Design of Vacuum Compatible Automatic Targets Feeding System

M. Curuia, S. Soare, C. Jianu, M. Varlam
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Abstract

The present paper presents the design of a vacuum compatible automatic targets feeding system (VCATFS) that can be used to introduce targets inside the interaction chambers for accelerators, laser beams and others research plants. As a first application, the system is to be used within the Extreme Light Infrastructure - Nuclear Physics (ELI-NP) project, to load target frames in the interaction chamber without losing the vacuum. The target frames will be inserted and retracted into/from the interaction chamber individually with high accuracy of positioning. Up to three target frames can be used during one experiment. This number of targets is a consequence of several severe spatial constraints where the system will be installed, but for other situations it can be increased. Also, a new technique of moving the target frames is proposed, two horizontal translations in two parallel planes and two vertical translations also in two parallel planes. VCATFS is divided into two main sub-systems: mechanical (includes kinematics, high precision components and systems, vacuum chamber), and a dedicated command and control system (transducers - high accuracy absolute linear encoders, stepper motors and associated electric drives unit, interfaces and proprietary software). Additionally, a dedicated vacuum system was designed. This approach will further be developed as prototype level. This paper will focus on the design of mechanical sub-system, the remaining ones will be the subject of future documents that would be made publicly available in the future.
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真空兼容自动送料系统的设计
本文介绍了一种真空兼容自动靶标馈送系统(VCATFS)的设计,该系统可用于在加速器、激光束和其他研究装置的相互作用室内引入靶标。作为第一个应用,该系统将在极光基础设施-核物理(ELI-NP)项目中使用,在不失去真空的情况下加载相互作用室中的目标框架。目标框架将单独插入和从交互室中取出,定位精度高。在一次实验中最多可以使用三个目标帧。目标的数量是由于安装系统的几个严格的空间限制,但在其他情况下可以增加目标的数量。此外,还提出了一种新的目标帧移动技术,即在两个平行平面上进行两次水平平移和在两个平行平面上进行两次垂直平移。VCATFS分为两个主要子系统:机械(包括运动学,高精度组件和系统,真空室)和专用命令和控制系统(传感器-高精度绝对线性编码器,步进电机和相关的电力驱动单元,接口和专有软件)。此外,还设计了专用真空系统。这种方法将进一步发展为原型级。本文将重点介绍机械子系统的设计,其余部分将在未来公开的文件中进行。
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