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用常规粉末冶金烧结法结合造孔剂技术制备了多孔镍钛形状记忆合金.研究结果表明,孔隙特征主要取决于所用造孔剂的尺寸和形貌,而孔隙率可以通过加入造孔剂的含量来调控;所制备合金的主要成分是B2相和B19'相的NiTi,在经高温固溶处理后仍有极少量的Ti2Ni,Ni3Ti和Ni4Ti3等杂质相存在,而且合金杂质相的含量随造孔剂加入量的增加而相应提高.对合金的相变热分析表明,在从高温降至低温过程中多孔镍钛发生特殊的三阶段相变,这主要是由合金成分和相组成在晶界的不均匀造成的.最后,研究表明相变对多孔镍钛合金的阻尼性能(内耗)有独特的影响,而孔隙率对阻尼的影响则不明显.

Porous nickel-titanium shape memory alloys (NiTi SMAs) with adjustable porosity were fabricated successfully by adding pore-forming agent ammonium bicarbonate and conventional sintering. It was found that the pore characteristics depended mainly on the shape and size of ammonium bicarbonate particles used, and the porosity of the alloys could.be tailored by controlling the amount of ammonium bicarbonate added. The porous NiTi SMAs fabricated mainly consisted of B2 and B19' NiTi phases, while less Ti2Ni, Ni3Ti and Ni4Ti3 phases were found even after a high temperature solution treatment. It was also found that the impurity phases increased in the porous alloys due to the addition of the pore-forming agent. In addition, a special 3-stage phase transformation took place in the porous NiTi SMAs, which was attributed to the inhomogeneity of compositions and phase constituents at grain boundaries. Moreover, phase transformation shows obvious influences on the damping behavior of the fabricated porous NiTi SMAs, while the influence from porosity was not obvious.

参考文献

[1] V I Itin;V E Gjunter;V N Khodorenko;M L Chobanyan,M Z Mirgazizov,E N Korsteleva,M A Belyalova .Dynamics of porous penetrable titanium nickelide penetration by human tissues and mechanical behavior of titanium nickelide-human tissues composites[J].PISMA V ZHURNAL TEKHNICHESKOI FIZIKI,1996,22:37-42.
[2] B Y Li;L J Rong;Y Y Li;V E Gjunter .Development of biomedical porous Ti-Ni shape memory alloys hinese[J].Journal of Materials Research,2000,14:561-567.
[3] P B Entchev;D C Lagoudas .Modeling porous shape memory alloys using micromechanical averaging techniques[J].Mechanics of Materials,2002,34:1-24.
[4] H C Lin;S K Wu;M T Yeh .Damping characteristics of TiNi shape memory alloys[J].Etallurgy Transaction,1993,A24:2189-2194.
[5] Y P Zhang;B Yuan;C Y Chung;M Zhu,X P Zhang.High porosity and large pore-size shape memory alloys fabricated by using pore-forming agent (NH4 HCO3) and capsule-free hot isostatic pressing[J].Journal of Materials Processing Technology,2006
[6] Li B.Y.;Rong L.J. .SYNTHESIS OF POROUS Ni-Ti SHAPE-MEMORY ALLOYS BY SELF-PROPAGATING HIGH-TEMPERATURE SYNTHESIS: REACTION MECHANISM AND ANISOTROPY IN PORE STRUCTURE[J].Acta materialia,2000(15):3895-3904.
[7] B. Yuan;C.Y. Chung;P. Huang .Superelastic properties of porous TiNi shape memory alloys prepared by hot isostatic pressing[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2006(0):657-660.
[8] S K Wu;H C Lin;T S Chou .A study of electrical resistivity,internal friction and shear modulus on an aged Ti49 Ni51 alloy[J].Acta Metallurgica,1990,38:95-102.
[9] B. YUAN;X.P. ZHANG;C.Y. CHUNG .A Comparative Study of the Porous TiNi Shape-Memory Alloys Fabricated by Three Different Processes[J].Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science,2006(3):755-761.
[10] I A Drozdov .Formation of intermetallics in a porous powder titanium-nickel diffusion couple[J].Powder Metallurgy and Metal ceramics,1995,34:282-287.
[11] C Y Chung;C L Chu;S D Wang .Synthesis of porous Ni-Ti shape memory alloys by self-propagating high-temperature synthesis:Reaction mechanism and anisotropy in pore structure[J].Materials Letters,2004,58:1683-1686.
[12] B Yuan;C Y Chung;X P Zhang;M Q Zeng,M Zhu .Control of porosity and superelasticity of porous NiTi shape memory alloys prepared by hot isostatic pressing[J].Smart Materials and Structures,2005,14:S201-S206.
[13] A. Biswas .Porous NiTi by thermal explosion mode of SHS: processing, mechanism and generation of single phase microstructure[J].Acta materialia,2005(5):1415-1425.
[14] Li BY.;Li YY.;Rong LJ. .Anisotropy of dimensional change and its corresponding improvement by addition of TiH2 during elemental powder sintering of porous NiTi alloy[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,1998(1/2):70-74.
[15] J Mentz;L Krone;M Bram;H P Buchkremer,D Stoever.New product route for porous NiTi shape memory alloys[A].UK EPMA,Shrewsbury,2005:135-140.
[16] S. M. Green;D. M. Grant;N. R. Kelly .Powder metallurgical processing of Ni-Ti shape memory alloy[J].Powder Metallurgy,1997(1):43-47.
[17] X P Zhang;Y P Zhang;C Y Chung .Recent advances and tends in research and development of porous nickel titanium shape memury alloys[J].Chinese Journal of Materials Research,2007,21
[18] M D McNeese;D C Lagoudas;T C Pollock .Processing of TiNi from elemental powders by hot isostatic pressing[J].Materials Science and Engineering,2000,A280:334-348.
[19] Jafar Khalil-Allafi;Antonin Dlouhy;Gunther Eggeler .Ni_4Ti_3-precipitation during aging of NiTi shape memory alloys and its influence on martensitic phase transformations[J].Acta materialia,2002(17):4255-4274.
[20] K.Otsuka;X.B.Ren .Recent developments in the research of shape memory alloys[J].Intermetallics,1999(5):511-528.
[21] B. Yuan;X.P. Zhang;C.Y. Chung;M. Zhu .The effect of porosity on phase transformation behavior of porous Ti-50.8 at.% Ni shape memory alloys prepared by capsule-free hot isostatic pressing[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2006(1/2):585-588.
[22] G. Fan;Y. Zhou;K. Otsuka .Effects of frequency, composition, hydrogen and twin boundary density on the Internal friction of Ti_(50)Ni_(50-x)Cu_x shape memory alloys[J].Acta materialia,2006(19):5221-5229.
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