首页> 外文期刊>Philosophical Magazine, A. Physics of condensed matter, defects and mechanical properties >Monitoring the precipitation reactions in a cold-rolled Al-Mn-Mg-Cu alloy using thermoelectric power and electrical resistivity measurements
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Monitoring the precipitation reactions in a cold-rolled Al-Mn-Mg-Cu alloy using thermoelectric power and electrical resistivity measurements

机译:使用热电功率和电阻率测量监测冷轧Al-Mn-Mg-Cu合金中的沉淀反应

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The aim of the present paper is to monitor multiple precipitation reactions in a normal Al alloy AA 3104 and a Mg- and Cu-rich alloy 3104 during isothermal annealing. Special emphasis is placed on the influence of dislocations on the precipitation kinetics and therefore different cold-rolling reductions are applied prior to the annealing treatment. Using both thermoelectric power (TEP) and electrical resistivity measurements it is possible to split concurrent and sequential precipitation reactions and to reduce the uncertainty about the actual precipitation reactions taking place. It is found that Al2CuMg precipitates form at low annealing temperatures, irrespective of the extent of pre-deformation. During annealing at temperatures from 350 degreesC and higher, precipitation of Mn-containing dispersoids is determined as the only process occurring. The rate of this precipitation process is strongly influenced by the degree of cold work prior to the heat treatment. The qualitative information derived from the combined TEP and electrical resistivity experiments is supported by transmission electron microscopy observations. It is also possible to calculate the weight fractions of the elements precipitated semiquantitatively. These calculated fractions are compared with equilibrium thermodynamic data and show good agreement for the precipitation of Al2MgCu and the precipitation of Mn at temperatures up to 400 degreesC. [References: 15]
机译:本文的目的是监测等温退火过程中普通铝合金AA 3104和富含Mg和Cu的合金3104中的多次沉淀反应。特别强调位错对析出动力学的影响,因此在退火处理之前采用不同的冷轧压下率。使用热电功率(TEP)和电阻率测量,可以拆分同时发生的沉淀反应和顺序发生的沉淀反应,并减少发生实际沉淀反应的不确定性。发现在低退火温度下形成Al 2 CuMg沉淀物,而不管预变形的程度如何。在从350摄氏度或更高的温度下进行退火的过程中,含Mn的分散质的沉淀被确定为唯一的过程。该沉淀过程的速率受热处理之前的冷作程度强烈影响。透射电子显微镜观察支持由TEP和电阻率实验相结合的定性信息。也可以计算半定量沉淀的元素的重量分数。将这些计算出的馏分与平衡热力学数据进行比较,结果表明,在最高400℃的温度下,Al2MgCu的沉淀和Mn的沉淀都很好。 [参考:15]

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