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首页> 外文期刊>International Journal of Pressure Vessels and Piping >Influence of weld thermal cycle and post weld heat treatment on the microstructure of MarBN steel
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Influence of weld thermal cycle and post weld heat treatment on the microstructure of MarBN steel

机译:焊接热周期与焊接热处理对马巴钢微观结构的影响

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摘要

Martensitic steels strengthened by Boron and Nitrogen additions (MarBN) were developed for high temperature/high stress service in power plant for periods of many years and are being considered as a promising candidate for the replacement of the more conventional Grade 91/92 steels. In the present study, extensive microstructural observation of physically simulated Heat Affected Zone (HAZ) MarBN material has been carried out after dilatometry simulations to link the variation in microstructure with weld thermal cycles. The microstructure in the MarBN HAZ has been observed to vary from a refined equiaxed morphology to a duplex microstructure consisting of refined grains distributed on the pre-existing Prior Austenite Grain Boundaries (PAGBs) as the peak temperature of the weld thermal cycle decreases. The temperature range corresponding to the formation of the duplex grain structure coincides with the temperature regime for the dissolution of the pre-existing M23C6 carbides. An even distribution of the M23C6 carbides within the martensitic substructure was also observed after Post Weld Heat Treatment (PWHT), which is beneficial for the creep performance of the weld HAZ. The MX precipitates are more resistant to thermal exposure and are not completely dissolved until the peak temperature reaches 1573 K (1300 degrees C). The Nb-rich MX precipitates are the predominant type observed both after weld simulations and PWHT. The hardness between the materials experienced with the thermal cycles with different peak temperature does not significantly vary after PWHT conducted in an appropriate condition, which is likely to mitigate an unfavoured stress condition in the localised area within the HAZ.
机译:由硼和氮气添加(MARBN)加强的马氏体钢(MARBN)在多年的发电厂的高温/高应力服务中开发,并且被视为更换更传统的91/92钢材的有希望的候选者。在本研究中,在稀释测定模拟后,已经进行了物理模拟热影响区(HAZ)MARBN材料的广泛的微观结构观察,以将微观结构与焊接热循环的变化联系起来。已经观察到MARBN HAZ中的微观结构以从精细的等式形态与分布在预先存在于预先存在的先前奥氏体晶晶晶界(PAGBS)上的复合晶粒组成的双工微观结构,因为焊接热循环的峰值温度降低。对应于双相晶粒结构的形成对应的温度范围与预先存在的M23C6碳化物溶解的温度范围一致。在焊接热处理(PWHT)后,还观察到马氏体下结构内M23C6碳化物的均匀分布,这对于焊接HAZ的蠕变性能有益。 MX沉淀物对热曝光更抗热,并且不会完全溶解,直到峰值温度达到1573k(1300℃)。富含Nb的MX沉淀物是焊接模拟和PWHT后观察到的主要类型。在在适当条件下进行的PWHT在PWHT进行的情况下,具有不同峰值温度的热循环所经历的材料之间的硬度不会显着变化,这可能在危险中的局部区域中的未避免的压力条件减轻局部区域。

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