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Precipitation behaviors of carbides and Cu during continuous heating for tempering in Cu-bearing medium C martensitic steel

机译:含铜中碳马氏体钢回火连续加热过程中碳化物和铜的沉淀行为

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摘要

The precipitation behaviors of carbides and Cu during continuous heating for tempering were investigated in Cu-bearing medium C martensitic steel by means of dilatometry, electrical resistivity, and transmission electron microscopy. The addition of 1.5 wt%Cu suppressed carbide precipitation during quenching from 900 ℃, resulting in a large amount of solute C atoms in virgin martensite. The addition of Cu increased both the finish temperature of ecarbide precipitation and the amount of e-carbide precipitates during continuous heating. The precipitation of cementite was retarded and the amount of cementite precipitates increased by the addition of Cu. Retarded cementite precipitation in the Cu-bearing steel was attributed to sluggish Cu partitioning from cementite particles to the martensite matrix, the hindrance to the migration of cementite interfaces by Cu particles, and the slowed diffusions of C and Fe atoms. Cu precipitation was accelerated by cementite precipitation because cementite interfaces and the high Cu concentration near cementite particles provided nucleation sites for Cu precipitation. The hardness of the tempered Cubearing steel was higher than that of the tempered Cu-free steel at the temperatures of over 300 ℃ due to both Cu precipitation hardening and retarded cementite precipitation.
机译:利用膨胀法,电阻率和透射电子显微镜研究了含铜介质C马氏体钢在连续回火过程中碳化物和Cu的析出行为。 1.5wt%Cu的添加抑制了900℃淬火过程中碳化物的析出,从而在原始马氏体中产生了大量的溶质C原子。 Cu的添加增加了连续碳化过程中碳化物沉淀的最终温度和碳化物沉淀的量。通过添加Cu,渗碳体的沉淀被延迟,渗碳体沉淀的量增加。含铜钢中延缓渗碳体沉淀的原因是:Cu从渗碳体颗粒到马氏体基体的分配缓慢,Cu颗粒阻碍渗碳体界面迁移,以及C和Fe原子扩散减慢。渗碳体沉淀促进了Cu的沉淀,因为渗碳体界面和渗碳体颗粒附近的高Cu浓度为Cu沉淀提供了形核点。在300℃以上的温度下,由于铜的析出硬化和渗碳体的析出延迟,回火的立方钢的硬度高于回火的无铜钢。

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