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温度和孪晶界对GH3625合金力学性能和锯齿流变效应的影响
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兰州理工大学 省部共建有色金属先进加工与再利用国家重点实验室

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TG146.1

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2023年兰州理工大学红柳优秀青年人才支持计划;国家重点研发计划资助(2017YFA0700703);


Effects of temperature and twin boundaries on the mechanical properties and Protevin-Le chatelier(PLC) effect
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State Key Laboratory of Advanced and Recycling of Nonferrous Metals,Lanzhou University of Technology

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    摘要:

    本文采用EBSD、SEM、TEM和准静态单轴拉伸试验,研究了温度和孪晶界对GH3625合金力学性能和锯齿流变效应的影响。研究表明:随着退火温度(1000 ℃~1160 ℃)的升高,退火态试样的再结晶晶粒发生长大,导致部分退火孪晶界湮灭,从而使得合金的退火孪晶界含量和强度降低;并且发现退火温度越低时,合金出现锯齿流变的临界应变值越大。同时,退火态试样在25 ℃和290 ℃下拉伸变形时主要以位错滑移和变形孪生为主,而在565 ℃时主要以位错滑移为主,并有大量的层错形成;随着变形温度的升高,位错易于穿过晶界和退火孪晶界,导致锯齿流变产生,晶界强化效果减弱,导致合金强度下降。此外,退火温度为1000 ℃的试样在25 ℃~565 ℃温度范围内具有优异的强度和塑性组合,这主要归因于预先存在的细小晶粒和大量的退火孪晶界与位错的交互作用以及拉伸变形过程中形成的变形孪晶和层错的共同作用。除此之外,发现孪晶含量和变形温度对锯齿流变振幅影响显著。

    Abstract:

    In this paper, EBSD, SEM, TEM and quasi-static uniaxial tensile tests were used to study the effects of temperature and twin boundaries on the mechanical properties and Protevin-Le chatelier(PLC) effect of GH3625 alloy. The results show that with the increase of annealing temperature (1000 °C~1160 °C), the recrystallized grains of the annealed specimen grow, resulting in the annihilation of part of the annealed twin boundaries, which reduces the content and strength of the annealed twin boundaries of the alloy. And it is found that the lower the annealing temperature, the greater the critical strain value of the alloy with PLC. At the same time, the tensile deformation of the annealed specimen at 25 °C and 290 °C is mainly dominated by dislocation slip and deformation twin, while at 565 °C, the dislocation slip is mainly dominated by dislocation slip, and a large number of lamination faults are formed. With the increase of deformation temperature, dislocations tend to pass through grain boundaries and annealed twin boundaries, resulting in PLC, weakened grain boundary strengthening effect, and decreased alloy strength. In addition, the specimen with an annealing temperature of 1000 °C has an excellent combination of strength and plasticity in the temperature range of 25 °C~565 °C, which is mainly attributed to the interaction of pre-existing fine grains and a large number of annealed twin boundaries with dislocations, as well as the combined effect of deformed twins and lamination faults formed during tensile deformation. In addition, it is found that the twin content and deformation temperature have a significant effect on the rheological amplitude of the PLC.

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高钰璧,王文娟,杨慧,王兴茂,许佳玉,甄炳,丁雨田.温度和孪晶界对GH3625合金力学性能和锯齿流变效应的影响[J].稀有金属材料与工程,,().[Gao Yubi, Wang Wenjuan, Yang Hui, Wang Xingmao, Xu Jiayu, Zhen Bing, Ding Yutian. Effects of temperature and twin boundaries on the mechanical properties and Protevin-Le chatelier(PLC) effect[J]. Rare Metal Materials and Engineering,,().]
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  • 收稿日期:2024-07-21
  • 最后修改日期:2024-10-10
  • 录用日期:2024-10-15
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