阿特拉斯衬垫式功率流通道的研制

M. Salazar, S. Feng, J. Griego, R. Randolph, R. Sebring, P. Reardon
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引用次数: 0

摘要

最初的Atlas上衬管卡式接头是基于Shiva Star设计的,是低温干涉型的。上关节完全依靠滑动面/衬管界面的干涉来实现导电性和结构完整性。通过将衬垫和衬垫电流连接电极制作成一块铝片,第二代卡壳设计用于适应内部功率流通道z轴几何形状的不可预测变化。在组装盒式盒时使衬垫的预成型部分变形,使衬垫和回电流导体之间形成电流接头。为了更好地理解材料是如何组合在一起的、接头的结构、与接头相关的拉伸力、接头真空完整性的可靠性以及由此产生的衬垫形状,我们对不同的可变形电流接头设计进行了实验。采用激光干涉仪测量和有限元分析对接头进行了分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of Atlas Liner Cassette Power Flow Channel
The original Atlas upper liner cassette joint was based on the Shiva Star design and were of the cryogenic interference type. The upper joint relied exclusively on the interference of the glide plane/liner interface for electrical conductivity and structural integrity. The second-generation cassette was designed to accommodate unpredictable changes in inner power flow channel z-axis geometry by fabricating the liner and liner current joint electrodes as a single piece of aluminum. Deforming a preformed section of the liner as the cassette is assembled makes a current joint between the liner and the return current conductor. Experiments have been conducted with variations of the deformable current joint designs to better understand how the materials fit together, joint configuration, tensile force associated with the joint and the reliability of vacuum integrity at the joint and the resulting shape of the liner. Laser interferometer measurements and finite element analysis are used to analyze the joint.
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