Cook Robert F, Michaels Chris A
National Institute of Standards and Technology, Gaithersburg, MD 20899, USA.
J Res Natl Inst Stand Technol. 2017 Dec 13;122:1-26. doi: 10.6028/jres.122.043. eCollection 2017.
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 %.
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。