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Suppression of strain-induced precipitation of NbC by epitaxial growth of NbC on pre-existing TiN in Nb-Ti microalloyed steel

机译:Nb-Ti微合金钢中预先存在的TiN上NbC的外延生长抑制应变诱导的NbC析出

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Absence of strain-induced precipitation of NbC is observed in a conventional hot rolled Nb-Ti microalloyed X90 strip. Quantitative analysis using transmission electron microscopy and 3D atom probe tomography indicates that epitaxial growth of NbC on pre-existing TiN particleswith a short inter-particle spacing of 300+/-65 nm suppresses the occurrence of strain-induced precipitation of NbC on dislocations. The model for predicting kinetics of strain-induced precipitation of NbC on dislocations is incorporated into a criterion for the end of nucleation of strain-induced precipitation to estimate the effects of process parameters on suppression of strain-induced precipitation of NbC. TiN particle inter-spacing is identified as a key parameter influencing the precipitation behavior of NbC during thermomechanical controlled processing. TiN-NbC composite precipitates offer an alternative approach to strain-induced precipitation of NbC for high temperature processing of Nb microalloyed steels with high toughness. The significance and possible implication of the TiN-NbC composite precipitate engineering are discussed. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在传统的热轧Nb-Ti微合金X90薄带中观察不到应变诱导的NbC沉淀。使用透射电子显微镜和3D原子探针层析成像技术进行的定量分析表明,NbC在预先存在的TiN颗粒上以300 +/- 65 nm的短颗粒间距外延生长可抑制应变诱导的NbC在位错上的沉淀。将用于预测位错的应变诱发的NbC沉淀动力学的模型并入应变诱发的沉淀成核终点的准则中,以估计工艺参数对抑制应变诱发的NbC沉淀的影响。 TiN粒子间距是热机械控制过程中影响NbC析出行为的关键参数。 TiN-NbC复合沉淀物为应变诱导的NbC沉淀提供了另一种方法,用于高温加工具有高韧性的Nb微合金钢。讨论了TiN-NbC复合沉淀工程的意义和可能的意义。 (C)2017 Elsevier Ltd.保留所有权利。

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