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首页> 外文期刊>Metallurgical and materials transactions. A, physical metallurgy and materials science >The Effects of Microstructure, Strength Level, and Crack Propagation Mode on Stress Corrosion Cracking Behavior of 4135 Steel
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The Effects of Microstructure, Strength Level, and Crack Propagation Mode on Stress Corrosion Cracking Behavior of 4135 Steel

机译:显微组织,强度水平和裂纹扩展方式对4135钢应力腐蚀开裂行为的影响

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The stress corrosion cracking (SCC) susceptibility of 4135 steel in a simulated sea water solution has been analyzed in an attempt to understand the effect that microstructural changes associated with the corresponding changes in strength level have on both intergranular (IG) and transgranular (TG) crack propagation modes. After a selection of heat treatments, the following different microstructural variables were studied: the effect of grain size on IG fracture processes; the influence of the grade of tempering on the SCC resistance and crack propagation mode; and the effect of type and content of bainite and the effect of ferrite in mixed microstructures. A global analysis shows that the typical SCC resistance-strength level inverse relationship can only be applied when the microstructure remains invariable. An important microstructural control of SCC behavior was found for TG processes at moderate and low strength levels. The data analysis showed the following: a beneficial effect of increasing the grain size when crack propagates at grain boundaries without precipitates; the existence of a critical tempering temperature so that a sudden IG-TG change happens without any apparent relation to microstructural changes; the beneficial effect of bainite presence as a substitute for mar-tensite and high SCC resistance of structures containing over 50 pct ferrite, associated with their low strength levels.
机译:分析了4135钢在模拟海水溶液中的应力腐蚀开裂(SCC)敏感性,试图了解与强度水平相应变化相关的微观结构变化对晶间(IG)和跨晶(TG)的影响裂纹扩展模式。在选择热处理之后,研究了以下不同的微结构变量:晶粒尺寸对IG断裂过程的影响;回火等级对SCC抗力和裂纹扩展方式的影响;贝氏体的类型和含量的影响以及混合组织中铁素体的影响。整体分析表明,只有在微观结构保持不变的情况下,才可以应用典型的SCC电阻-强度水平反比关系。发现在中等强度和低强度水平下TG过程的重要的SCC行为微观组织控制。数据分析显示以下结果:当裂纹在晶界处扩展而没有沉淀时,增加晶粒尺寸的有益效果;临界回火温度的存在使IG-TG突然发生变化,而与微观结构的变化没有明显关系;贝氏体替代马氏体的有益效果,以及铁素体含量超过50 pct的结构具有较高的抗SCC性能,且强度较低。

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