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Intercritical Interrupted Jominy Test

机译:跨临界中断的jominy测试

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摘要

The final microstructure of DP and TRIP assisted steels can evolve after hot working (hot rolling) or during post heat treatment process. In the formation of the final structure a number of different technological parameters have important role, e.g. finishing temperature of rolling, cooling rates, temperature of intercritical annealing, etc. As a result of the individual factors and their combinations a lot of production technology routes are feasible. The effect of the different combinations of these technological parameters on the microstructure can be mapped by a special Jominy end-quench test (so called intercritical Jominy end-quench test) described in this paper. Unlike the traditional Jominy test, in this case there is a partial austenizing between A_1 and A_3 temperatures which results in a given amount of ferrite in the microstructure before quenching. The amount of ferrite depends on the temperature. In some cases the quenching process was interrupted for a given period of time in order to model the cooling process on the run-out table. During cooling each point of the Jominy specimen has a different cooling rate, so the effect of cooling rate on the microstructure can be evaluated along the length of the specimen.
机译:DP和跳闸杆的最终组织可以在热工作(热轧)或在后热处理过程中发展。在最终结构的形成中,许多不同的技术参数具有重要作用,例如,由于各个因素及其组合,整个轧机,冷却速度,跨临界退火的温度的整理温度以及它们的组合很多生产技术路线是可行的。这些技术参数对微观结构的不同组合的影响可以通过本文中描述的特殊的Jominy端骤冷测试(所谓的跨临界Jominy终骤冷试验)映射。与传统的Jominy测试不同,在这种情况下,在A_1和A_3温度之间存在部分奥氏体化,从而导致在淬火之前的微结构中的给定量的铁氧体。铁氧体的量取决于温度。在一些情况下,淬火过程被中断给定的时间段,以便将冷却过程模拟在射流表上。在冷却过程中,Jominy标本的每个点具有不同的冷却速率,因此可以沿着样本的长度评估冷却速率对微结构的影响。

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