利用低温分解型造孔剂与梯级热等静压烧结和常规烧结的匹配工艺成功制备出了梯度孔隙率与大孔隙尺寸多孔NiTi形状记忆合金.多孔合金的孔隙率为30%-61%,孔隙平均尺寸可根据不同预处理工艺在50-500 μm之间变化,且具有较高的开孔率(最高可达85%).所制备的径向梯度孔隙率多孔NiTi合金具有良好的力学性能,线性超弹性应变大于4%;热分析和XRD分析表明,所制备的多孔合金呈现明显的马氏体转变和逆转变特征,相变特征温度随孔隙率的提高而降低.
参考文献
[1] | Rhalmi S,Odin M,Assad M,Tabrizian M,Rivard C H,Yahia L H.Bio Med Mater Eng,1999; 9:151 |
[2] | Morgan N B.Mater Sci Eng,2004; A378:16 |
[3] | Greiner C,Oppenheimer S M,Dunand D C.Acta Biomater,2005; 1:705 |
[4] | Li B Y,Rong L J,Li Y Y,Gjunter V E.Chin J Mater Res,2000; 14:561;(李丙运,戎利建,李依依,V.E.Gjunter.材料研究学报,2000;14:561) |
[5] | Zhang X P,Zhang Y P.Chin J Mater Res,2007 (in press);(张新平,张宇鹏.材料研究学报,2007,待发表) |
[6] | Martinov I F,Skorokhod V V,Solonin S M.Sov Powder Metall,1981; 12:84 |
[7] | Drozdov I A.Powder Metall Met Ceram,1995; 34:282 |
[8] | Green S M,Grant D M,Kelly N R.Powder Metall,1997;40:43 |
[9] | Biswas A.Acta Mater,2005; 53:1415 |
[10] | Li B Y,Rong L J,Li Y Y,Gjunter V E.Acta Mater,2000;48:3895 |
[11] | Chung C Y,Chu C L,Wang S D.Mater Lett,2004; 58:1683 |
[12] | Yeh C L,Sung W Y.J Alloys Compd,2004; 376:79 |
[13] | Entchev P B,Lagoudas D C.Mech Mater,2002; 34:1 |
[14] | Yuan B,Chung C Y,Zhu M.Mater Sci Eng,2004; A382:181 |
[15] | Yuan B,Chung C Y,Zhang X P,Zeng M Q,Zhu M.Smart Mater Struct,2005; 14:S201 |
[16] | Bram M,Ahmad-Khanlou A,Heckmann A,Fuchs B,Buchkremer H P,Stoever D.Mater Sci Eng,2002; A337:254 |
[17] | Nassera S N,Su Y,Guo W G,Isaacs J.J Mech Phys Solids,2005; 53:2320 |
[18] | Zhao Y,Taya M,Kang Y S,Kawasaki A.Acta Mater,2005; 53:337 |
[19] | Mentz J,Krone L,Bram M,Buchkremer H P,Stoever D.Proc Euro PM2005,Vol.Ⅱ,Shrewsbury,UK:EPMA,2005:135 |
[20] | Zhang X P,Zhang Y P,Chung C Y.China Pat,CN10100-3868,2006;(张新平,张宇鹏,朱剑豪.中国发明专利,CN10100-3868) |
[21] | ASTM E9-89a,ASTM International,PA 19428-2959,United States,2000 |
[22] | Otsuka K,Ren X.Prog Mater Sci,2005; 50:511 |
[23] | Yuan B,Zhang X P,Chung C Y,Zhu M.Mater Sci Eng,2006; A438-440:585 |
[24] | Zhang Y P,Zhang X P.7th Asia Pacific Conf Mater Process.Singapore:National University of Singapore,2006:FP007 |
[25] | Wu S K,Lin H C,Chou T S.Acta Metall Mater,1990;38:95 |
[26] | Coluzzi B,Biscarini A,Campanella R,Mazzolai G,Trotta L,Mazzolai F M.J Alloys Compd,2000; 310:300 |
[27] | Yuan B,Zhang X P,Chung C Y,Zeng M Q,Zhu M.Metall Mater Trans,2006; 37A:755 |
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