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Effect of Tensile Deformation on Residual Stress of GH4169 Alloy

机译:拉伸变形对GH4169合金残余应力的影响

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摘要

In order to reduce the residual stress of the GH4169 alloy, the effect and micro-mechanism of the tensile deformation were studied. The residual stress, dislocation density, and distribution of the GH4169 alloy were analyzed by X-ray residual stress tester, X-ray diffractometer (XRD), and electron backscatter diffraction (EBSD). The results show that: with the increase of tensile deformation, the residual stress relief first increases and then decreases. When the tensile deformation is 3%, the reduction rate of residual stress reaches the maximum, which is 90%. The mechanism of residual stress relief by the tensile treatment is that the dislocation group in the alloy is activated by tensile treatment, and the dislocation distribution in the alloy is more uniform by dislocation movement, multiplication, and annihilation so that the residual stress can be eliminated.
机译:为了降低GH4169合金的残余应力,研究了拉伸变形的效果和微机理。通过X射线残留应力测试仪,X射线衍射仪(XRD)和电子反向散射衍射(EBSD)分析GH4169合金的残余应力,位错密度和分布。结果表明:随着拉伸变形的增加,剩余应力释放首先增加,然后减少。当拉伸变形为3%时,残余应力的减少率达到最大值,即为90%。通过拉伸处理的残余应力消除机理是通过拉伸处理激活合金中的脱位基团,并且通过位错运动,倍增和湮灭,合金中的位错分布更均匀,使得可以消除残余应力。

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