首页> 外文会议>International Conference on Metallurgy and Materials >INFLUENCE OF AUSTENITIZING AND TEMPERING TEMPERATURE ON MICROSTRUCTURE, SUBSTRUCTURE AND MECHANICAL PROPERTIES OF CREEP RESISTANT 9CrNb STEEL
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INFLUENCE OF AUSTENITIZING AND TEMPERING TEMPERATURE ON MICROSTRUCTURE, SUBSTRUCTURE AND MECHANICAL PROPERTIES OF CREEP RESISTANT 9CrNb STEEL

机译:奥氏体化和回火温度对抗蠕变9CrNB钢微观结构,下结构和力学性能的影响

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This paper deals with influence of austenitizing and tempering temperature on microstructure, substructure and mechanical properties of creep resistant 9CrNB steel. Austenitizing temperature of 1050 °C was used with holding time of 15 min (state N1) and 45 min (state N3). Subsequently, the samples in these conditions were tempered at 790°C/60 min (state S1 and S3). Microstructure after austenitization is formed by lath martensite and low bainite. The microstructure after tempering was formed by tempered martensite and lower bainite, with darker and lighter areas. This is due to the non-homogeneous distribution of precipitates. It can also be seen, that fine particles of precipitates were found at the martensite and low bainite lattice interfaces. It is likely to be a carbide particles, whereby excluded this particles occurred during the tempering on the original grain boundaries of austenite. The substructure was analysed in the following austenitizing conditions: 1050°C/15 min and 1050°C/45 min and their subsequent tempering at 790°C/60 min. The precipitates were identified by selective electron diffraction analysis. The mechanical properties were evaluated after austenitization and tempering conditions.
机译:本文涉及奥氏体化和回火温度对抗蠕变9CrNB钢的微观结构,下结构和力学性能的影响。奥氏体化温度为1050℃,持续时间为15分钟(状态N1)和45分钟(状态N3)。随后,将这些条件的样品在790℃/ 60分钟(状态S1和S3)中回火。奥氏体化后的微观结构由Lath马氏体和低贝氏体形成。回火后的微观结构由钢制马氏体和较低的贝氏体形成,具有较深的和更亮的区域。这是由于沉淀物的非均匀分布。还可以看出,在马氏体和低贝氏体晶格界面中发现了沉淀物细粒。它可能是碳化物颗粒,由此排除在奥氏体原始晶界的回火过程中发生这种颗粒。在以下奥氏体化条件下分析了下结构:1050℃/ 15分钟和1050℃/ 45分钟,随后的回火在790℃/ 60分钟。通过选择性电子衍射分析鉴定沉淀物。在奥氏体化和回火条件后评价机械性能。

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