial energy between ferrite and the MnS was evaluated by the KWN-model, and good agreement was found with previously reported values. The suppression in the growth rate at the Ostwald ripening stage by Cu addition can be explained by a 15 pct reduction in the interfacial energy which possibly occurs due to the segregation of Cu at the interface between MnS and ferrite. This segregation was experimentally confirmed by STEM-EDX analysis.
机译:研究了Cu添加对Fe-2.88Si-0.1Mn-XCu(X = 0,0.25)中的MnS沉淀和生长行为的影响。 SEM观察澄清说,Cu添加对早期MNS或其生长速率的形态没有影响。相反,Cu加入抑制了骨瓦德成熟阶段的生长速率。在增长的早期阶段,观察到平台区域,没有CU的添加。传统的扩散有限的生长和奥斯特瓦德成熟理论都不充分解释这些观察结果。使用Kampmann-Wagner数值(KWN)模型,可以成功再现这样的行为,包括平台区域。通过KWN-Model评估铁氧体和MNS之间的界面能量,并发现了先前报告的价值观的良好一致性。通过Cu加入的Ostwald成熟阶段的生长速率的抑制可以通过在界面能量的15pct降低中来解释,这可能由于Cu在Mns和铁氧体之间的界面处的偏差而发生的界面能量。通过STEM-EDX分析实验证实该隔离。

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