首页> 外文会议>International Conference on High Strength Low Alloy Steels >DEVELOPMENT AND TECHNOLOGY OF LARGE THICKNESS TMCP STEEL PLATE WITH 390MPA GRADE USED FOR ENGINEERING MACHINERY
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DEVELOPMENT AND TECHNOLOGY OF LARGE THICKNESS TMCP STEEL PLATE WITH 390MPA GRADE USED FOR ENGINEERING MACHINERY

机译:大厚度TMCP钢板的开发与技术,用于工程机械390MPA等级

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摘要

Recently, with the rapid upgrading of the equipment in the steel Corp, the rolling technology of TMCP has been rapidly developed and widely applied. A large amount of steel plate has been produced by using the TMCP technology. The TMCP processes have been used more and more widely and replaced the heat treatment technology of normalizing, quenching and tempering heat process. In this paper, low financial input is considered in steel plate production and the composition of the steel has been designed with low C component, a limited alloy element of the Nb, and certain amounts of Mn element. During the continuous casting process, the size of the continuous casting slab section is 300 mm × 2400 mm. The rolling technology of TMCP is controlled at a lower rolling and red temperature to control the transformation of the microstructure. Four different rolling treatments are chosen to test its effects on the 390MPa grade low carbon steel of bainitic microstructure and properties. This test manages to produce a proper steel plate fulfilling the standard mechanical properties. Specifically, low carbon bainite is observed in the microstructure of the steel plate and the maximum thickness of steel plate under this TMCP technology is up to 80mm. The mechanical property of the steel plate is excellent and the KV2 at -40°C performs more than 200 J. Moreover, the production costs are greatly reduced when the steel plate is produced by this TMCP technology when replacing the current production process of quenching and tempering. The low cost steel plate could well meet the requirements of producing engineering machinery in the steel market.
机译:最近,随着钢铁公司设备的快速升级,TMCP的轧制技术已迅速开发和广泛应用。通过使用TMCP技术生产了大量的钢板。 TMCP工艺越来越广泛地使用,更换了归一化,淬火和回火热过程的热处理技术。在本文中,在钢板生产中考虑了低金融输入,并且钢的组成具有低C组分,Nb的有限合金元素,以及一定量的Mn元素。在连续铸造过程中,连续铸造板块的尺寸为300mm×2400mm。 TMCP的轧制技术在较低的轧制和红色温度下控制,以控制微观结构的变换。选择四种不同的滚动处理,以测试其对贝氏体微观结构和性能的390MPa级低碳钢的影响。该测试设法生产适当的钢板,满足标准的机械性能。具体地,在钢板的微观结构中观察到低碳贝氏体,并且在该TMCP技术下的钢板的最大厚度高达80mm。钢板的机械性能优异,kV2在-40°C下执行200多个。此外,当通过该TMCP技术进行淬火和淬火的当前生产过程时,生产成本大大降低了回火。低成本钢板可以很好地满足钢铁市场生产工程机械的要求。

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