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New and improved technology for manufacture of GMT primary mirror segments

机译:用于制造GMT主镜段的新技术和改进的技术

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摘要

The Giant Magellan Telescope (GMT) primary mirror consists of seven 8.4 m light-weight honeycomb mirrors that are being manufactured at the Richard F. Caris Mirror Lab (RFCML), University of Arizona. In order to manufacture the largest and most aspheric astronomical mirrors various high precision fabrication technologies have been developed, researched and implemented at the RFCML. The unique 8.4 m (in mirror diameter) capacity fabrication facilities are fully equipped with large optical generator (LOG), large polishing machine (LPM), stressed lap, rigid conformal lap (RC lap) and their process simulation/optimization intelligence called MATRIX. While the core capability and key manufacturing technologies have been well demonstrated by completing the first GMT off-axis segment, there have been significant hardware and software level improvements in order to improve and enhance the GMT primary mirror manufacturing efficiency. The new and improved manufacturing technology plays a key role to realize GMT, the next generation extremely large telescope enabling new science and discoveries, with high fabrication efficiency and confidence.
机译:巨型麦哲伦望远镜(GMT)主镜由七个8.4 m轻质蜂窝镜组成,这些镜由亚利桑那大学的理查德·卡里斯镜实验室(RFCML)制造。为了制造最大和最非球面的天文镜,RFCML已开发,研究和实施了各种高精度制造技术。独特的8.4 m(镜面直径)制造能力完全配备了大型光发生器(LOG),大型抛光机(LPM),应力研磨,刚性保形研磨(RC研磨)以及称为MATRIX的过程仿真/优化智能。虽然通过完成第一个GMT离轴部分已经很好地展示了核心能力和关键制造技术,但为了提高和提高GMT主镜的制造效率,还进行了显着的硬件和软件级别改进。新的和改进的制造技术对于实现GMT是至关重要的角色,GMT是下一代超大型望远镜,具有很高的制造效率和信心,可以实现新的科学和发现。

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