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本文引用的文献

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Quantitative Mapping of Stress Heterogeneity in Polycrystalline Alumina using Hyperspectral Fluorescence Microscopy.使用高光谱荧光显微镜对多晶氧化铝中的应力非均匀性进行定量映射。
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2
Determination of Residual Stress Distributions in Polycrystalline Alumina using Fluorescence Microscopy.利用荧光显微镜测定多晶氧化铝中的残余应力分布
Mater Des. 2016 Oct 5;107:478-490. doi: 10.1016/j.matdes.2016.06.063. Epub 2016 Jun 16.
3
Assessing strain mapping by electron backscatter diffraction and confocal Raman microscopy using wedge-indented Si.使用楔形压痕硅通过电子背散射衍射和共聚焦拉曼显微镜评估应变映射。
Ultramicroscopy. 2016 Apr;163:75-86. doi: 10.1016/j.ultramic.2016.02.001. Epub 2016 Feb 17.
4
Note: epitaxial ruby thin film based photonic sensor for temperature measurement.注意:基于外延红宝石薄膜的用于温度测量的光子传感器。
Rev Sci Instrum. 2011 Jun;82(6):066106. doi: 10.1063/1.3606443.
5
Effects of tensile stress on the R lines of Cr(3+) in a sapphire fiber.拉伸应力对蓝宝石纤维中Cr(3+)的R线的影响。
Opt Lett. 1988 Oct 1;13(10):931-3. doi: 10.1364/ol.13.000931.
6
Ruby films as surface temperature and pressure sensors.红宝石薄膜用作表面温度和压力传感器。
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7
High-pressure ruby and diamond fluorescence: observations at 0.21 to 0.55 terapascal.高压红宝石和钻石荧光:在 0.21 到 0.55 太帕斯卡的观测。
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8
Pressure measurement made by the utilization of ruby sharp-line luminescence.利用红宝石锐线荧光进行压力测量。
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9
Ruby at high pressure. II. Fluorescence lifetime of the R line to 130 GPa.高压下的红宝石。II. R线在130吉帕斯卡压力下的荧光寿命。
Phys Rev B Condens Matter. 1989 Sep 15;40(8):5733-5738. doi: 10.1103/physrevb.40.5733.
10
Ruby at high pressure. I. Optical line shifts to 156 GPa.高压下的红宝石。I. 至156吉帕斯卡时的光谱线位移
Phys Rev B Condens Matter. 1989 Sep 15;40(8):5724-5732. doi: 10.1103/physrevb.40.5724.

综述:氧化铝荧光测量中应力、温度和成分效应的系数

Review: Coefficients for Stress, Temperature, and Composition Effects in Fluorescence Measurements of Alumina.

作者信息

Cook Robert F, Michaels Chris A

机构信息

National Institute of Standards and Technology, Gaithersburg, MD 20899, USA.

出版信息

J Res Natl Inst Stand Technol. 2017 Dec 13;122:1-26. doi: 10.6028/jres.122.043. eCollection 2017.

DOI:10.6028/jres.122.043
PMID:34877102
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7339716/
Abstract

The numerical coefficients linearly relating the effects of stress (including pressure), temperature, and composition to shifts in the energies of the Cr-related fluorescence in alumina (AlO) are reviewed. The primary focus is the shift of the R and R "ruby" fluorescence lines under conditions typical for stress determination in polycrystalline AlO. No significant experimental difference in the R and R responses is observed for hydrostatic stress (or pressure) conditions (average shift coefficient of about 7.6 cm/GPa), changes in temperature (about 0.140 cm/K), or variations in composition (about 120 cm/mass fraction of Cr). There are significant differences in the R and R responses for nonhydrostatic stress conditions. In particular, for uniaxial stress along the and directions in the AlO crystal, the R piezospectroscopic tensor coefficients (about 3.0 cm/GPa and 1.6 GPa cm/GPa, respectively) differ considerably, whereas the R coefficients (about 2.6 cm/GPa and 2.3 GPa cm/GPa, respectively) do not. Measurements of the piezospectroscopic tensor coefficients are shown to have interlaboratory relative consistency of about 4 % extending over 30 years, and are consistent with the scalar high-pressure measurements. Measurements of the temperature coefficients are shown to have interlaboratory relative consistency less than 1 % extending over 60 years. Fluorescence-based measurements of stress in polycrystalline AlO, although requiring temperature adjustment, are shown to have a relative uncertainty of about 2.5 %.

摘要

综述了将应力(包括压力)、温度和成分的影响与氧化铝(AlO)中Cr相关荧光能量位移线性相关的数值系数。主要关注的是多晶AlO中应力测定典型条件下R和R“红宝石”荧光线的位移。对于静水应力(或压力)条件(平均位移系数约为7.6 cm/GPa)、温度变化(约0.140 cm/K)或成分变化(约120 cm/ Cr质量分数),未观察到R和R响应有显著的实验差异。对于非静水应力条件,R和R响应存在显著差异。特别是,对于AlO晶体中沿和方向的单轴应力,R压电光谱张量系数(分别约为3.0 cm/GPa和1.6 GPa cm/GPa)差异很大,而R系数(分别约为2.6 cm/GPa和2.3 GPa cm/GPa)则没有。压电光谱张量系数的测量显示,在30年的时间里,实验室间的相对一致性约为4%,并且与标量高压测量结果一致。温度系数的测量显示,在60年的时间里,实验室间的相对一致性小于1%。多晶AlO中基于荧光的应力测量虽然需要温度调节,但显示出约2.5%的相对不确定度。