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The Effect of Service on Microstructure and Mechanical Properties of HR3C Heat-Resistant Austenitic Stainless Steel

机译:服役对HR3C耐热奥氏体不锈钢组织和力学性能的影响

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摘要

The physical metallurgical tests were performed on the test samples made of HR3C steel, taken from a section of a pipeline in the as-received condition and after approximately 26,000 h of service at 550 °C. In the as-received condition, the test material had austenitic microstructure with numerous large primary Z-phase precipitates inside the grains. The service of the test steel mainly contributed to the precipitation processes inside the grains and at the grain boundaries. After service, the following precipitates were identified in the microstructure of the test steel: Z-phase (NbCrN) and M C carbides. The Z-phase precipitates were observed inside the grains, whereas M C carbides - at the boundaries where they formed the so-called continuous grid. The service of the test steel contributed to the growth of the strength properties, determined both at room and elevated temperature (550, 600 °C), compared to the as-received condition. Moreover, the creep properties of HR3C steel after service were higher than those of the material in the as-received condition. The increase in the strength properties and creep resistance was connected with the growth of strengthening of the test steel by the precipitation of Z-phase and M C carbides.
机译:对HR3C钢制成的测试样品进行了物理冶金测试,测试样品取自管道的一部分,处于接收状态,并且在550°C下使用了大约26,000小时。在接收状态下,测试材料具有奥氏体微观结构,晶粒内部有许多大的初级Z相沉淀。试钢的服役主要有助于晶粒内部和晶界处的析出过程。维修后,在测试钢的微观结构中发现了以下析出物:Z相(NbCrN)和M C碳化物。在晶粒内部观察到Z相沉淀,而M C碳化物-在它们形成所谓连续网格的边界处。与在初始状态下相比,在室温和高温(550、600°C)下测定,测试钢的服役有助于强度性能的增长。此外,HR3C钢在服役后的蠕变性能高于材料在初始状态下的蠕变性能。强度性能和抗蠕变性的提高与通过Z相碳化物和M C碳化物的析出而增强的强度有关。

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