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Review of Tracker Geometry

Review of Tracker Geometry. “Passive” tracker Closeout Walls MCM Other Cables Heat Straps Flexures Bosses ???. Overall view Recent bug fixes Offset Wrong Converter Typical tray “Active” tracker Vertical dimensions Groupings Radiation Lengths Horizontal dimensions. Overview .

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Review of Tracker Geometry

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  1. Review of Tracker Geometry • “Passive” tracker • Closeout • Walls • MCM • Other • Cables • Heat Straps • Flexures • Bosses • ??? • Overall view • Recent bug fixes • Offset • Wrong Converter • Typical tray • “Active” tracker • Vertical dimensions • Groupings • Radiation Lengths • Horizontal dimensions TKR Geometry Review

  2. Overview TKR Geometry Review

  3. Zoom In TKR Geometry Review

  4. More Zoom TKR Geometry Review

  5. Comparison of Previous & (Mostly) Corrected Geometry Previous New, 1st Draft TKR Geometry Review

  6. Detail Previous New, 1st Draft TKR Geometry Review

  7. Wrong Converter • A one point, the material for the SuperGlast converter was changed from pure tungsten to a tungsten alloy. • Since the alloy is less dense, the thickness of the converter had to be increased to yield the same radiation length. • This was done, but the material was left as pure tungsten. • Fixed now… TKR Geometry Review

  8. Vertical Dimensions of Stack (mm) TKR Geometry Review

  9. Horizontal Dimensions • Nothing has changed since the last iteration. • In the last design, the top and bottom ladders on a tray were translated in opposite directions along their length so that they were out of register by about 1.5 mm. • This was never modeled in the geometry. • BJ says this “feature” has been eliminated from the current version. TKR Geometry Review

  10. Not to Scale!! Boss, closeout and spacer are not part of geometry model Side View of a Typical Tray in a Tower “Boss” Wall Ladders Closeout Silicon Glue dc= 27.92 mm* *Top, Bottom, larger Bias Board Tray D Tungsten Face Sheet d = 2.05 – 2.1 mm Spacer post Core TKR Geometry Review

  11. Details of Top Face of Trays(all trays the same, except top tray) siThick, 0.400 mm Glue, 0.150 mm Bias plane, 0.100 mm Top Face Glue, 0.100 mm faceThick, 0.200 mm (SuperGlast/Bot 0.290) Glue, 0.075 mm (dots) Core Not to Scale, separated to indicate grouping! TKR Geometry Review

  12. Details of Bottom Face of Standard Tray, including Bottom Face of Top Tray Core Face sheet, 0.200 mm Bot Face Glue, 0.075 mm convThickReg, 0.105 mm Tungsten Glue, 0.100 mm Bot Bias Bias plane, 0.100 mm Glue, 0.150 mm Not to Scale, separated to indicate groupings! Silicon, 0.400 mm TKR Geometry Review

  13. Radiation Lengths for some common Materials H Polystyrene C Kapton, Mylar O G10 Al Si Fe Cu CsI W TKR Geometry Review

  14. Example of Composite Material Calculation TKR Geometry Review

  15. Composite Material Calculation, continued X0(C) = 42.7 TKR Geometry Review

  16. Another Calculation TKR Geometry Review

  17. Another Calculation, continued X0(C) = 42.7 TKR Geometry Review

  18. Summary of “Active” Radiation Lengths • Converter 1.0850 • Silicon 0.1584  • Core 0.0513  • BotFace 0.0363 ? • TopFace 0.0341 ? • BotBias 0.0250 • Top 3 items are simple elements; 93% of r.l. • Remaining 3 are composites; mostly carbon, with Si, Cu, etc. • TopFace is thicker than BotFace; should show more r.l.; Found a typo! TKR Geometry Review

  19. Passive Tracker • Walls: Carbon Fiber, bolts, Al coating  • MCM: Calculation based on BTEM module ½  • Could be redone, if we had the info • Closeout • Complicated shape; dimensions and effective density should be reviewed. • Other material not in model • Cables • Flexures • Heat straps • ??? TKR Geometry Review

  20. Conclusion • Recent discovery of bugs has prompted a careful review of our model. • Several new (minor) bugs have been uncovered. • Minor design changes since last implementation need to be incorporated. • Modeling of passive tracker should be re-examined. • No big changes are expected. TKR Geometry Review

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