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Modelling the effects of material properties of two low alloyed power plant steels on environmentally assisted cracking in high temperature water

机译:建模两种低合金电厂钢的材料特性对高温水中环境辅助开裂的影响

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Based on the recently presented model for the combined anodic path/hydrogen induced stress corrosion cracking of pure iron the effects of hydrogen reduction charges on SSRT fracture strains in high temperature water are established for steels 7CrMoVTiB10 10 and 10CrMo910 in the condition as delivered, 1100°C/water quenched and as welded.The data are implemented into the model for calculation of the effects of hydrogen cracking sensitivity on SCC growth rates at various operational conditions including temperatures, pH and corrosion potentials as well as global stresses. The results confirm that, as a consequence of local acidification at initial anodic path corrosion, hydrogen affected fracture ductility can be a controlling factor for SCC in high temperature water. As a particular effect, intermediate temperatures around 200°C exhibit peak crack growth rates as a consequence of the involved electrochemical reactions.
机译:基于最近提出的纯铁组合阳极路径/氢致应力腐蚀开裂模型,在交付状态为1100°的条件下,建立了7CrMoVTiB10 10和10CrMo910钢在高温水中氢还原电荷对SSRT断裂应变的影响。 C /水淬火和焊接后的数据被应用到该模型中,以计算在各种操作条件下,包括温度,pH和腐蚀电位以及整体应力下,氢裂解敏感性对SCC生长速率的影响。结果证实,作为初始阳极路径腐蚀时局部酸化的结果,氢影响的断裂延展性可能是高温水中SCC的控制因素。作为特定的效果,由于涉及的电化学反应,大约200°C的中间温度表现出峰值的裂纹扩展速率。

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