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Crane system with remote actuation mechanism for use in argon compartment in ACPF hot cell

机译:带遥控执行机构的起重机系统,用于ACPF热室的氩气室

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摘要

The Advanced spent fuel Conditioning Process. Facility (ACPF) at the Korea Atomic Energy Research Institute (KAERI) has recently been successfully renovated. One of the highlights of this renovation project was the installation of a small argon compartment within the atmospheric hot cell of the facility. Even though a crane system was considered necessary for the remote handling of the processing equipment inside the argon compartment, no suitable commercial cranes were available. This was because a limited amount of space had been reserved for the installation of the crane. Moreover, a master-slave manipulator (MSM), the only available means of maintenance of the crane, was unable to reach it in the limited workspace. To address the difficulties in the design of this crane, in this study, a remote actuation mechanism is devised where the mechanical and electrical parts of the crane system are separated, positioned far away from each other, and connected through power transmission shafts. This approach has two main advantages. First, the electrical parts can be placed inside the workspace of the MSM, hence allowing for remote maintenance. Second, the space occupied by the electrical parts and their cables, which are separate from the crane in the proposed design, can be considered and exploited in designing the mechanical parts of the crane. This enables the construction of a short, special crane in order to maximize the workspace. Furthermore, the mechanical parts for the MSM located outside the workspace are designed to possess a high safety margin to ensure durability. An accurate servo-control system is also developed based on absolute positioning measurement. This allows for the safer performance of perform through automatic operation. (C) 2016 Elsevier B.V. All rights reserved.
机译:先进的乏燃料调节过程。韩国原子能研究所(KAERI)的设施(ACPF)最近已成功翻新。该翻新项目的亮点之一是在该设施的大气热室内安装了一个小的氩气室。尽管认为起重机系统对于远程操纵氩气室内的处理设备是必需的,但没有合适的商用起重机可用。这是因为为安装起重机预留了有限的空间。此外,起重机的唯一可用维护手段是主从操纵器(MSM),无法在有限的工作空间内到达起重机。为了解决该起重机设计中的困难,在本研究中,设计了一种远程致动机构,其中起重机系统的机械和电气部分分开,相互远离并通过动力传动轴连接。这种方法有两个主要优点。首先,可以将电气部件放置在MSM的工作空间内,从而可以进行远程维护。其次,在设计起重机的机械部件时,可以考虑并利用电气部件及其电缆所占用的空间,这些空间在建议的设计中与起重机分开。这使得能够构造短而特殊的起重机以最大化工作空间。此外,位于工作空间外部的MSM机械部件的设计具有很高的安全裕度,以确保耐用性。基于绝对位置测量,还开发了一种精确的伺服控制系统。这样可以通过自动操作更安全地执行演奏。 (C)2016 Elsevier B.V.保留所有权利。

著录项

  • 来源
    《Nuclear Engineering and Design 》 |2016年第10期| 144-154| 共11页
  • 作者单位

    Korea Atom Energy Res Inst, Nucl Fuel Cycle Proc Technol Dev Div, Taejon 305353, South Korea;

    Korea Atom Energy Res Inst, Nucl Fuel Cycle Proc Technol Dev Div, Taejon 305353, South Korea;

    Korea Atom Energy Res Inst, Nucl Fuel Cycle Proc Technol Dev Div, Taejon 305353, South Korea;

    Korea Atom Energy Res Inst, Nucl Fuel Cycle Proc Technol Dev Div, Taejon 305353, South Korea;

    Korea Atom Energy Res Inst, Nucl Fuel Cycle Proc Technol Dev Div, Taejon 305353, South Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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