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Modeling and Design of Quenching and Tempering Process for Alloy Steel Tubes

机译:合金钢管淬火和回火过程的建模与设计

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High quality steel tubes are often quench hardened for superior mechanical properties, and the process includes austenitizing, spray quenching, and tempering. During spray quenching, the cooling rate is affected by the type of quenchant, nozzle design, flow rate, spray zone and spray time. In this paper, the hardening process of a steel tube made of AISI 4140 is designed by using DANTE modeling, a commercial finite element heat treatment software. The hardening process includes austenitizing by induction heating, spray quenching with water through angled nozzles, and tempering by innovative induction heating with water cooling. The modeling results include hardness, phase fractions, residual stresses, and distortion. Tempered martensite is the final microstructure phase of the tube in this case.
机译:优质钢管通常淬火硬化,用于卓越的机械性能,该方法包括奥氏体化,喷雾淬火和回火。 在喷雾淬火期间,冷却速率受淬火剂,喷嘴设计,流速,喷雾区和喷雾时间的影响。 在本文中,通过使用Dante建模,由商业有限元热处理软件使用Dante建模来设计由AISI 4140制成的钢管的硬化过程。 硬化过程包括通过感应加热,通过成角度喷嘴喷射淬火的奥氏体化,以及通过水冷的创新感应加热的回火。 建模结果包括硬度,相级分,残余应力和变形。 在这种情况下,钢化马氏体是管的最终微观结构相位。

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