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TiAl合金高溫流變行為及流動應力模型
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Hot Deformation Behavior and Flow Stress Model of TiAl Alloy
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    摘要:

    為了研究TiAl合金的熱變形行為,掌握其熱加工特性,采用Gleeble-1500試驗機對TiAl合金在溫度為1 050~1 200℃、應變速率為0. 001~1 s-1條件下的高溫變形行為進行了研究,獲得了上述變形條件范圍內(nèi)的流變行為數(shù)據(jù),建立了適于TiAl合金的本構(gòu)方程。結(jié)果表明:TiAl合金的流變行為對變形速率和溫度敏感,在熱壓縮過程中TiAl合金的流動應力呈現(xiàn)出加工硬化和流變軟化的特征。通過電子背散射衍射(EBSD)觀測發(fā)現(xiàn),軟化機制主要是先在晶界位置發(fā)生動態(tài)再結(jié)晶,然后再結(jié)晶向晶內(nèi)擴展。通過計算,TiAl合金的變形激活能為360 k J/mol。采用最小二乘法得出了TiAl合金的流動應力模型,基于此模型繪制的流變曲線與實驗值吻合較好,誤差小于±5%,能夠?qū)iAl合金高溫流變行為進行較為準確的預測。

    Abstract:

    In order to study the hot deformation behavior and characteristics of TiAl alloy,the hot compressive experiments were conducted in the temperature range from 1 050 ℃ to 1 200 ℃ and at strain rate range from 0. 001 s-1 to 1 s-1 on Gleeble-1500 hot simulator. The flow stress data was acquired by experiments,and the constitutive relationship was established for TiAl alloy. The results show that the flow behavior of TiAl alloy is sensitive to deformation temperature and strain rate. TiAl alloy flow stress demonstrates significant work hardening and softening characteristics in hot compression. The main mechanism of softening occured dynamic recrystallization on the grain boundary first and then extended into the grain by the EBSD observation. Deformation activation energy is 360 kJ/mol by calculation. The flow stress model is obtained by least square method. The flow stress curve based on this model agrees well with the experimental data,the deviation between them is less than ± 5%,and can predict the flow stress precisely.

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. TiAl合金高溫流變行為及流動應力模型[J].鈦工業(yè)進展,2019,36(1):35-39.

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  • 在線發(fā)布日期: 2019-06-03
  • 出版日期: 2019-02-25