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熱軋高碳鋼線材組織—性能預報系統

Prediction for microstructure and mechanical properties of hot rolled high carbon steel wire

  • 摘要: 在模擬實驗和工業試驗驗證的基礎上,建立了高碳鋼高速線材在軋制和冷卻過程中組織演變及力學性能系列模型,包括臨界應變、奧氏體動態及靜態再結晶、奧氏體相變體積分數、珠光體片間距以及組織-性能關系等子模型.基于以上模型,開發了一個模擬程序,對高速線材生產的物理冶金過程進行了仿真計算,得到軋件的溫度場、奧氏體晶粒尺寸演變、最終組織特征和力學性能.模擬結果顯示主要軋制溫度及最終組織性能與現場實測結果吻合較好.

     

    Abstract: An integrated mathematical model for predicting microstructure evolution in high carbon wire rods during high speed hot rolling and controlled cooling was developed on the base of laboratory research and industrial validation tests. It consisted of many sub-models such as critical strain, static and dynamic recrystallization of austenite, volume fraction of transformed austenite, interlamellar spacing of pearlite, microstructure-to-property relations. Based on these models, a simulating software, which could run on PC computers, was programmed to numerically simulate the physical metallurgy process for high-speed wire production including the temperature distribution, evolution of austenite grains, final microstructure and mechanical properties. The predicted results are agreeable well with the measured ones by industrial tests.

     

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