Preliminary Y-chamber specifications – First draft

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Presentation transcript:

Preliminary Y-chamber specifications – First draft Pablo Santos Díaz – Vincent Baglin 1st WP8-BINP Collaboration meeting CERN Geneva / 13-02-2017

Pablo Santos Díaz - Vincent Baglin OUTLINE Introduction. Functional specifications. First draft. Pablo Santos Díaz - Vincent Baglin

Pablo Santos Díaz - Vincent Baglin 1. Introduction Pablo Santos Díaz - Vincent Baglin

Pablo Santos Díaz - Vincent Baglin HL-LHC TAXN area The HL-LHC Y-chamber is planned to be installed inside TAXN in point 1&5. LHC Y-chamber currently installed in point 1&5 will be use as a reference. TAXN IP… TCLX TCTPV TCTXH D2 Planned Y-chamber location. Pablo Santos Díaz - Vincent Baglin

Pablo Santos Díaz - Vincent Baglin 2. Specifications Pablo Santos Díaz - Vincent Baglin

Specifications [I] Vacuum specifications: On IP side: ID equals to 250 mm. Flange DN273. On D2 side: ID equals to 91 mm. Flange DN100. Length transition section equals to 935 mm due to its merging angle is 9° (as it is in LHC Y-chamber 1&5). Leak tight rate less than 10-11 Pa m3 s-1. Beam impedance specifications: Max mechanical merging pipe 15°. Space between the tubes of the double pipe is reserved for possible installation of luminosity detectors. IP side Mechanical merging angle on the merging pipe D2 side Beam tube facing IP – Single pipe Transition section Beam tube away from IP - Double pipe Pablo Santos Díaz - Vincent Baglin

Pablo Santos Díaz - Vincent Baglin Specifications [II] Material: Cooper OFS (Stainless Steel 316L as a second option). Bakeout specifications: in situ bakeout temperature is 250°C with 50°C/h rate. Coating: Copper coating (in case it is built in Stainless Steel 316L) NEG coating. Transport: construction phase will be carry out in BINP installations and then will be cleaned and NEG coated at CERN*. Tooling: to be defined and included in the delivery. Mechanical tolerances. The following data contains the very worst case concerning mechanical tolerances WP8 can accept. Beam tube facing IP (two beams in one tube) Inner radius: 125.0 mm. Mechanical tolerance (radius) : ± 2.1 mm Transition section Inner radii: 125.0 to 42.5 mm. Mechanical tolerance (radius) [e/m/e]: ± 1.9 / ± 4.9 / ± 1.4 mm. Beam tube away from IP (two beams in two different tubes) Inner radius: 42.5.0 mm. Mechanical tolerance (radius) : ± 1.0 mm. Alignment tolerances. Vacuum chamber to alignment fiducial tolerance (radius): ± 0.6 mm. Pablo Santos Díaz - Vincent Baglin

Manufacturing strategy proposal To build the Y-chamber the different parts would be welded by electron beam welding in order to achieve a leak tight rate less than 10-11 Pa m3 s-1. (BINP) Cleaning. (CERN) NEG deposition to carry out the NEG coating. (CERN) Customized CF Flange DN 273 2 pipes + 1 stiffener ID transition tube transition tubes* + 2 plates 2 Customized CF Flange DN 100 Pablo Santos Díaz - Vincent Baglin

Pablo Santos Díaz - Vincent Baglin 3. First draft Pablo Santos Díaz - Vincent Baglin

Pablo Santos Díaz - Vincent Baglin 3D model and features On IP side: ID: 250 mm. Transition to ID 233 mm. Flange DN273 CF. On D2 side: ID: 85 mm. At the end of both tubes of the double pipe there is an ID transition from 85 mm to 91 mm. Flange DN100 CF. Thickness 3 mm → tbc by a stress analysis. The tubes of the double pipe has an angle, it means that both pipes are parallel to its respective beams. Pablo Santos Díaz - Vincent Baglin

Pablo Santos Díaz - Vincent Baglin LSS R5 layout [I] TAXN VM and ion pump should be support by the Y-chamber but ,in principle, should be avoided  Layout to be studied in more details Pablo Santos Díaz - Vincent Baglin

Pablo Santos Díaz - Vincent Baglin LSS R5 layout [II] Pablo Santos Díaz - Vincent Baglin

Pablo Santos Díaz - Vincent Baglin Conclusions A preliminary Y-chamber for HL-LHC LSS 1&5 draft is proposed following the present specifications shown. The specifications and the Y-chamber geometry would change during the project course. A manufacturing strategy is proposed. Next steps Y-chamber functional specifications document. Perform a structural and thermal analysis to confirm the Y-chamber thickness. Pablo Santos Díaz - Vincent Baglin

THANK YOU FOR YOUR ATTENTION!!! Pablo Santos Díaz - Vincent Baglin