摘要:
|
镍钛形状记忆合金管材在生物医学领域得到了越来越广泛地应用。塑性成形工艺是制造镍钛形状记忆合金管材的重要手段,镍钛形状记忆合金管材的塑性成形工艺方法包括正挤压、反挤压、可变形芯模挤压、无芯模拉拔、固定芯头拉拔、浮动芯头拉拔、可变形芯模拉拔和不可变形芯模拉拔。拉拔工艺仍是目前生产生物医用级镍钛形状记忆合金管材的主要手段。
|
The nickel-titanium shape memory alloy tube is more and more widely used in biomedical domain. The plastic forming processes play a significant role in manufacturing nickel-titanium shape memory alloy tube. The plastic forming processes of nickel-titanium shape memory alloy tube involve direct extrusion, indirect extrusion, deformable mandrel extrusion, hollow sinking, fixed plug drawing, floating plug drawing, deformable mandrel drawing and non-deformable mandrel drawing. The tube drawing process is still the main approach to manufacture biomedical nickel-titanium shape memory alloy tube at present.
|
基金项目:
|
黑龙江省博士后基金资助(3236301154)
|
作者简介:
|
|
参考文献:
|
[1]Kazuhiro Otsuka,Ren Xiaobing.Recent development in the research of shape memory alloys[J].Intermetallics,1999,7(5):511-528.
[2]Mitsuo Niinomi.Recent research and development in titanium alloys for biomedical applications and healthcare goods[J].Science and Technology of Advanced Materials,2003,4(5):445-454.
[3]Scott W Robertson,Robert O Ritchie.In vitro fatigue-crack growth andfracture toughness behavior of thin-walled supere-lastic nitinol tube for endovascular stents:a basis for defining the effect of crack-like defects[J].Biamaterials,2007,28(4):700-709.
[4]Ng K L,Sun Q P.Stress-induced phase transformation and detwinningin Ni Ti polycrystalline shape memory alloy tubes[J].Mechanics of Materials,2006,38(1-2):41-56.
[5]Sun Qingping,Li Zhiqi.Phase transformation in superelastic Ni Ti polycrystalline micro-tubes under tension and torsion fromlocalization to homogeneous deformation[J].Interna-tional Journal of Solids and Structures,2002,39(13-14):3797-3809.
[6]Feng P,Sun Q P.Experi mental investigation of macroscopic domain formation and evolutionin polycrystalline Ni Ti micro-tubing under mechanical force[J].Journal of the Mechanical and Physics of Solids,2006,54(8):1568-1603.
[7]Li Z Q,Sun Q P.The initiation and growth of macroscopic martensite bandin nano-grained Ni Ti microtube under tension[J].International Journal of Plasticity,2002,18(11):1481-1498.
[8]Duerig T,Pelton A,Stockel D.An overviewof nitinol medi-cal applications[J].Materials Science and Science A,1999,273-275:149-160.
[9]Kaori Kuribayashi,Koichi Tsuchiya,Zhong You,et al.Self-deployable origami stent grafts as a biomedical application ofNi-rich Ti Ni shape memory alloy foil[J].Materials Science and Engineering A,2006,419(1-2):131-137.
[10]Philippe Theriault,Patrick Terriault,Vladi mir Brailovski,et al.Finite element modeling of a progressively expanding shape memory stent[J].Journal of Biomechanics,2006,39(15):2837-2844.
[11]McNaney J M,I mbeni V,Jung Y,et al.An experi mental study of the superelastic effect in a shape-memory nitinol alloy under biaxial loading[J].Mechanics of Materials,2003,35(10):969-986.
[12]Raghavendra R Adharapurapu,Fengchun Jiang,Kenneth S Vecchio,et al.Response of Ni Ti shape memory alloy at high strain rate:a systematic investigaiton of temperature effects on tension-compression asymmetry[J].Acta Materialia,2006,54(17):4609-4620.
[13]Belyaev S,Petrov A,Razov A,et al.Medical properties of titaniumnickelide at high strain rate loading[J].Materials Science and Engineering A,2004,378(1-2):122-124.
[14]Sia Nemat Nasser,Choi Jeom Yong,Wei Guo,et al.Very high strain-rate response of a Ni Ti shape-memory alloy[J].Mechanics of Materials,2005,37(2-3):287-298.
[15]Thamburaja P,Pan H,Chau F S.Martensitic reorientation and shape-memory effect in initially textured polycrystalline Ti-Ni sheet[J].Acta Materialia,2005,53(14):3821-3831.
[16]Thamburaja P.Constitutive equations for martensitic reorien-tation and detwinning in shape-memory alloys[J].Journal of the Mechanics and Physics of Solids,2005,53(4):825-856.
[17]Geraldine Tan,Yinong Liu,Petr Sittner,et al.Lders-like deformation associated with stress-induced martensitic trans-formationin Ni Ti[J].Scripta Materialia,2004,50(2):193-198.
[18]Muller K.Extrusion of nickel-titanium alloys nitinol to hol-lowshapes[J].Journal of Materials Processing Technology,2001,111(1-3):122-126.
[19]Kazunari Yoshida,Masaki Watanabe,Hiroshi Ishikawa.Drawing of Ni-Ti shape-memory-alloyfine tubes usedin medi-cal tests[J].Journal of Materials Processing Technology,2001,118(1-3):251-255.
[20]Kazunari Yoshida,Hiroaki Furuya.Mandral drawing and plug drawing of shape-memory-alloy fine tubes used in cathe-ters and stents[J].Journal of Materials Processing Technol-ogy,2004,153-154:145-150.
[21]John A Dicello,Bhupinder S Minhas,Jeffrey W Si mpson.Process for the manufacture of metal tubes[P].United States Patent:5709021,1998.
[22]胡捷,刘力.镍钛形状记忆合金毛细管加工工艺研究[J].新技术新工艺,2006,(6):51-52.
|
服务与反馈:
|
【文章下载】【加入收藏】
|
|
|