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A novel method of evaluating surface properties of tempered glasses by the ultrasonic microspectroscopy technology

机译:超声显微技术评估钢化玻璃表面性能的新方法

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We discussed a method of evaluating surface compressive layer of tempered glasses by the ultrasonic microspectroscopy (UMS) technology. Chemically tempered glass specimens and the non-tempered specimen were prepared. Velocities of leaky surface acoustic wave (LSAW) and leaky surface skimming compressional wave (LSSCW) were measured by the line-focus-beam ultrasonic material characterization system. LSAW and LSSCW Velocities increased drastically caused by the surface compressive stress. Velocity differences caused by the difference of chemical strengthening process conditions were successfully detected. Resolution to depth of compressive stress layer by the LSAW velocity measurement was ±0.11 µm. Frequency characteristics of LSAW velocity have possibility of evaluating elastic properties distributions in the depth direction of tempered layer. Velocities changes were mainly caused by elastic constants changes by the bulk acoustic properties measurements.
机译:我们讨论了一种通过超声显微光谱(UMS)技术评估钢化玻璃表面压缩层的方法。制备化学钢化玻璃样品和非钢化样品。通过线聚焦束超声材料表征系统测量泄漏表面声波(LSAW)和泄漏表面掠读压缩波(LSSCW)的速度。由于表面压缩应力,LSAW和LSSCW速度急剧增加。成功地检测到由化学强化工艺条件的差异引起的速度差异。通过LSAW速度测量,压应力层深度的分辨率为±0.11 µm。 LSAW速度的频率特性具有评估回火层深度方向上弹性特性分布的可能性。速度变化主要是由体声特性测量的弹性常数变化引起的。

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