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Characterization of Precipitation Behavior and Fracture Toughness along Thickness Direction in SA508 Gr.3 Mn-Mo-Ni low alloy steels

机译:SA508 Gr.3 Mn-Mo-Ni低合金钢沿厚度方向的析出行为和断裂韧性的表征

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摘要

SA 508 Gr.3 Mn-Mo-Ni low alloy steel forgings thicker than 200 mm are used for reactor pressure vessels in nuclear power plants. The cooling rate difference along the thickness direction during the quenching process causes variation in the microstructure and mechanical properties. The microstructural variation and its influence on the fracture toughness of RPV steels were investigated in this study. The cleavage fracture toughness in the transition region were evaluated with the ASTM E1921 master curve method for samples at different locations from the inner surface to the center thickness of the RPV steel. The microstructural features, such as the area fraction, and the size and distribution of precipitates were quantitatively evaluated at each sampling position. Microstructure observations showed that at near the surface position, bainite laths are finer, and furthermore, the carbides are smaller and homogeneously distributed. The fracture toughness at the surface was better than those at deeper positions. The reference temperature To showed a linear relationship with the area fraction of the carbides bigger than a certain critical size. It is concluded that the size of the precipitates caused by the cooling rate gradient may have a dominant role in controlling the cleavage fracture toughness variation along the thickness direction for a very thick RPV steel.
机译:厚度超过200毫米的SA 508 Gr.3 Mn-Mo-Ni低合金钢锻件用于核电站的反应堆压力容器。淬火过程中沿厚度方向的冷却速率差异会导致组织和力学性能发生变化。研究了RPV钢的组织变化及其对断裂韧性的影响。使用ASTM E1921主曲线方法评估了从RPV钢内表面到中心厚度的不同位置处的样品在过渡区域的劈裂断裂韧性。在每个采样位置定量评估了微观结构特征,例如面积分数,沉淀物的大小和分布。显微组织观察表明,在表面位置附近,贝氏体板条更细,而且碳化物更小且分布均匀。表面的断裂韧性比更深的位置更好。参考温度T 0与大于一定临界尺寸的碳化物的面积分数呈线性关系。可以得出结论,对于非常厚的RPV钢,由冷却速率梯度引起的析出物尺寸可能在控制沿厚度方向的解理断裂韧性变化中起主要作用。

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