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Evaluation of TiO_2-SiO_2 ultra-low-expansion glass fabricated by the soot method using the line-focus-beam ultrasonic materialcharacterization system

机译:线聚焦束超声材料表征系统评价烟the法制备的TiO_2-SiO_2超低膨胀玻璃

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In this paper, we tried to fabricate a TiO_2-doped SiO_2 (TiO_2-SiO_2) glass ingot by the soot method, and homogenized the glass ingot by the zone-melting method. Homogeneities of the specimens were evaluated by measuring leaky surface acoustic wave (LSAW) velocity using the line-focus-beam ultrasonic material characterization system at 225 MHz. Two-dimensional LSAW velocity distributions having an average velocity of 3304.08 m/s with a maximum velocity difference of 3.85 m/s were measured for a homogenized specimen. Striae were not observed for the specimen. The velocity difference corresponds to 17.0 ppb/K from the sensitivity of the LSAW velocity to the CTE {4.41 (ppb/K)/(m/s)}. However, the velocity distributions excluding the edge parts were within ±1.13 m/s, corresponding to the CTE specification of ±5 ppb/K required for EUVL-grade glass. We also discussed the relationship between LSAW velocities and fictive temperatures by heat-treating a part of the homogenized specimen.
机译:本文尝试通过烟灰法制备掺杂TiO_2的SiO_2(TiO_2-SiO_2)玻璃锭,并通过区域熔化法将其均匀化。通过使用线聚焦束超声材料表征系统在225 MHz下测量泄漏表面声波(LSAW)速度来评估样品的均质性。对于均质样品,测量了平均速度为3304.08 m / s,最大速度差为3.85 m / s的二维LSAW速度分布。标本中未观察到条纹。从LSAW速度到CTE的灵敏度{4.41(ppb / K)/(m / s)},速度差相当于17.0 ppb / K。但是,不包括边缘部分的速度分布在±1.13 m / s以内,对应于EUVL级玻璃所需的CTE规格为±5 ppb / K。我们还通过对一部分均质试样进行热处理,讨论了LSAW速度与虚拟温度之间的关系。

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