Photo- and mechanoluminescent properties of the SrAl2O4 : (Eu2+, Dy3+) phosphor and its use to visualize the dynamics of material deformations

A. F. Banishev
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Abstract

The work investigated the deformations of materials arising from the action of high-power laser pulses. Composite mechanoluminescent materials based on a polymer and a phosphor powder were used to visualize and record the dynamics of the development of deformations. Mechanoluminescent materials were applied to the surface of the materials under study. It is shown that the spatial distribution of the glow intensity of the mechanoluminescent layer and the rate of its change make it possible to judge the magnitude and rate of deformation of materials when they are exposed to laser pulses. The kinetics and photoluminescence spectrum of composite materials were studied under the combined action of short-wave and long-wave laser radiation. It is shown that the photoluminescence excited by a long-wavelength laser is associated with the activation of the populated levels of the traps.
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SrAl2O4: (Eu2+, Dy3+)荧光粉的光致发光和机械致发光性质及其在可视化材料变形动力学中的应用
研究了高功率激光脉冲作用下材料的变形。基于聚合物和荧光粉的复合机械发光材料被用于可视化和记录变形发展的动态。将机械发光材料应用于所研究材料的表面。结果表明,机械致发光层发光强度的空间分布及其变化率可以判断材料在激光脉冲作用下的变形幅度和变形速率。研究了复合材料在短波和长波激光联合作用下的动力学和光致发光光谱。结果表明,长波长激光激发的光致发光与阱填充能级的激活有关。
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