首页> 外文期刊>Technical physics letters: Letters to the Russian journal of applied physics >Mechanoluminescence of a Thin Composite Layer Obtained by Incorporation of SrAl2O4:(Eu2+, Dy3+) Phosphor Microparticles into a Poly(methyl methacrylate) Surface
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Mechanoluminescence of a Thin Composite Layer Obtained by Incorporation of SrAl2O4:(Eu2+, Dy3+) Phosphor Microparticles into a Poly(methyl methacrylate) Surface

机译:通过将SRAL2O4:(EU2 +,DY3 +)磷光体微粒掺入聚(EU2 +,DY3 +)表面中获得的薄复合层的施力致发光

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摘要

A mechanoluminescent composite layer at the surface of poly(methyl methacrylate) (PMMA) was obtained by liquid-phase incorporation of SrAl2O4:(Eu2+, Dy3+) phosphor microparticles into the polymer. The photoluminescence spectrum and kinetics of emission from the composite layer have been studied as dependent on the power density of exciting laser radiation pulses. The mechanoluminescence of the composite layer has been studied under the effect of short acoustic pulses and dynamic pressure of a solid stylus sliding over the composite layer surface. A possible mechanism of mechanoluminescence excitation is discussed. It is established that the obtained composite layer is characterized by high efficiency of the mechano-optical conversion and can be used for the detection and visualization of mechanical stresses.
机译:通过液相掺入SRAL2O4:(EU2 +,DY3 +)磷光体微粒的液相掺入,得到了聚(甲基丙烯酸甲酯)(PMMA)表面的施施电解层。 已经研究了从复合层的发射发射的光致发光光谱和动力学,如令人兴奋的激光辐射脉冲的功率密度。 已经在短声脉冲和在复合层表面滑动的固体触控器的动态压力的影响下研究了复合层的机械发光。 讨论了机械发光激发的可能机制。 建立所获得的复合层的特征在于,通过机械光学转换的高效率,可用于检测和可视化机械应力。

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