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Ti-Nb-Zr合金中非线性应力-应变关系的研究

Research on Strain-stress Nonlinear Relationship of Ti-Nb-Zr Alloy
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摘要 研究了Ti-Nb-Zr系(Ti-8Nb-13Zr、Ti-13Nb-13Zr、Ti-18Nb-13Zr和Ti-41.1Nb-7.1Zr)合金弹性行为。这些合金首先在氩气氛围内使用电弧熔炼制造出来,然后在MST型的伺服液压机上进行了单轴抗拉测试。在弹性阶段,得出了非线性的应力-应变关系,为分析得到弹性阶段对应的曲线部分,还使用修正Ramberg-Osgood方程来进行讨论。讨论了合金的如下参数:初始弹性模量、切线模量、割线模量、弹性极限应力以及Ramberg-Osgood参数n。结果表明,这些合金具有各不相同的力学特性。此外,文中还用参数n的量化来表示应力-应变关系的非线性程度。 The elastic behavior of Ti-Nb-Zr alloy for biomedical suppliment was investigated. The alloys were melted under argon atmosphere. Single axis tensile test was conducted in MST serve-hydraulic machine. In custom elastic area, the appearance of non-linear stress-strain relationship can lead to the use of Ramberg-Osgood model, which was used in curve analysis. The present research concerns the following character: initial elastic modulus, secant modulus, proof stress and Ramberg-Osgood parameters. The results reveal that these alloys are not the same with mechanical properties. In addition,by verifying parameters (n), the non-linear level of stress-strain relationship was studied.
出处 《热加工工艺》 CSCD 北大核心 2014年第2期70-73,共4页 Hot Working Technology
关键词 力学性能 应力-应变关系 模量 mechanical properties stress:sWain relationship modulus
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  • 1魏衍广,陶海明,陈海珊.固溶温度对TB10钛合金力学性能的影响[J].稀有金属,2010,34(1):6-10. 被引量:19
  • 2吴建军,陈卫彬,李顺平.材料模型对成形过程一步法模拟结果的影响[J].锻压技术,2004,29(3):27-30. 被引量:4
  • 3曲恒磊,周廉,周义刚,赵永庆,曾卫东,冯亮,李辉,陈军,张颖楠,郭红超.高强韧钛合金评述[J].稀有金属快报,2004,23(10):5-9. 被引量:26
  • 4付艳艳,宋月清,惠松骁,米绪军.航空用钛合金的研究与应用进展[J].稀有金属,2006,30(6):850-856. 被引量:181
  • 5Kumar K S, Swygenhoven H Van, Suresh S. Mechanical behavior of nanocrystalline metals and alloys [J]. Acta. Mater, 2003,51 : 5743-5774.
  • 6He G, Eckert J, Loser W, et al. Novel Ti-base nanostructure-dendrite composite with enhancedplasticity [J]. Nature Mater, 2003, (2): 33-37.
  • 7Kim K B, Das, J, Baier F, et al. Microstructural investigation of a deformed Ti66.1Cu8Ni4.8Sn732Nb139 nano-structure dendrite composite [J]. J. Alloy Compd,2007,434:106-9.
  • 8Louzguine D V, Louzguina L V, Kato H, et al. High-strength hypereutectic Ti-Fe-Co bulk alloy with good ductility [J]. Phil Mag Lett,2004,84: 359-364.
  • 9Song G A, Hart J H, Kim T E, et al. Heterogeneous eutectic structure Ti-Fe-Sn alloys [J]. Intermetallics,2011,19: 36-40.
  • 10Kim K B, Song K A, Zhang X F, et al. Understanding of martensitic (TiCu)-based bulk metallic glasses through deformation behavior of a binary Ti50Cu50 martenstic alloy [J]. Appl Phys Lett, 2008,92:241915.

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