SA 508 2级压力容器钢- 196℃时显微组织对屈服应力和解理断裂应力的影响

D. Curry
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引用次数: 28

摘要

摘要在一系列热处理条件下,研究了sa508 2级压力容器钢在- 196℃时的屈服应力和解理断裂应力。热处理改变450℃等温转变前的奥氏体化温度,或900℃奥氏体化450℃转变后的回火处理。通过金相和断口检验对其微观组织进行了表征。低于1000℃的奥氏体化产生多边形铁素体结构,而高于1000℃的奥氏体化产生上贝氏体。随着奥氏体化温度的升高,铁素体晶粒尺寸增大,贝氏体包块尺寸增大。然而,贝氏体组织的板条宽度减小,这与随着奥氏体晶粒尺寸的增加而增加的淬透性是一致的。回火导致棒状碳化物析出。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of microstructure on yield stress and cleavage fracture stress at −196°C of SA 508 Class 2 pressure vessel steel
AbstractTests have been performed to examine the yield stress and the cleavage fracture stress at −196°C of SA 508 Class 2 pressure vessel steel in a range of heat treatment conditions. The heat treatments either varied the austenitization temperature before isothermal transformation at 450°C or varied the tempering treatment after austenitizing at 900°C and transforming at 450°C. The resultant microstructures have been characterized by metallographic and fractographic examination. Austenitization at temperatures below about 1000°C produced a polygonal ferritic structure, whereas an upper bainite was produced following austenitization above this temperature. Increasing the austenitizing temperature caused first the ferrite grain size and then the bainitic packet size to increase. However, the lath width of the bainitic microstructures decreased, which is consistent with an increase in hardenability accompanying the increased prior austenite grain size. Tempering caused the precipitation of rodlike carbide...
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