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Residual stress distributions around indentations and scratches in polycrystalline Al2O3 and Al2O3/SiC nanocomposites measured using fluorescence probes

机译:使用荧光探针测量多晶Al2O3和Al2O3 / SiC纳米复合材料中压痕和划痕周围的残余应力分布

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摘要

We report a study of the residual stress state around indentations and single-point scratches in polycrystalline alumina and alumina/SiC nanocomposites using Cr3+ fluorescence piezospectroscopy. The alumina specimens displayed residual stress levels up to 550 MPa, whereas the nanocomposite specimens had maximum stress levels close to 2 GPa. These stress levels are consistent with those obtained using other experimental techniques. The spatial variation of this stress is shown to be consistent with simple elastic/plastic models of indentation. The broadening of the peaks in the fluorescence spectra is used to estimate the density of dislocations in the plastically deformed region below indentations and scratches. Our results indicate a greater depth of deformation around indents and scratches in the nanocomposites when compared with the alumina surfaces. The inferred dislocation densities and the depth of the deformed region beneath the alumina and nanocomposite surfaces are shown to be consistent with those of ground surfaces reported in earlier studies.
机译:我们报告了使用Cr3 +荧光压电光谱法研究多晶氧化铝和氧化铝/ SiC纳米复合材料中压痕和单点划痕周围的残余应力状态。氧化铝样品的残余应力水平高达550 MPa,而纳米复合材料样品的最大应力水平接近2 GPa。这些应力水平与使用其他实验技术获得的应力水平一致。该应力的空间变化显示与压痕的简单弹性/塑性模型一致。荧光光谱中峰的加宽用于估计凹痕和划痕下方塑性变形区域中的位错密度。我们的结果表明,与氧化铝表面相比,纳米复合材料的凹痕和划痕周围的变形深度更大。推断的位错密度和氧化铝及纳米复合材料表面下方变形区域的深度与早期研究中报道的地面一致。

著录项

  • 作者

    Wu, HZ; Roberts, SG; Derby, B;

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  • 年度 2008
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  • 原文格式 PDF
  • 正文语种 eng
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