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Microstructure and Tensile Properties of Oxide Dispersion Strengthened Molybdenum Alloys prepared by different doping process

机译:不同掺杂工艺制备的氧化钼合金的微观结构和拉伸性能

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The oxide lanthanum dispersion strengthened molybdenum alloys were prepared by proprietary powder metallurgy technology, in which the Mo-La_2O_3 powders were prepared by liquid-liquid doping process which the oxide lanthanum was added to ammonium bi-molybdate solutions as aqueous solutions of La(NO_3)_3 and liquid-solid doping process which the oxide lanthanum was added to molybdenum oxide solid particles as aqueous solutions of La(NO_3)_3, respectively. The microstructure and tensile properties of the molybdenum alloys were investigated at room temperature. The results show that the molybdenum alloys all have fine molybdenum grains, and the molybdenum alloy prepared by liquid-solid doping process mainly contain fine oxide lanthanum particles of submicron and nano-sized while the alloy prepared by liquid-liquid doping process mainly contain nano-sized fine oxide lanthanum particles. The molybdenum alloys prepared by liquid-liquid doping process have higher yield strength and ductility than yield-solid doping process. The results of strengthen mechanism analysis show that the high strength of the molybdenum alloys can be advisablely explained by the fine grain strengthening and particles dispersion strengthening mechanism through the Hall-Petch relationship and Orowan model.
机译:通过专有粉末冶金技术制备氧化镧镧,通过专有的粉末冶金技术制备,其中通过将氧化镧作为La的水溶液加入氧化镧镧作为水溶液的液 - 液掺杂方法制备Mo-La_2O_3粉末(NO_3) _3和液体固体掺杂工艺分别将氧化物镧作为La(NO_3)_3的氧化钼固体颗粒作为水溶液。在室温下研究了钼合金的微观结构和拉伸性能。结果表明,钼合金全部具有细钼颗粒,液体固体掺杂工艺制备的钼合金主要含有亚微米的细氧化物镧颗粒,而液体液掺杂工艺制备的合金主要含有纳米 - 大小的细氧化物镧粒子。通过液 - 液掺杂工艺制备的钼合金具有比产率固体掺杂工艺更高的屈服强度和延展性。强化机制分析结果表明,通过霍尔 - 竖起关系和奥罗南模型,可以通过细粒强化和颗粒分散强化机制来建议钼合金的高强度。

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