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Development of a direct fabrication technique for full-shell x-ray optics

机译:开发全壳X射线光学直接制造技术

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Future astrophysical missions will require fabrication technology capable of producing high angular resolution x-ray optics. A full-shell direct fabrication approach using modern robotic polishing machines has the potential for producing high resolution, light-weight and affordable x-ray mirrors that can be nested to produce large collecting area. This approach to mirror fabrication, based on the use of the metal substrates coated with nickel phosphorous alloy, is being pursued at MSFC. A model of the wear pattern as a function of numerous physical parameters is developed and verified using a mandrel sample. The results of the polishing experiments are presented.
机译:未来的天体物理任务将需要能够产生高角度分辨率X射线光学系统的制造技术。使用现代机器人抛光机的全壳直接制造方法具有生产高分辨率,轻质和实惠的X射线镜,可嵌套以产生大收集区域。在MSFC下正在追踪这种基于涂覆有磷合金的金属基材的金属基材的镜像制造方法。使用心轴样品开发和验证作为许多物理参数的函数的磨损图案模型。提出了抛光实验的结果。

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