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An experiment for developing a micro-crack alert system for large thin mirror

机译:开发用于大型薄镜的微裂纹警报系统的实验

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We have a plan to install a micro-crack alert system for the primary mirror of Subaru Telescope based on the monitoring of the acoustic emission from any incident events. We report the results of our preliminary experiment for characterizing the acoustic properties of actual Subaru primary mirror. The attenuation of acoustic wave was confirmed to be small enough to allow detection of such events at any locations of the mirror. The position of incident events that might lead to the generation of possible micro-cracks can be identified within less than 3 cm accuracy by placing seven acoustic sensors along the circumference of the primary mirror.
机译:我们计划基于对来自任何事件的声发射的监视,为斯巴鲁望远镜的主镜安装微裂纹警报系统。我们报告了初步实验的结果,这些实验用于表征实际斯巴鲁主镜的声学特性。确认声波的衰减足够小,以允许在反射镜的任何位置检测到此类事件。通过沿主镜的圆周放置七个声传感器,可以在不到3 cm的精度内识别出可能导致可能产生微裂纹的入射事件的位置。

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