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High-Strength Steel Bainitizing using Controlled In-Situ Gas Quenching within Machining Processes

机译:高强度钢在加工过程中使用受控原位气体淬火的钢筋化

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The bainitizing potential for new forging steels and heat treatment gas quenching have both gained a growing interest in the automotive industry. The bainitizing process, particularly within the lower bainite range, aims at providing an improved ductility with strength above martensite level. Previous investigations demonstrated the ability of controlled gas quenching for bainitizing of a stepped shaft from the forging heat. In the present work, quenching and machining process steps have been combined to investigate the bainitizing potential of the specimen during machining at elevated temperatures (hot machining). Therefore, gas jet quenching has been experimentally evaluated and the derived heat transfer coefficient distributions have been implemented into heat treatment simulations. Bainitizing strategies featuring various quenching field configurations can be operated based on simulations and time-temperature-transformation diagrams for high-strength ductile bainite (HDB) steel grade. Selected strategies have been tested within a turning machine adapted for controlled heat treatment using a gas quenching field.
机译:新的锻造钢和热处理气体淬火的贝氏化潜力都既增强了对汽车行业的兴趣。贝氏化过程,特别是在贝氏体范围内,旨在提供具有高于马氏体水平的强度的改善的延展性。以前的研究证明了控制气体淬火能够从锻造热量烧烤阶梯式轴的能力。在本工作中,已经组合了淬火和加工过程步骤以研究在高温下加工时试样的贝氏化电位(热加工)。因此,已经通过实验评估了气体喷射淬火,并且已经实施了衍生的传热系数分布在热处理模拟中。可以基于用于高强度延性贝氏体(HDB)钢材等级的模拟和时间温度变换图来操作各种淬火场配置的贝氏化策略。选择的策略已经在适于使用气体淬火场的控制热处理的转动机内进行测试。

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