• Fluid enhances dislocation glide and climb, increases the rate of recovery of strained grains and accommodates the fracturing.

    流体相促进位错滑移攀移,并加速应变颗粒恢复作用,协调破裂过程

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  • The major deformation mechanisms were found to be dislocation glide, grain breaking, and geometric dynamic recrystallization (GDRX).

    合金变形机制主要位错滑移晶粒几何动态再结晶机制。

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  • The creep mechanisms are dislocation glide at lower testing temperatures in higher stress levels and dislocation climb at higher temperatures in lower stress levels.

    研究的实验条件范围内,合金的变变形机制低温应力下的位粘滞滑移控制高温应力的位错移控制;

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  • The results show that dislocation starts to glide in HAZ.

    结果表明影响区位开始滑移

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  • The results show that dislocation starts to glide in HAZ.

    结果表明影响区位开始滑移

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