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Mechanical and Thermal Influences on Microstructural and Mechanical Properties during Process-Integrated Thermomechanically Controlled Forging of Tempering Steel AISI 4140

机译:加工钢铁AISI 4140过程集成热机控锻造过程中微观结构和机械性能的机械和热影响

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摘要

Thermomechanical treatment (TMT) describes the effect of thermal and mechanical conditions on the microstructure of materials during processing and offers possible integration in the forging process. TMT materials exhibit a fine-grained microstructure, leading to excellent mechanical properties. In this study, a two-step TMT upsetting process with intermediate cooling is used to demonstrate possibilities for a process-integrated treatment and corresponding properties. A water–air-based cooling system was designed to adjust different phase configurations by varying the target temperature and cooling rate. Four different thermal processing routes and four combinations of applied plastic strains are investigated in standardized mechanical tests and metallographic analyses. The applied TMT results in a finely structured bainitic microstructure of the investigated tempering steel AISI 4140 (42CrMo4) with different characteristics depending on the forming conditions. It can be shown that the demands of the standard (DIN EN ISO 683) in a quenched and tempered state can be fulfilled by means of appropriate forming conditions. The yield strength can be enhanced up to 1174 MPa while elongation at break is about 12.6% and absorbed impact energy reaches 58.5 J without additional heat treatment when the material is formed after rapid cooling.
机译:热机械处理(TMT)描述了热和机械条件在加工过程中材料的微观结构的影响,并在锻造过程中提供了可能的集成。 TMT材料表现出细粒度的微观结构,导致优异的机械性能。在该研究中,使用中间冷却的两步TMT镦粗工艺用于证明过程综合治疗和相应性质的可能性。设计水空气的冷却系统通过改变目标温度和冷却速率来调节不同的相配置。在标准化机械测试和金相分析中研究了四种不同的热处理路线和应用塑料菌株的四种组合。施加的TMT通过不同特性的研究的耐火钢AISI 4140(42crMO4)的施加的TMT产生了不同的特性。可以表明,通过适当的形成条件,可以满足在淬火和回火状态下的标准(DIN EN ISO 683)的要求。屈服强度可以增强至1174MPa,而断裂的伸长率为约12.6%,吸收的冲击能量达到58.5J,而在快速冷却后形成材料时没有额外的热处理。

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