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Co對Ti-Ni形狀記憶合金相變和形變特性的影響
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Effect of Co on Transition and Deformation Characteristics of Ti-Ni Shape Memory Alloy
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    摘要:

    用熱重分析儀、X射線衍射儀、示差掃描量熱儀及拉伸試驗研究了Co對Ti-49.8Ni(at%, 下同)形狀記憶合金相變和形變特性的影響。結果表明,中溫退火態(tài)Ti-49.8Ni合金冷卻/加熱時的相變類型為A→R→M/M→A(A—母相,R—R相,M—馬氏體相);隨退火溫度升高,該合金的馬氏體相變溫度升高, R相變溫度先升高后降低;該合金室溫相組成為馬氏體,具有形狀記憶效應(SME)。用1%Co置換等量Ti后所得Ti-49.8Ni-1Co合金冷卻/加熱時的相變類型為A→R→M/M→R→A,相變溫度低,室溫組成相為母相A,具有超彈性(SE)特性。退火溫度低于600 ℃時,Ti-Ni基合金的SME和SE特性良好,退火溫度超過600 ℃后,合金氧化加劇,SME和SE特性變差,塑性顯著提高

    Abstract:

    The effects of Co on the transition and the deformation characteristics of Ti-49.8Ni shape memory alloy were investigated by thermal gravity, X-ray diffraction, differential scanning calorimetry and tensile test. The results indicate that the phase transformation types of intermediate-temperature annealed Ti-49.8Ni alloy during cooling/heating cycle is A→R→M/M→A (A—parent phase, R—R phase, M—martensite phase). With the annealing temperature increasing, the M-phase transformation temperature of Ti-49.8Ni alloy increases, and the R-phase transition temperature increases first and then decreases. The phase of Ti-49.8Ni alloy at room temperature is martensite and shows shape memory effect (SME). After adding 1% Co, the transformation type of Ti-49.8Ni-1Co alloy is A→R→M/M→R→A upon cooling/heating, and the transition temperature of the alloy is low. The phase of Ti-49.8Ni-1Co alloy at room temperature is parent phase, and shows superelasticity (SE). The excellent SME and SE can be obtained in Ti-Ni base alloys when the annealing temperature is below 600 ℃. When the annealing temperature is over 600℃, the oxidation of Ti-Ni alloys speeds up, SME and SE become bad, but the plasticity of the alloy is improved significantly

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賀志榮,蔡繼峰,楊 軍,王 芳. Co對Ti-Ni形狀記憶合金相變和形變特性的影響[J].稀有金屬材料與工程,2010,39(4):633~637.[He Zhirong, Cai Jifeng, Yang Jun, Wang Fang. Effect of Co on Transition and Deformation Characteristics of Ti-Ni Shape Memory Alloy[J]. Rare Metal Materials and Engineering,2010,39(4):633~637.]
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  • 收稿日期:2009-04-28
  • 最后修改日期:2009-12-31
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