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首页> 外文期刊>Metals and Materials International >Roles of bulk carbon content on grain size, carbide reactions and intergranular rupture life in 2.25cr martensitic heat resistant steels
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Roles of bulk carbon content on grain size, carbide reactions and intergranular rupture life in 2.25cr martensitic heat resistant steels

机译:2.25Cr马氏体耐热钢中散装碳含量对晶粒碳含量,碳化物反应和骨间破裂寿命的作用

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摘要

The steel of a higher bulk carbon content shows the denser precipitation distribution of carbides after the solution treatment followed by tempering. Such a carbide distribution produces the smaller prior austenite grain size after the welding simulation at a high temperature. Because the equilibrium segregation concentration of phosphorus decreases with decreasing prior austenite grain size, the specimen of the higher bulk carbon content shows therefore the longer intergranular rupture life. The rupture life is also increased by the partitioning of phosphorus pre-segregated at prior austenite grain boundary/carbide interfaces onto the fresh surface of precipitates formed on the surface of pre-formed carbides. The intergranular rupture life is additionally increased by the repulsive segregation between carbon and phosphorus which decreases the overall phosphorus segregation concentration at the prior austenite grain boundaries.
机译:较高的批量碳含量的钢显示溶液处理后碳化物的密度沉淀分布,然后回火。 这种碳化物分布在高温下焊接模拟后产生更小的先前奥氏体晶粒尺寸。 由于磷的平衡分离浓度随比奥氏体晶粒尺寸的降低而降低,因此较高批量碳含量的标本表明,晶间破裂寿命较长。 在预先形成的碳化物表面上形成的沉淀物的新鲜表面上,通过在先前奥氏体晶界/碳化物界面预先聚在预成型碳化物表面上形成的沉淀物的新鲜表面上,也增加了破裂寿命。 通过碳和磷之间的排斥偏析另外增加了晶间破裂寿命,这降低了先前奥氏体晶状体边界的总磷偏析浓度。

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