元素C对β-TiAl合金高温压缩及蠕变性能的影响

来源期刊:中国有色金属学报(英文版)2017年第11期

论文作者:周灿旭 刘彬 刘咏 邱从章 李慧中 贺跃辉

文章页码:2400 - 2405

关键词:TiAl合金;碳;析出;高温压缩;高温蠕变

Key words:TiAl alloy; carbon; precipitation; high temperature compression; high temperature creep

摘    要:C元素是提高金属材料高温性能的重要元素之一。研究C元素对β-TiAl合金(Ti-45Al-3Fe-2Mo,摩尔分数,%)的高温压缩性能(750~850 °C)及蠕变性能(750 °C,150~300 MPa)的影响。结果表明,C元素的加入明显提高β-TiAl合金的高温压缩强度及蠕变抗力。添加C元素后,在β-TiAl合金中形成了纳米尺度的Ti3AlC碳化物相,碳化物可以钉扎位错,从而大幅提高材料的高温性能。同时,C元素的添加还降低β相含量,细化层片结构,引起固溶强化,这些因素的共同作用都有效提高合金的高温性能。

Abstract: Carbon is an important alloying element in improving high temperature mechanical properties of various metallic materials. The effects of carbon on high temperature mechanical properties of a β-stabilized Ti-45Al-3Fe-2Mo (molar fraction, %) alloy were studied through compressive and creep tests. The results show that the carbon addition (0.5%, molar fraction) obviously enhances the high temperature compressive strength and creep resistance of the β-stabilized Ti-45Al-3Fe-2Mo alloy. A lot of nano-scaled Ti3AlC carbides precipitate in the β-stabilized alloy and these carbides pin the dislocations, and greatly increase the high temperature properties. At the same time, the carbon addition decreases the amount of b phase, refines the lamellar spacing, and causes solution strengthening, which also contribute to the improvement of the high temperature properties.

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