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The Influence of High Magnetic Field on the Mechanical Properties and Microstructures of Ni-33Al-28Cr-5. 5Mo-0. 5Hf Alloy

机译:高磁场对Ni-38Al-28Cr-5的力学性能和微观结构的影响。 5MO-0。 5HF合金

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The microstructure and mechanical properties of the Ni-33Al-28Cr-5.5Mo-0.5Hf alloys, treated under temperature 900°C with a 10T high magnetic field, are studied in the present paper. After high magnetic field treatment, found that the room temperature bending and tensile strength of the alloys are increased by 75% and 100%, respectively. Electron probe microanalysis shows that the Heusler phases at NiAl/Cr (Mo) grain boundaries are partially dissolved and the small Heusler phases particles at Cr (Mo) and matrix phases interfaces almost dissolved into NiAl matrix. It is suggested that the Heusler phase solution resulting from the high magnetic field treatment improves the mechanical properties of the NiAl intermetallic alloy.
机译:在本文中,研究了在900℃的温度900℃下处理的Ni-33Al-28Cr-5.5mO-0.5mO-0.5mO-0.5mO-0.5mO-0.5mO-0.5mO-0.5mO-0.5hF合金的微观结构和机械性能。 经过高磁场处理后,发现合金的室温弯曲和抗拉强度分别增加75%和100%。 电子探针微扫描表明,NIAl / Cr(Mo)晶界的Heusler相位部分溶解,并且在Cr(Mo)和基质相的小空气器相颗粒几乎溶解到Nial基质中的界面。 建议由高磁场处理引起的Heusler相溶液改善了Nial金属间合金的机械性能。

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