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The coarsening effect of SA508-3 steel used as heavy forgings material

机译:SA508-3钢用作重型锻件的粗化效果

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SA508Gr.3 steel is popularly used to produce core unit of nuclear power reactors due to its outstanding ability of anti-neutron irradiation and good fracture toughness. The forging process takes important role in manufacturing to refine the grain size and improve the material properties. But due to their huge size, heavy forgings cannot be cooled down quickly, and the refined grains usually have long time to grow in high temperature conditions. If the forging process is not adequately scheduled or implemented, very large grains up to millimetres in size may be found in this steel and cannot be eliminated in the subsequent heat treatment. To fix the condition which may causes the coarsening of the steel, hot upsetting experiments in the industrial production environment were performed under different working conditions and the corresponding grain sizes were measured and analysed. The observation showed that the grain will abnormally grow if the deformation is less than a critical value. The strain energy takes a critical role in the grain evolution. If dynamic recrystallization consumes the strain energy as much as possible, the normal grains will be obtained. While if not, the stored strain energy will promote abnormal growth of the grains.
机译:SA508Gr.3钢因其出色的抗中子辐照能力和良好的断裂韧性而广泛用于生产核动力反应堆的核心部件。锻造工艺在制造中起着重要作用,以细化晶粒尺寸并改善材料性能。但是由于它们的巨大尺寸,重型锻件无法快速冷却,精炼晶粒通常在高温条件下需要较长时间才能生长。如果没有适当安排或实施锻造工艺,则在这种钢中可能会发现尺寸高达毫米的非常大的晶粒,并且在随后的热处理中无法消除。为了确定可能导致钢变粗的条件,在不同的工作条件下进行了工业生产环境中的热up粗实验,并测量和分析了相应的晶粒尺寸。观察表明,如果变形小于临界值,晶粒将异常生长。应变能在晶粒演化中起着至关重要的作用。如果动态再结晶消耗了尽可能多的应变能,则将获得正常晶粒。否则,存储的应变能将促进晶粒的异常生长。

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