欢迎登录材料期刊网

材料期刊网

高级检索

对TiNi合金超弹性(SE)的特性、影响因素和工程应用的研究现状进行了综合评述.着重介绍了TiNi合金SE的特点及其工程意义,合金成分、热处理和加工工艺对SE的影响,以及超弹性TiNi合金在结构振动被动控制和耐磨损方面的应用,并就目前研究的不足以及该研究领域的发展方向提出了一些看法.

参考文献

[1] 赵连城;蔡伟;郑玉峰.合金的形状记忆效应与超弹性[M].北京:国防工业出版社,2002:5-66.
[2] 李启全,祁珊.NiTi形状记忆合金超弹性的研究进展[J].国外金属热处理,2003(04):5-9.
[3] Humbeeck J V.Non-medical Applications of Shape Memory Alloys[J].Materials Science and Engineering A,1999:273-275,134-148.
[4] T. Duerig;A. Pelton;D. Stockel .An overview of nitinol medical applications[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,1999(0):149-160.
[5] Otsuka K;Wayman C M.Shape Memory Materials[M].Cambridge:Cambridge University Press,1998:220-224.
[6] 贺志荣.影响Ti-Ni合金弹簧疲劳寿命的因素[J].金属热处理,2000(09):10-12.
[7] 贺志荣,周敬恩,宫崎修一.固溶时效态Ti-Ni合金相变行为与Ni含量的关系[J].金属学报,2003(06):617-622.
[8] 贺志荣;张永宏;解念锁 等.影响TiNi合金弹簧元件应变恢复率的因素[J].中国有色金属学报,1998,8(z1):218-222.
[9] Eckelmeyer K H .The Effect of Alloying on the Shape Memory Phenomenon in NiTi-nol[J].Scripta Metallurgica et Materialia,1976,10:667-672.
[10] Hwang C M;Meichle M;Salamon M B .Transformation Behaviors of a Ti50Ni47Fe3 Alloy Ⅱ. Subsequent Premartensitic Behavior and the Commensurate Phase[J].Philosophical Magazine A:Physics of Condensed Matter:Structure,Defects and Mechanical Properties,1983,47:31-36.
[11] 李志云,刘福顺,徐惠彬.Fe元素对TiNi形状记忆合金相变点和力学性能的影响[J].航空学报,2004(01):84-87.
[12] Nam T H;Saburi T;Shimizu K .Cu-content Dependence of Shape Memory Characteristics in Ti-Ni-Cu Alloys[J].Materials Transactions,1990,31:959-967.
[13] Nishida M;Wayman C M;Honma T .Precipitation Processes in Near-equiatomic TiNi Shape Memory Alloys[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,1986,17:1505-1515.
[14] 吴波,孙科学,李惠,唐卫胜.热处理对形状记忆合金超弹性滞回性能的影响[J].振动工程学报,2000(03):449-454.
[15] 贺志荣,张永宏,王永善,周敬恩.Ti49.4Ni50.6超弹性弹簧的相变和形变特性[J].金属学报,2004(01):46-50.
[16] Liu Y;Galvin S P .Criteria for Pseudoelasticity in Nearequiatomic NiTi Shape Memory Alloys[J].Acta Materialia,1997,45(11):4431-4439.
[17] Miyazaki S;Ohmi Y;Otsuka K .Characteristics of Deformation and Transformation Pseudoelasticity in Ti-Ni Alloys[J].Journal de Physique,1982,43:255-260.
[18] Filip P;Mazanec K .Influence of Cycling on the Reversible Martensitic Transformation and Shape Memory Phenomena in NiTi Alloys[J].Scripta Metallurgica et Materialia,1993,30:67-72.
[19] Lim T J;McDowell D L.Path Dependence of Shape Memory Alloys During Cyclic Loading[J].Journal of Intelligent Material Systems and Structures,1995(06):817-830.
[20] 黄兵民,王永前,程建霞,赵连城.近等原子比NiTi形状记忆合金的超弹性[J].中国有色金属学报,1996(04):136-139.
[21] 巩建鸣,户伏寿昭.承受各种循环加载的TiNi形状记忆合金的超弹性变形行为[J].功能材料,2002(04):391-393,397.
[22] 贺志荣.TiNi,RuTa和NiAlMn(Fe)形状记忆合金相变与形变行为研究[M].西安:西安交通大学,2004:72-83.
[23] Miyazaki S;Imai T;Igo Y .Effect of Cyclic Deformation on Pseudoelasticity Characteristics of Ti-Ni Alloys[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,1986,17:115-120.
[24] HARSHA PRAHLAD;INDERJIT CHOPRA .Development of a Strain-rate Dependent Model for Uniaxial Loading of SMA Wires[J].Journal of Intelligent Material Systems and Structures,2003(7):429-442.
[25] Kato H;Kokinane M;Miura S .Stress-strain Behavior and Shape Memory Effect in Power Metallurgy TiNi Alloy[J].Acta Metallurgica Et Materialia,1994,42:1351-1358.
[26] 李丙运,戎利建,李依依.多孔NiTi合金的微观结构及超弹性能[J].中国科学(E辑),1999(01):11.
[27] 钛镍形状记忆合金丝材的加工新工艺[J].钛工业进展,2003(02):8.
[28] 李惠萍.日本大力开发改良型镍钛系记忆合金[J].上海钢研,2003(02):53.
[29] Saadat S;Noori M;Davoodi H .Using TiNi SMA Tendons for Vibration Control of Coastal Structures[J].Smart Materials and Structures,2001,10:695-704.
[30] Saadat S;Salichs J;Noori M .An Overview of Vibration and Seismic Applications of NiTi Shape Memory Alloy[J].Smart Materials and Structures,2002,11:218-229.
[31] 倪立峰,韩玉林,李爱群,黄镇.基于形状记忆超弹性拉索耗能器的框架振动控制研究[J].工程抗震,2003(03):26-28,32.
[32] 韩玉林,李爱群,林萍华,王世栋,张志强,张晓格,黄镇.基于形状记忆合金耗能器的框架振动控制试验研究[J].东南大学学报(自然科学版),2000(04):16-20.
[33] Dolce M;Cardone D .Mechanical Behavior of Shape Memory Alloys for Seismic Applications-2,Austenite TiNi wires subjected to tension[J].International Journal of Mechanical Sciences,2001,43:2657-2677.
[34] 彭刚,姜袁.利用SMA开发耗能阻尼器的实验研究[J].工程力学,2004(02):183-187.
[35] 左晓宝,李爱群,倪立峰,陈庆福.形状记忆合金在结构振动控制中的研究与应用[J].噪声与振动控制,2004(02):10-13,9.
[36] Krzysztof Wilde;Paolo Gardoni;Yozo Fujino .Base isolation system with shape memory alloy device for elevated highway bridges[J].Engineering structures,2000(3MARCH):222-229.
[37] 李忠献,陈海泉,刘建涛.应用SMA复合橡胶支座的桥梁隔震[J].地震工程与工程振动,2002(02):143-148.
[38] 杨大智.智能材料与智能系统[M].天津:天津大学出版社,2000:133-135.
[39] Fukuda T;Takahata M;Kakeshita T .Two Way Shape Memory Properties of a Ti-51Ni Single Crystal Including Ti3Ni4 Precipitate of a Single Variant[J].Materials Transactions,2001,142:323-328.
[40] 柳伟,郑玉贵,饶光斌,姚治铭,柯伟.相变伪弹性对NiTi合金多相流损伤的影响[J].金属学报,2002(02):185-188.
[41] 徐久军;严立;朱新河 等.NiTi形状记忆合金沙蚀磨损的机敏行为[J].中国有色金属学报,2001(10):188-191.
[42] Paine J;Rogers C A .Review of Multi-functional SMA Hybrid Composite Materials and Their Applications[M].Adapt Structure and Materials Analysis and Application,1994,AD-45/MD-54:37-42.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%