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首页> 外文期刊>High temperature materials and processes >Effects of Mn and Al on the Intragranular Acicular Ferrite Formation in Rare Earth Treated C–Mn Steel
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Effects of Mn and Al on the Intragranular Acicular Ferrite Formation in Rare Earth Treated C–Mn Steel

机译:锰和铝对稀土处理的碳锰钢中晶状针状铁素体形成的影响

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摘要

The influence of Al, Mn and rare earth (RE) on microstructure of C–Mn steel was investigated. The capacities of different RE inclusions to induce intragranular acicular ferrite (AF) formation were compared. Result shows that RE treatment could make C–Mn steel from large amounts of intragranular AF. Al killed is detrimental to the formation of intragranular AF in RE-treated C–Mn steel. An upper bainite structure would replace the AF when Al content increased to 0.027?mass?%. The optimal Mn content to form AF is about 0.75–1.31?mass?%. The effective RE inclusion which could induce AF nucleation is La_(2)O_(2)S. When patches of MnS are attached on the surface of La_(2)O_(2)S inclusion, AF nucleation capacity of RE-containing inclusion could enlarge obviously. The existence of manganese-depleted zone and low lattice misfit would be the main reason of La-containing inclusion inducing AF nucleation in C–Mn steel.
机译:研究了铝,锰和稀土(RE)对C–Mn钢组织的影响。比较了不同RE夹杂物诱导颗粒内针状铁素体(AF)形成的能力。结果表明,RE处理可以从大量的晶粒内AF中制备C-Mn钢。铝的杀死有害于RE处理过的C-Mn钢中晶粒内AF的形成。当Al含量增加到0.027质量%时,上贝氏体组织将取代AF。形成AF的最佳Mn含量约为0.75-1.31质量%。可以诱导AF成核的有效RE夹杂物为La_(2)O_(2)S。当MnS贴片附着在La_(2)O_(2)S夹杂物的表面时,含RE夹杂物的AF成核能力会明显增大。锰贫化区的存在和较低的晶格失配将是含La夹杂物引起C-Mn钢AF成核的主要原因。

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