MnS夹杂物在H2S饱和盐溶液中钢的氢助开裂中的作用

T. V. Venkatasubramanian, T. Baker
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引用次数: 6

摘要

摘要研究了MnS夹杂物在H2S饱和盐溶液中淬火回火中碳钢裂纹扩展行为中的作用。在这种环境下,裂缝在短横向上以不连续的方式扩展,这与包裹体成核副裂缝在主裂缝之前的发育有关。H2S饱和盐溶液的高氢活性导致基体脆性和氢在包裹体/基体界面以分子形式积累。在含有预先存在裂纹的试样中,在主裂纹前面的短横向平面上,次级裂纹的形成是由密集分布的大夹杂体集落的加压作用引起的。在这些试样中观察到的不连续生长归因于加压机制的运作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Role of MnS inclusions in hydrogen assisted cracking of steel exposed to H2S saturated salt solution
AbstractThe role of MnS inclusions in the crack growth behaviour of quenched and tempered medium carbon steel exposed to H2S saturated salt solution has been studied. In this environment, crack extension in the short transverse orientations occurs in a discontinuous manner which is associated with the development of inclusion nucleated subsidiary cracks ahead of the main crack. The high hydrogen activity of the H2S saturated salt solution causes both matrix embrittlement and the accumulation of hydrogen at the inclusion/matrix interface in a molecular form. In the case of specimens containing pre-existing cracks, the formation of secondary cracks in the short transverse plane ahead of the main crack is caused by pressurization effects at colonies of closely spaced large inclusions. The discontinuous growth observed in these specimens is attributed to the operation of the pressurization mechanism.
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