Comparison of stress relief cracking in A 508 2 and A 533 B pressure vessel steels

J. Shin, C. Mcmahon
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引用次数: 22

Abstract

AbstractThe mechanisms of, and susceptibility to, stress relief cracking (SRC) were studied in A 508 class 2 and A 533 B pressure vessel steels by means of fixed displacement, load relaxation tests on notched specimens in pure bending at 823–923 K in vacuum. The specimens had previously been given heat affected zone simulation treatments in the range 1323–1573 K. The mechanisms of SRC were found to be the same as reported separately for A 508 2 steel, which was found to be generally more susceptible to SRC than A 533 B steel because of the faster formation of microcracks and coalescence of microcracks into a macrocrack. This can be rationalized in terms of the higher creep strength in A 508 2 steel owing to the presence of chromium, and the higher concentration of intergranular sulphur or reprecipitated sulphides owing to the lower manganese content of A 508 2 steel, which results in less stable sulphides. These factors are discussed in the framework of a recently proposed model for the brittle mode of SRC.
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a5082与a533b压力容器钢应力解除开裂的比较
摘要通过823 ~ 923 K真空纯弯曲缺口试样的固定位移、载荷松弛试验,研究了a508 2级和a533b压力容器钢的应力解除开裂机理和敏感性。在1323-1573 K范围内对试样进行热影响区模拟处理。a5082钢的SRC机制与单独报道的相同,由于微裂纹的形成和微裂纹合并成大裂纹的速度更快,因此通常比a533 B钢更容易受到SRC的影响。这可以合理地解释为,由于铬的存在,a5082钢的蠕变强度较高,而由于a5082钢的锰含量较低,晶间硫或再沉淀硫化物浓度较高,导致硫化物不稳定。在最近提出的SRC脆性模式模型的框架内讨论了这些因素。
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