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Phase Transformation Behavior of Porous TiNi Alloys Produced by Powder Metallurgy Using Magnesium as a Space Holder

机译:以镁为空间载体的粉末冶金生产的多孔TiNi合金的相变行为

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摘要

Porous TiNi alloys with porosities in the range of 51 to 73 pct were prepared successfully applying a new powder metallurgy fabrication route in which magnesium was used as a space holder, resulting in either single austenite phase or a mixture of austenite and martensite phases dictated by the composition of the starting powders, but entirely free from secondary brittle intermetallics, oxides, nitrides, and carbonitrides. Since transformation temperatures are very sensitive to composition, deformation, and oxidation, for the first time, transformation temperatures of porous TiNi alloys were investigated using chemically homogeneous specimens in as-sintered and aged conditions eliminating secondary phase, contamination, and deformation effects. It was found that the porosity content of the foams has no influence on the phase transformation temperatures both in as-sintered and aged conditions, while deformation, oxidation, and aging treatment are severely influential.
机译:采用新的粉末冶金制造路线成功地制备了孔隙率在51%到73%范围内的多孔TiNi合金,在该路线中,使用镁作为空间保持剂,产生了单一奥氏体相或奥氏体和马氏体相的混合物,由起始粉末的组成,但完全不含二次脆性金属间化合物,氧化物,氮化物和碳氮化物。由于相变温度对成分,变形和氧化非常敏感,因此,首次在烧结和时效条件下使用化学均质样品研究了多孔TiNi合金的相变温度,消除了二次相,污染和变形影响。已经发现,在烧结和时效条件下,泡沫的孔隙率含量均不影响相变温度,而变形,氧化和时效处理则具有重要影响。

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