Experimental study on magnet support plinths of advanced light source

Q4 Engineering 强激光与粒子束 Pub Date : 2021-03-05 DOI:10.11884/HPLPB202133.200201
Liang Chunhua, W. Zihao, Zhou Ningchuang, Dong Lan, W. Xiaolong, Qu Huamin
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引用次数: 1

Abstract

As the installation foundation of magnet support, the plinth is critical for the stability of the whole support unit. Different fabrication and installation processes of plinths make significant differences in performance of the support unit. Based on the stringent requirements of advanced synchrotron light source for the mechanical stability of magnets, the plinth installation pouring experiment was carried out. Several concrete construction techniques commonly applied in practice were tested with the plinths of uniform shape and size. The natural frequency of each plinth was measured by hammering method and its stability was evaluated. It is concluded from the test result that secondary grouting can effectively improve the stability of the plinth and the plinth of epoxy-based grouting shows better performance in stability than that of cement-based grouting. Based on the natural frequency test result, the influence of the plinth installation on the system mode is analyzed with the support system of High Energy Photon Source as an example. The experimental results have certain reference value for the plinth design of similar machines.
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先进光源磁体支撑底座的实验研究
底座作为磁铁支架的安装基础,对整个支架单元的稳定性至关重要。底座的不同制造和安装工艺使支撑单元的性能存在显著差异。根据先进同步加速器光源对磁体力学稳定性的严格要求,进行了底座安装浇注实验。对几种常用的混凝土施工技术进行了试验,采用了形状和尺寸均匀的底座。采用锤击法测定了每个底座的固有频率,并对其稳定性进行了评价。试验结果表明,二次灌浆能有效提高底座的稳定性,环氧基灌浆的底座稳定性优于水泥基灌浆。基于固有频率测试结果,以高能光子源支撑系统为例,分析了底座安装对系统模式的影响。实验结果对同类机器的底座设计具有一定的参考价值。
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强激光与粒子束
强激光与粒子束 Engineering-Electrical and Electronic Engineering
CiteScore
0.90
自引率
0.00%
发文量
11289
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