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首页> 外文期刊>Japanese Journal of Applied Physics. Part 1, Regular Papers, Brief Communications & Review Papers >Experimental Study for Evaluating Striae Structure of TiO_2-SiO_2 Glasses Using the Line-Focus-Beam Ultrasonic Material Characterization System
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Experimental Study for Evaluating Striae Structure of TiO_2-SiO_2 Glasses Using the Line-Focus-Beam Ultrasonic Material Characterization System

机译:线束超声材料表征系统评价TiO_2-SiO_2玻璃条纹结构的实验研究

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Striae configurations in TiO_2-SiO_2 ultra-low-expansion glasses caused by variations in TiO_2 concentration were investigated through measurement of leaky surface acoustic wave (LSAW) velocities by the line-focus-beam (LFB) ultrasonic material characterization system. LSAW velocity distributions were measured on the surface of a specimen substrate prepared from a large circular plate glass ingot produced by the direct method using a flame hydrolysis process. A subsequent procedure that included polishing the surface of the specimen to reduce the specimen thickness by 40 μm and measuring the LSAW velocity distributions on the surface was repeated five times in order to examine at least one period of the striae. TiO_2 concentration variations were clearly observed in the deposit direction of the glass ingot and in its radial direction. The maximum LSAW velocity difference over the whole examined region was 11.7 m/s, corresponding to 0.70 wt % TiO_2 concentration. The three-dimensional striae structure revealed that the striae plane in the examined region was almost parallel to the substrate surface but gently curved down in the radial direction. The plane had a slightly convex-shaped cross section layered with a striae periodicity of about 0.16 mm and a curvature radius of about 440 mm, and also existed in a circular form with a curvature radius of about 450 mm. The ultrasonic method will contribute to improvement of characteristics and homogeneity of glass associated with production-process conditions.
机译:通过线聚焦电子束(LFB)超声材料表征系统测量泄漏声表面波(LSAW)速度,研究了由TiO_2浓度变化引起的TiO_2-SiO_2超低膨胀玻璃的条纹结构。在由大型圆形平板玻璃锭通过火焰水解法通过直接方法生产的样品基板的表面上测量LSAW速度分布。为了检查至少一个周期的条纹,将包括抛光样品表面以将样品厚度减小40μm并测量表面上LSAW速度分布的后续程序重复五次。在玻璃锭的沉积方向和径向上可以清楚地观察到TiO_2的浓度变化。在整个检查区域内的最大LSAW速度差为11.7 m / s,对应于0.70 wt%的TiO_2浓度。三维条纹结构表明,检查区域的条纹平面几乎与基板表面平行,但在径向上逐渐向下弯曲。该平面具有略微凸形的横截面,其具有约0.16mm的条纹周期性和约440mm的曲率半径,并且还以具有约450mm的曲率半径的圆形形式存在。超声方法将有助于改善与生产工艺条件相关的玻璃的特性和均匀性。

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