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EFFECT OF PREHEAT ON IMPROVING BENEFICIAL SURFACE RESIDUAL STRESSES DURING INDUCTION HARDENING PROCESS

机译:预热对改善感应淬火过程中有益表面残余应力的影响

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Applications of the induction hardening process have been gradually increasing in the heat treatment industry due to its energy efficiency, process consistency, and clean environment. Compared to traditional furnace heating and liquid quenching processes, induction hardening is more flexible in terms of process control, and it can offer improved part quality. The commonly modified parameters for the process include the inductor power and frequency, heating time, spray quench delay and quench severity, etc. In this study, a single shot induction hardening process of a cylindrical component made of AISI 4340 is modeled using DANTE~®. It is known that the residual stresses in a hardened steel component have a significant effect on high cycle fatigue performance, with higher magnitudes of surface residual compression leading to improved high cycle fatigue life. Induction hardening of steel components produces surface residual compression due to the martensitic transformation of the hardened surface layer, with a high magnitude of compression preferred for improved performance in general. In this paper, a preheat concept is proposed with the induction hardening process for enhanced surface residual compression in the hardened case. Preheating can be implemented using either furnace or low power induction heating, and both processes are modeled using DANTE to demonstrate its effectiveness. With the help of computer modeling, the reasons for the development of residual stresses in an induction hardened part are described, and how the preheat can be used to improve the magnitude of surface residual compression is explained.
机译:由于感应淬火工艺的能源效率,工艺一致性和清洁环境,其在热处理行业中的应用已逐渐增加。与传统的熔炉加热和液体淬火工艺相比,感应淬火在工艺控制方面更加灵活,并且可以提高零件质量。该过程中通常修改的参数包括感应器功率和频率,加热时间,喷雾淬火延迟和淬火强度等。在这项研究中,使用DANTE〜®对AISI 4340制成的圆柱形部件的单次感应淬火过程进行了建模。 。众所周知,硬化钢部件中的残余应力对高周疲劳性能具有显着影响,较高的表面残余压缩量可改善高周疲劳寿命。由于淬火表面层的马氏体相变,钢部件的感应淬火会产生表面残余压缩,一般来说,为了提高性能,最好采用高压缩强度。本文提出了一种感应加热硬化工艺的预热概念,以增强硬化壳体中的表面残余压缩。可以使用熔炉或低功率感应加热来进行预热,并且使用DANTE对这两个过程进行建模以证明其有效性。借助于计算机建模,描述了感应淬火零件中产生残余应力的原因,并说明了如何使用预热来改善表面残余压缩的幅度。

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