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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Inferring the specific heat of an ultra high strength steel during the heating stage of hot forming die quenching, through inverse analysis
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Inferring the specific heat of an ultra high strength steel during the heating stage of hot forming die quenching, through inverse analysis

机译:通过逆分析推断超高强度钢在热成型模具淬火加热阶段的比热

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In hot forming die quenching, furnaces are used to austenitize ultra high strength steel blanks. In the case of coated steels, like Usibor (R) 1500 P, furnace heating also transforms a protective Al-Si layer into a permanent Al-Si-Fe coating. Modeling this process requires knowledge of how the sensible energy and latent heat of austenitization change with blank temperature; while the former is known, there is considerable uncertainty regarding the latter. In this work the effective specific heat of Usibor (R) 1500 P is inferred through inverse analysis of temperature data collected on coupons heated in a muffle furnace. This technique is first used to validate the heat transfer model, and then used to investigate austenitization at higher temperatures. Finally, the methodology is applied to analyze temperature data collected from an instrumented blank heated in a roller hearth furnace. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在热成型模具淬火中,炉子用于对超高强度钢坯进行奥氏体化。对于带涂层的钢,例如Usibor(R)1500 P,炉子加热还会将保护性的Al-Si层转变为永久性的Al-Si-Fe涂层。对这一过程进行建模需要了解奥氏体化的感能和潜热如何随坯料温度变化;尽管前者是已知的,但关于后者存在很大的不确定性。在这项工作中,Usibor(R)1500 P的有效比热是通过对在马弗炉中加热的试样上收集的温度数据进行逆分析得出的。该技术首先用于验证传热模型,然后用于研究较高温度下的奥氏体化。最后,将该方法应用于分析从在辊底式炉中加热的仪器坯料收集的温度数据。 (C)2015 Elsevier Ltd.保留所有权利。

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