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Improvement of Low-Alloy Pipe Steel Sulfide Stress Cracking Resistance

机译:低合金管钢硫化物应力开裂抗性的改进

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摘要

The influence of sheet microstructure formed by various thermomechanical processing schedules on sulfide stress cracking (SSC) resistance under uniaxial tension for low-alloy pipe steels grades X42-X65 is studied. A favorable role is established for substitution of a ferritic-pearlitic by a ferritic-bainitic microstructure and improvement of structural component dispersion is established. The favorable effect is facilitated by using high intensity post-deformation cooling from the austenite region. It is shown that segregation bands and non-metallic inclusions in a sheet axial zone do not affect the duration of specimens withstanding SSC, but they can lead to formation of hydrogen cracks (HIC) on a specimen surface that is a defective feature. In order to prevent crack formation in a specimen surface and premature failure it is necessary to lay down high specifications for specimen gauge length and fillet surface quality.
机译:研究了各种热机械加工调度对低合金管钢的单轴张力下硫化物应力开裂(SSC)电阻形成的薄片微观结构的影响X42-X65。 通过铁素体 - 贝氏体微观结构确定用于取代铁素体 - 珠光体的良好作用,并建立了结构组分分散的改善。 通过使用来自奥氏体区域的高强度冷却冷却来促进有利的效果。 结果表明,纸张轴向区中的隔离带和非金属夹杂物不会影响标本的持续时间,但它们可以导致形成是缺陷特征的样本表面上的氢裂纹(HIC)。 为了防止样品表面的裂缝形成和过早的故障,必须为试样规格长度和圆角表面质量铺设高规格。

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