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Design of Cold Rolled and Continuous Annealed Carbide-Free Bainitic Steels for automotive application

机译:汽车用冷轧连续退火无碳化贝氏体钢的设计

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摘要

Advanced high strength steels for automotive applications were designed to achieve a carbide-free bainitic microstructure after conventional thermo-mechanical processing and a continuous annealing treatment. The microstructure obtained consists of ferrite laths interwoven with thin films of untransformed retained austenite. The sufficiently tough matrix and the control of the heterogeneity in the microstructure will allow an optimum combination of strength, ductility, and formability to be achieved. The designed steels reached far higher uniform elongations than that in commercial dual phase steels and martensitic steels with the same range of ultimate tensile strengths. Their formability was found to be appropriate for the production of final parts after cold-stamping or cold-forming. On the other hand, the yield strength/ultimate tensile strengths ratio was found to remain roughly constant (∼0.7). The reduction of area value did not seem to change as a function of overaging temperature, but the V-bending angle and the hole expansion ratio (cut-edge stretching ability) decreased significantly at the bainite holding temperature increases
机译:用于汽车应用的高级高强度钢经过设计,可以在常规的热机械加工和连续退火处理之后实现无碳化物的贝氏体组织。所获得的显微组织由铁素体板条与未转化的残余奥氏体薄膜交织而成。足够坚韧的基体和对微观结构中异质性的控制将使强度,延展性和可成形性达到最佳组合。与具有相同极限抗拉强度范围的商品化双相钢和马氏体钢相比,设计钢所获得的均匀伸长率要高得多。发现它们的可成型性适合于冷冲压或冷成型后的最终零件的生产。另一方面,发现屈服强度/最终抗拉强度之比大致保持恒定(〜0.7)。面积值的减少似乎并没有随过时效温度的变化而变化,但是随着贝氏体保持温度的升高,V弯角和扩孔率(尖端拉伸能力)显着下降。

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