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Microstructure and compression properties of fine Al2O3 particles dispersion strengthened molybdenum alloy 被引量:4
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作者 Tie-long SUN Liu-jie XU +4 位作者 Shi-zhong WEI Kun-ming PAN Wu-hui LI Yu-cheng ZHOU zhi-min huang 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2020年第12期3307-3321,共15页
The Mo alloys reinforced by Al2O3 particles were fabricated by hydrothermal synthesis and powder metallurgy. The microstructures of Mo-Al2O3 alloys were studied by using XRD, SEM and TEM. The results show that Al2O3 p... The Mo alloys reinforced by Al2O3 particles were fabricated by hydrothermal synthesis and powder metallurgy. The microstructures of Mo-Al2O3 alloys were studied by using XRD, SEM and TEM. The results show that Al2O3 particles, existing as a stable hexagonal phase(α-Al2O3), are uniformly dispersed in Mo matrix. The ultrafine α-Al2O3 particles remarkably refine grain size and increase dislocation density of Mo alloys. Moreover, a good interfacial bonding zone between α-Al2O3 and Mo grain is obtained. The crystallographic orientations of the interface of the Al2O3 particles and Mo matrix are [111]a-Al2O3//[111]Mo and(112)a-Al2O3//(0 11)Mo. Due to the effect of secondary phase and dislocation strengthening, the yield strength of Mo-2.0 vol.%Al2O3 alloy annealed at 1200 ℃ is approximately 56.0% higher than that of pure Mo. The results confirm that the addition of Al2O3 particles is a promising method to improve the mechanical properties of Mo alloys. 展开更多
关键词 Mo−Al2O3 alloys hydrothermal synthesis interface compression test dispersion strengthening
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