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In Situ Investigation of Grain Evolution of 300M Steel in Isothermal Holding Process

机译:等温保温过程中300M钢晶粒演化的原位研究

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摘要

The relationships between initial microstructures, process parameters, and grain evolutions in isothermal holdings have drawn wide attention in recent years, but the grain growth behaviors of 300M steel were not well understood, resulting in a failure in precise microstructure controlling in heat treatment. In this work, in situ observations were carried out to characterize the grain evolutions of 300M steel with varying holding time, holding temperatures, and initial microstructures. The intriguing finding was that the grain refinement by austenization of 300M steel was followed by a dramatic grain growth in the initial stage of holding (≤~600 s), and with increasing time (~600–7200 s), the average grain size appeared to have a limit value at specific temperatures. The austenization process accelerated the grain growth by generating large quantity of grain boundaries at the initial stage of holdings, and the growth rate gradually slowed down after holding for ~600 s because the driven force was weakened due to the reduction of grain boundary energy. The initial structure and the initial grain size of 300M steel had no obvious influences on the grain size evolutions. The mechanisms of grain growth were analyzed based on in situ observations and transmission electron microscope (TEM) characterizations. A grain evolution model considering the grain boundary migration of 300M steel was established for the isothermal holding process. Good agreement was obtained between the in situ observation results and the model calculation results. This investigation aimed to understand fundamentally the grain evolutions of 300M steel in the isothermal holding process.
机译:近年来,等温保温中初始组织,工艺参数和晶粒演变之间的关系引起了广泛的关注,但是对300M钢的晶粒生长行为还没有很好的了解,导致在热处理中无法精确控制组织。在这项工作中,进行了现场观察以表征300M钢在不同的保温时间,保温温度和初始显微组织下的晶粒演变。有趣的发现是,在保持的初始阶段(≤〜600 s),通过奥氏体化300M钢进行晶粒细化之后,晶粒急剧生长,并且随着时间的增加(〜600-7200 s),出现了平均晶粒尺寸在特定温度下具有极限值。奥氏体化过程在保持的初始阶段通过产生大量晶界来促进晶粒生长,并且在保持约600 s后,由于驱动力由于晶界能量的降低而减弱,因此生长速率逐渐减慢。 300M钢的初始组织和初始晶粒尺寸对晶粒尺寸的演变没有明显的影响。基于原位观察和透射电子显微镜(TEM)表征分析了晶粒长大的机理。建立了等温保温过程中考虑300M钢晶界迁移的晶粒演化模型。现场观测结果与模型计算结果吻合良好。这项研究旨在从根本上了解300M钢在等温保温过程中的晶粒演变。

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