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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Influence of Strain History and Cooling Rate on the Austenite Decomposition Behavior and Phase Transformation Products in a Microalloyed Steel
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Influence of Strain History and Cooling Rate on the Austenite Decomposition Behavior and Phase Transformation Products in a Microalloyed Steel

机译:应变历史和冷却速率对微合金钢中奥氏体分解行为和相变产物的影响

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摘要

The effect of simple strain path changes as well as post-deformation continuous cooling rate during thermomechanical-controlled processing of microalloyed steel was studied using laboratory physical simulation. The phase transformation characteristics were directly analyzed by dilatometry under various cooling rates. The microstructures of the transformation products were characterized quantitatively using EBSD. The results have shown that while strain path changes impose a considerable influence on the hot flow behavior of the austenite, the cooling rate following hot deformation is the determining factor of the phase transformation mechanism and behavior which establishes the final transformation products and subsequent mechanical properties.
机译:利用实验室物理模拟研究了在微合金钢热机械控制加工过程中简单的应变路径变化以及变形后的连续冷却速率的影响。在不同的冷却速率下,通过膨胀法直接分析了相变特性。使用EBSD对转化产物的微观结构进行了定量表征。结果表明,虽然应变路径的变化对奥氏体的热流行为有相当大的影响,但热变形后的冷却速率是相变机理和行为的决定因素,相变机理和行为决定了最终的相变产物和随后的力学性能。

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