Static recrystallization behavior of the high strength steel 300 M
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摘要: 為研究高強鋼300 M靜態再結晶行為,采用Gleeble-3800型熱模擬試驗機對300M鋼進行單/雙道次熱壓縮試驗.通過雙道次熱壓縮試驗分析了變形溫度、應變速率、變形量和初始晶粒尺寸對靜態再結晶體積分數的影響.變形溫度越高,應變速率越大,變形量越大,初始晶粒尺寸越小,則靜態再結晶體積分數越大.其中變形溫度、變形量和應變速率對靜態再結晶體積分數影響較大,初始晶粒尺寸的影響相比較小.基于雙道次熱壓縮試驗結果建立了300 M鋼的靜態再結晶體積分數模型,基于單道次熱壓縮試驗結果建立了300 M鋼完全靜態再結晶晶粒尺寸模型,并驗證了靜態再結晶體積分數模型的正確性.Abstract: To research the static recrystallization behavior of high strength steel 300 M,single/double-pass hot compression tests of 300 M steel were carried out using Gleeble-3800 thermal simulation experiment equipment. The effects of deformation temperature,strain rate,height reduction and initial grain size on the volume fraction of static recrystallization were analyzed by double-pass hot compression tests. It is found that the volume fraction of static recrystallization rapidly increases with increasing deformation temperature,strain rate or height reduction,while it decreases with increasing initial grain size. Initial grain size has less effect than the others. A static recrystallization volume fraction model and a completely static recrystallization grain size model of 300 M steel were established based on the results of double-pass and single-pass hot compression tests,respectively,and the static recrystallization volume fraction model was verified to be correct by single-pass hot compression tests.
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Key words:
- high strength steel /
- static recrystallization /
- hot compression /
- kinetic models
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