Accelerator Vacuum Windows: A Review of Past Research and a Strategy for the Development of a New Design for Improved Safety and Longevity for Particle Accelerators

C. Ader, Mar Alvarez, J. Batko, R. Campos, M. McGee, A. Watts
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Abstract

Vacuum window research continues at Fermilab and this paper will examine cost effective, consistent designs which can have a huge impact on accelerator laboratories in terms of safety and cost. Issues such as the design, materials, analysis, testing and fabrication are addressed, including beam scattering plots and materials cost-benefit analysis and examining different materials which can potentially be substitutes for beryllium. A previous research paper has examined current fabrication and design techniques and also failure modes at Fermi, and this paper examines previous research in addition to emerging technologies. Many different paths have been taken by HEP Laboratories throughout the world with varying success. The history of vacuum window development is extensive and not well defined, and a matrix of what research has already been done on materials and joint design for vacuum windows will be shown. This report finally includes a treatise for vacuum window technology and a view towards emerging designs and materials and discusses future advances of research such as fabrication techniques including additive manufacturing and ultrasonic welding. Further exploration into these would prove beneficial to developing vacuum windows that are safer and stronger while being more transparent to the beam.
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加速器真空窗:过往研究回顾及改进粒子加速器安全性和寿命的新设计策略
费米实验室的真空窗研究仍在继续,本文将研究成本效益,一致的设计,这将对加速器实验室的安全性和成本产生巨大影响。解决了设计、材料、分析、测试和制造等问题,包括光束散射图和材料成本效益分析,并检查了可能成为铍替代品的不同材料。之前的一篇研究论文研究了费米目前的制造和设计技术以及失效模式,除了新兴技术之外,这篇论文还研究了以前的研究。世界各地的HEP实验室采取了许多不同的途径,取得了不同程度的成功。真空窗的发展历史是广泛的,并没有很好地定义,和已经做了研究的矩阵真空窗的材料和接头设计将显示。本报告最后包括一篇关于真空窗技术的论文,以及对新兴设计和材料的看法,并讨论了未来的研究进展,如增材制造和超声波焊接等制造技术。对这些方面的进一步探索将有助于开发更安全、更坚固、同时对光束更透明的真空窗。
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