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Hardening and coherent precipitates size evolution with aging Fe-12A1-12V alloy

机译:用老化Fe-12a1-12V合金沉淀沉淀沉淀沉淀尺寸展开

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Fe-Al based alloys have a remarkable potential for high temperature structural applications, provided that the limitation of their low creep resistance is solved. Third element addition (Nb, Ti, Zr or Ta) has proved to perform the task, at the expense of a low ductility. In previous works we have investigated ferritic alloys in the Fe-Al-V system with coherent precipitation of L2, phase (Fe2AlV) and have identified phases in equilibrium at the vertical section Fe_(1-2x)Al_xV_x. We have found that a wide two-phase field is present in the composition range 0.10≤x≤0.15 (x: atomic fraction) till 720 °C. In this work we study the feasibility of a structural application at high temperatures of the Fe-12Al-12V alloy. We look for ageing conditions leading to a stable coherent precipitation that could strengthen the ferritic matrix. In this way, we measured vickers hardness of coherent L2, precipitates at 600, 650 and 700 °C. In all cases hardness has a typical behavior with hardness maximum located at longer times and higher intensities as temperature decreases. We measured size evolution with time through Transmission Electron Microscopy of precipitates at 700 °C ageing temperature. As a further result, we could calculate from these measurements the activation energy for precipitate growth.
机译:Fe-Al基合金具有高温结构应用具有显着潜力,只要解决了低蠕变电阻的限制。已经证明了第三个元素(Nb,Ti,Zr或Ta)以牺牲低延展性为代价来执行任务。在以前的作品中,我们在Fe-Al-V系统中研究了铁素体合金,其具有L2,相(Fe2AlV)的相干沉淀,并在垂直部分Fe_(1-2X)AL_XV_X处具有鉴定的相位。我们发现宽两相区域存在于组成范围0.10≤x≤0.15(X:原子分数)至720°C中。在这项工作中,我们研究了Fe-12-12V合金的高温下结构应用的可行性。我们寻找老化条件,导致稳定的相干沉淀,可以增强铁素体矩阵。以这种方式,我们测量了相干L2的维氏硬度,在600,650和700℃下沉淀。在所有情况下,硬度具有典型的行为,其硬度最大位于较长时间,并且温度降低时更高的强度。通过在700℃的老化温度下透射电子显微镜,通过透射电子显微镜测量时间随时间测量。作为进一步的结果,我们可以从这些测量来计算激活能量,用于沉淀生长。

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