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M50NiL鋼磨削表面完整性特征及變質層厚度表征方法

Grinding surface integrity character and modificative layer depth test of M50NiL steel

  • 摘要: 通過透射電子顯微鏡確定了M50NiL鋼滲碳后磨削表面變質層厚度,同時利用掃描電子顯微鏡、原子力顯微鏡、顯微維氏硬度計、X射線殘余應力測定儀等設備表征了M50NiL鋼磨削表面完整性特征.結果表明:磨削在滲碳硬化層表面構建了一個表面變質層,該變質層組織的基本特征是晶粒細化和變形,在選區電子衍射圖上顯示為拉長模糊的多晶環;變質層厚度約0.5μm,殘余壓應力和硬度略有升高,表面應力集中系數較低.

     

    Abstract: Transmission electron microscopy (TEM) was used to detect the grinding surface modificative layer thickness of M50NiL carburized steel, and the surface integrity indicators of M50NiL were characterized by scanning electron microscopy (SEM), atomic force microscopy (AFM), micro-Vickers hardness tester, and X-ray residual stress analyzer. It is found that a surface modificative layer is built on the surface carburized hardened layer after grinding and its basic microstructure characteristics are grain refinement and deformation. The selected area electron diffraction pattern (SAED) shows an elongated blur polycrystalline spot ring. It can be concluded that the modificative layer is about 0.5 μm in thickness, has higher compression stress and hardness, but lower surface stress concentration factor.

     

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