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含鈮微合金鋼的再結晶組織演化模擬

Microstructural modelling of recrystallization in niobium-containing microalloyed steel

  • 摘要: 建立了熱軋時流變應力、回復、再結晶及析出的物理冶金模型,用于計算軋制時位錯密度變化、再結晶形核、再結晶晶粒長大以及粒子析出等.結果表明,模型對含鈮微合金鋼在不同的熱軋形變條件下模擬結果與實驗值符合較好,可以有效預測在不同熱軋形變條件下的再結晶體積分數與再結晶晶粒大小.模型包含基本冶金現象的描述,原則上通過調整材料基本參數,可以運用于不同的鋼種.

     

    Abstract: A physicometallurgical model of flow stress, recovery, recrystallization and precipitation was developed to simultaneous-ly calculate the change in dislocation density, the nucleation and growth of recrystallized grains and the carbonitride precipitation of steel during hot rolling. The agreement of the laboratory simulation results by this model with experimental data indicates that the volume fraction of recrystallization and the grain size of niobium-containing micro-alloyed steel can be predicted with the model in different hot rolling processes. The model contains essential description of the observed metallurgical phenomena, and can be in principle adapted to different kinds of alloyed steels by changing some basic constants of materials.

     

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