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@inproceedings{nie:medsi2023-thppp005, author = {X.J. Nie and J.X. Chen and H.Y. He and L. Kang and L. Liu and R.H. Liu and C.J. Ning and G.Y. Wang and J.B. Yu and Y.J. Yu and J.S. Zhang}, % author = {X.J. Nie and J.X. Chen and H.Y. He and L. Kang and L. Liu and R.H. Liu and others}, % author = {X.J. Nie and others}, title = {{Development of a Vacuum Chamber Disassembly and Assembly Handcart}}, % booktitle = {Proc. MEDSI'23}, booktitle = {Proc. 12th Int. Conf. Mech. Eng. Design Synchrotron Radiat. Equip. Instrum. (MEDSI'23)}, eventdate = {2023-11-06/2023-11-10}, pages = {277--279}, paper = {THPPP005}, language = {english}, keywords = {vacuum, cavity, GUI, neutron, factory}, venue = {Beijing, China}, series = {International Conference on Mechanical Engineering Design of Synchrotron Radiation Equipment and Instrumentation}, number = {12}, publisher = {JACoW Publishing, Geneva, Switzerland}, month = {07}, year = {2024}, issn = {2673-5520}, isbn = {978-3-95450-250-9}, doi = {10.18429/JACoW-MEDSI2023-THPPP005}, url = {https://jacow.org/medsi2023/papers/thppp005.pdf}, abstract = {{This paper developed a dedicated disassembly and assembly handcart for CSNS magnetic alloy cavity vacuum chamber. The optimal supporting section structure was determined by the use of ANSYS to analyze the strength of different sections. The stress situation of the handcart was improved by adding an extension rod at the end of the handcart. The installation position of the handcart was determined by the center position of the associated equipment. The development of the disassembly and assembly handcart structure was completed through structural optimization, disassembly and assembly process analysis, and positioning scheme design. The development of a handcart can improve the positioning accuracy of the vacuum chamber and prevent damage to the vacuum chamber during disassembly and assembly process.}}, }