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Austenite formation and mechanical properties of a cold rolled ferrite-martensite structure during intercritical annealing

机译:临界退火过程中冷轧铁素体-马氏体组织的奥氏体形成和力学性能

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摘要

The austenite formation behavior of 80% cold rolled low carbon steel with ferrite-martensite microstructure during intercritical annealing for different times was studied. Increasing annealing time led to the formation of austenite at the edge of fine recrystallized ferrite grain boundaries. The value of Avrami exponent for the austenite formation was 2 with an activation energy of 90.67 kJ/mol. The variation of hardness, strength and strain-hardening exponent of annealed samples were studied in terms of the microstructural features. The dual phase steel generated by annealing of deformed ferrite-martensite microstructure at 800 ℃ for 120 s showed a superior strength-elongation balance.
机译:研究了80%冷轧低碳钢的铁素体-马氏体组织在不同时间的临界退火过程中的奥氏体形成行为。延长的退火时间导致在细的再结晶铁素体晶粒边界的边缘形成奥氏体。奥氏体形成的Avrami指数值为2,活化能为90.67 kJ / mol。根据显微组织特征研究了退火样品的硬度,强度和应变硬化指数的变化。铁素体-马氏体变形组织在800℃退火120 s产生的双相钢具有优异的强度-伸长率平衡。

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