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作 者:朱晓东[1] 李承基[1] 章守华[1] 邹明[2] 苏世怀[2]
机构地区:[1]北京科技大学 [2]攀枝花钢铁[集团]公司
出 处:《金属热处理学报》1997年第2期1-8,共8页
基 金:国家经贸委重点科技开发经费资助
摘 要:将合金元素在珠光体相变时无分配状态下形成的含Si合金渗碳体做为一种介稳相处理,利用规则溶液亚点阵模型和有关文献中的数据,计算了含Si合金渗碳体相对于无Si渗碳体的自由能增量δGFe3CSi,得到了渗碳体中含Si量和δGFe3CSi的对应关系;并利用Si在不同温度下的分配系数,计算了Si对FeC合金介稳态γ/[γ+Fe3C]相界碳浓度(A′cm)的影响。所得结果认为,含Si过共析钢珠光体转变时在原奥氏体晶界出现连续网状铁素体,是Si增加含Si渗碳体自由能,从而提高了介稳态γ/[γ+Fe3C]相界碳浓度(A′cm)的结果。Alloyed cementite containing silicon formed under no partition conditions is treated as a metastable phase in this article, and the regular solution sub lattice model along with thermodynamic data published in literature is utilized to estimate δ G Fe 3C Si , the Gibbs energy increment of silicon containing cementite above that of cementite free of silicon. The relation between the content of silicon and δ G Fe 3C Si has been established. Calculation of the metastable A′ cm line ( SE ′′) modified by silicon is based on the data of the partition coefficient of silicon between ferrite and cementite under a series of temperatures. The results show that the necessary carbon content in austenite for Si containing cementite to precipitate has been greatly increased. The formation mechanism of grain boundary ferrite in silicon containing hypereutectoid steels can be explained explicitly with this metastable diagram.
分 类 号:TG151[金属学及工艺—热处理]
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