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A potential hot stamping process for microstructure optimization of 22MnB5 steels characterized by asymmetric pre-rolling and one-or two-step pre-heating

机译:用于微观结构优化的潜在热冲压工艺22MnB5钢,其特征是不对称的预轧制,一步或两步预热

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摘要

In this paper, a study on the innovative hot stamping process and the typical microstructures is presented, aiming to clarify insights into the influence of processing variables (asymmetric rolling temperature, rolling reduction, pre-heating method, and so on) on the evolution of microstructure, in order to evaluate the feasibility of the new process to improve properties of 22MnB5 steels. TEM investigations of asymmetrically rolled samples indicate different morphologies of dislocation density and pearlite with altering the rolling reduction, velocity ratio (VR) and rolling temperature. And the study demonstrates that asymmetric rolling before hot stamping process greatly promotes the austenite transformation during the pre-heating stage, especially when the rolling temperature is lowered to liquid nitrogen temperature (LNT) and the velocity ratio is higher than 1.5. And two-step pre-heating with induction heater and roller hearth furnace contributes positively to the austenite grain refinement in pre-deformed 22MnB5 steel. Another relevant conclusion is that the cooling microstructures can also be adjusted by changing the pre-deformed temperature of the samples.
机译:在本文中,提出了一种关于创新的热冲压过程和典型微观结构的研究,旨在阐明对加工变量(不对称轧制温度,轧制,预热方法等)的洞察的见解微观结构,以评估新工艺的可行性,提高22MnB5钢的性能。不对称轧制样品的TEM调查表明了脱位密度和珠光体的不同形貌,改变轧制降低,速度比(VR)和轧制温度。该研究表明,在热冲压过程之前,在预热阶段促进奥氏体转化之前的不对称轧制,特别是当轧制温度降低到液氮温度(LNT)并且速度比高于1.5时。与感应加热器和滚轮炉膛炉的两步预热有助于预变形22MnB5钢的奥氏体晶粒细化。另一个相关的结论是通过改变样品的预变形温度来调节冷却微观结构。

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