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Fabrication of Mechanically Alloyed TiNiCu Powders and Damping Properties of Al/TiNiCu Sintered Materials

机译:机械合金化TiNiCu粉末的制备及Al / TiNiCu烧结材料的阻尼特性

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The microstructure and phase transformation of mechanically alloyed Ti-(50-x)Ni-xCu powders added to an aluminium matrix to enhance their damping properties were studied. Four compositions between 5 and 20 at. percent Cu intermetallic compounds were selected to control the fraction of the martensite phase of Ti-Ni-Cu. Mechanically alloyed Ti-Ni-Cu powders were heat-treated in a vacuum of 10~(-6) torr for crystallization. Mechanically alloyed Ti-Ni-Cu powders were milled with Al, swaged at room temperature and rolled at 450 deg C. After mechanical alloying for 10 hours, The Ti, Ni and Cu elements were completely alloyed and an amorphous phase was formed. The amorphous phase was crystallized to martensite (B19') and austenite (B2) after heat treatment for 1 hour at a temperature of 850 deg C, and a Fe_2Ti intermetallic compound was partially formed. As the Cu contents increased the austenite phase fraction increased. The specific damping capacity (SDC) of Al/TiNiCu composite was higher than that of the Al/TiNi composite or native aluminium.
机译:研究了添加到铝基体中以增强其阻尼性能的机械合金化Ti-(50-x)Ni-xCu粉末的微观结构和相变。 5至20 at。之间的四种成分选择百分数的Cu金属间化合物以控制Ti-Ni-Cu的马氏体相的分数。机械合金化的Ti-Ni-Cu粉末在10〜(-6)托的真空中进行热处理以结晶。机械合金化的Ti-Ni-Cu粉末用Al研磨,在室温下锻压,然后在450℃下轧制。机械合金化10小时后,Ti,Ni和Cu元素完全合金化,形成非晶相。在850℃的温度下热处理1小时后,非晶相结晶为马氏体(B19')和奥氏体(B2),并且部分地形成Fe_2Ti金属间化合物。随着Cu含量的增加,奥氏体相分数增​​加。 Al / TiNiCu复合材料的比阻尼能力(SDC)高于Al / TiNi复合材料或天然铝。

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