Influences of alloying elements and processing parameters on the dynamic transformation of undercooled austenite in hot-rolled TRIP steels
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摘要: 利用Gleeble熱模擬試驗機進行單軸壓縮試驗,研究了C-Mn-Si TRIP鋼和C-Mn-Al-Si TRIP鋼過冷奧氏體形變過程的組織演變,分析了合金元素和工藝參數對過冷奧氏體動態相變的影響.與等溫相變相比,C-Mn-Si鋼和C-MnAl-Si鋼動態相變動力學明顯加快.與C-Mn-Si鋼相比,用質量分數約1%的Al替代Si后,C-Mn-Al-Si鋼的A3溫度明顯提高,在相同變形工藝條件下C-Mn-Al-Si鋼過冷奧氏體動態相變較易發生,而C-Mn-Si鋼動態相變得到的鐵素體晶粒比較細小.減小動態相變前奧氏體晶粒尺寸,有利于過冷奧氏體動態相變的進行.提高過冷奧氏體形變時的變形溫度或應變速率均對動態相變產生一定的阻礙作用,但影響不顯著.Abstract: The microstructural evolution of undercooled austenite in C-Mn-Si TRIP steel and C-Mn-Al-Si TRIP steel during hot deformation was investigated by hot uniaxial compression testing on a Gleeble-1500 hot simulator, and the influences of alloying elements and processing parameters on the dynamic transformation of undereooled austenite were analyzed. It is found that the dynamic transformation kinetics of undercooled austenite in C-Mn-Si TRIP steel and C-Mn-Al-Si TRIP steel is faster obviously than the isothermal transformation kinetics of undercooled austenite. In comparison with C-Mn-Si TRIP steel, the A3 temperature of C-Mn-AI-Si TRIP steel is elevated markedly by the substitution of 1% Al for Si, and the dynamic transformation of undercooled austenite in C-Mn-AI-Si TRIP steel is faster at the same processing conditions. But the averave size of ferrite grains fomred by the dynamic transformation in C-Mn-Si TRIP steel is finer. The refinement of austenite grains before the dynamic transformation is of benefit to the development of the dynamic transformation of undercooled austenite. Increasing the deformation temerature or the strain rate of undercooled austenite during hot deformation has a retarding effect on the dynamic transformation of undercooled austenite, but this effect is not marked.
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Key words:
- TRIP steel /
- phase transitions /
- austenite /
- alloying elements /
- grain size /
- compression testing
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