タイ新放射光施設SPS-II真空システム

開催日時

2026/09/11(金)11:00〜12:00

開催場所

PF研究棟2階会議室 + Zoom

講演者

Dr. Thanapong Phimsen

言語

英語

詳細ページ

お問い合わせ

谷本 育律 (PHS 4713)


Development of the Siam Photon Source II Vacuum System: From Design and Simulation to Prototyping and UHV Verification

The vacuum system for the Siam Photon Source II (SPS-II), Thailand’s upcoming fourth-generation synchrotron light source, must accommodate tight spatial constraints and sub-millimeter clearances imposed by a compact lattice. This talk presents the comprehensive development of the vacuum infrastructure, integrating engineering simulations with physical prototyping and ultra-high vacuum (UHV) verification. The design relies on a localized pumping strategy that concentrates high-capacity pumps near discrete copper photon absorbers. Finite Element Analysis (FEA) validates the mechanical design, demonstrating that an optimized support system minimizes deformation at critical beam position monitors under thermal loads while keeping peak absorber temperatures within safe operational limits. Furthermore, Molflow+ simulations predict achievable operational average pressures following beam conditioning. To validate the manufacturing workflow, prototype aluminum chambers targeting key fabrication challenges were produced using oil-less CNC machining. Metrology confirmed that geometric deformations remained well within specified tolerances, ensuring safe clearances at all magnetic interfaces. Finally, surface characterization and thermal outgassing measurements on chemically cleaned components benchmarked domestic manufacturing capabilities. This integrated approach establishes a direct correlation between surface chemistry and vacuum performance, demonstrating that the localized pumping strategy and precision domestic manufacturing framework are fully viable for meeting the stringent UHV requirements of the SPS-II.