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Studies on thermal stability,softening behavior and mechanism of an ADS copper alloy at elevated temperatures 被引量:2

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摘要 An Al2O3 dispersion strengthened(ADS)alloy with an ultra-high softening temperature of∼1200 K was fabricated by the in-situ internal oxidation and reduction methods.The evolution of the nanometer Al2O3 particles,grain size,and consequently the softening behavior of this ADS alloy,were investigated by conducting the annealing treatments in the range from 673 K to 1273 K for 60 min.These refined nanometer Al2O3 particles were found to be highly stable at elevated temperatures,leading to the high dislocation density and grain boundary stability of the matrix.The average grain size was found to increase extremely slowly from∼0.60μm to∼0.74μm with increasing annealing temperatures from 773 K to 1273 K.A criterion for grain boundaries migration and softening was established based on the competition between grain growth and pinning effect of Al2O3 particles.The strong pinning effect of Al2O3 particles was found when the grain size was between the lower limit(about 0.4-0.5μm)and upper limit(2.18μm).The occurrence of softening behavior was attributed to the rapid increase of the proportion of grains larger than the upper limit.A modified Hall-Petch relationship was established by introducing the integration of the grain size distribution,which can describe this correlation between softening behavior and the pinning effect of Al2O3 particles.The current study not only sheds light on the further understanding of the softening mechanism of ADS copper alloy but also provides a useful route for designing copper alloy with high softening resistance.
出处 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2024年第19期79-90,共12页 材料科学技术(英文版)
基金 financially supported by the National Key Research and Development Program of China(No.2020YFB0311101) the National Natural Science Foundation of China(Nos.92066205 and 92266301) the Natural Science Foundation for Distinguished Young Scholars of China(No.51925401) the Youth Foundation of National Natural Science Foundation China(No.52001020).
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