用金相显微分析、DSC和VSM方法研究了Co40.5Ni34Al25.5合金马氏体相变和Curie点随淬火温度的变化,通过三点弯曲试验研究其形状记忆效果.结果发现该合金马氏体相变温度和Curie点与淬火温度成正比关系.马氏体相变的4种温度,即Ms,Mf,As和Af基本平行变化,淬火温度每升高10℃,马氏体相变温度和Curie点升高8℃~9℃.β相中Al的含量随淬火温度升高而降低,因而使马氏体相变温度和Curie点升高.1320℃淬火的Co40.5Ni34Al25.5合金的弯曲强度约为450 MPa,弯曲试验表明Co40.5Ni34Al25.5合金有双向形状记忆特性.
参考文献
[1] | Kainuma R et al.[J].Intermetallics,1996,4:151. |
[2] | Enami K;Nenno S .[J].Metallurgical and Materials Transactions,1971,2:1487. |
[3] | Litvinov V S et al.[J].Physics of Metals and Metallography,1978,44(04):131. |
[4] | Karaca H E et al.[J].Scripta Materialia,2003,49:831. |
[5] | Oikawa K et al.[J].Applied Physics Letters,2001,79:3290. |
[6] | Oikawa K et al.[J].Materials Transactions,2001,42:2472. |
[7] | 罗丰华,及川胜成,石田清仁.Co41Ni32Al27-xSix合金的马氏体相变和磁性转变[J].金属学报,2005(07):680-684. |
[8] | Patoor E et al.[J].Journal of Physics Ⅳ,1995,5:C2-495. |
[9] | Hamilton R F et al.[J].Scripta Materialia,2005,53:131. |
[10] | Efstathiou C et al.[J].Scripta Materialia,2004,51:979. |
[11] | Oikawa K et al.[J].Journal of Physics Ⅳ,2003,112:1017. |
[12] | Tanaka Y et al.[J].Materials Transactions,2004,45(02):427. |
[13] | Fujita A et al.[J].MATERIALS TRANSACTIONS,2003,44:2180. |
[14] | Omori T et al.[J].Scripta Materialia,2005,52:565. |
[15] | Wuttig M.;Tsuchiya K.;James RD.;Liu LH. .Occurrence of ferromagnetic shape memory alloys (invited)[J].Journal of Applied Physics,2000(9 Pt.2):4707-4711. |
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