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Large Coded Aperture Mask for Spaceflight Hard X-ray Images

机译:适用于航天硬X射线图像的大编码孔径光罩

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摘要

The 2.6 square meter coded aperture mask is a vital part of the Burst Alert Telescope on the Swift mission. A random, but known pattern of more than 50,000 lead tiles, each 5 mm square, was bonded to a large honeycomb panel which projects a shadow on the detector array during a gamma ray burst. A two-year development process was necessary to explore ideas, apply techniques, and finalize procedures to meet the strict requirements for the coded aperture mask. Challenges included finding a honeycomb substrate with minimal gamma ray attenuation, selecting an adhesive with adequate bond strength to hold the tiles in place but soft enough to allow the tiles to expand and contract without distorting the panel under large temperature gradients, and eliminating excess adhesive from all untiled areas. The largest challenge was to find an efficient way to bond the > 50,000 lead tiles to the panel with positional tolerances measured in microns. In order to generate the desired bondline, adhesive was applied and allowed to cure to each tile. The pre-cured tiles were located in a tool to maintain positional accuracy, wet adhesive was applied to the panel, and it was lowered to the tile surface with synchronized actuators. Using this procedure, the entire tile pattern was transferred to the large honeycomb panel in a single bond. The pressure for the bond was achieved by enclosing the entire system in a vacuum bag. Thermal vacuum and acoustic tests validated this approach. This paper discusses the methods, materials, and techniques used to fabricate this very large and unique coded aperture mask for the Swift mission.
机译:2.6平方米的编码孔径口罩是Swift任务中爆裂警报望远镜的重要组成部分。随机但已知的50,000个以上的铅块图案(每个5毫米见方)被粘合到一个大型蜂窝板上,该蜂窝板在伽马射线暴期间将阴影投射在检测器阵列上。需要两年的开发过程来探索想法,应用技术以及完成程序,以满足对编码孔径光罩的严格要求。面临的挑战包括寻找一种具有最小伽马射线衰减的蜂窝状基材,选择一种具有足够粘结强度的粘合剂以将瓷砖固定在适当位置,但又要足够柔软以使瓷砖能够在大温度梯度下膨胀和收缩而不会扭曲面板,以及消除多余的粘合剂。所有耕种的地区。最大的挑战是找到一种有效的方法,以微米为单位的位置公差将大于50,000个铅瓦粘合到面板上。为了产生所需的粘结层,施加粘合剂并使其固化至每个砖。将预固化的瓷砖放置在工具中以保持位置精度,将湿胶粘剂施加到面板上,并使用同步致动器将其降低到瓷砖表面。使用此程序,将整个瓷砖图案以单键形式转移到大型蜂窝板上。通过将整个系统封闭在真空袋中来达到粘合压力。热真空和声学测试验证了该方法。本文讨论了用于为Swift任务制造这种非常大且独特的编码孔径光罩的方法,材料和技术。

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