Status of LNF production - PowerPoint PPT Presentation

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Status of LNF production

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Covers are useful to protect the wires during soldering and panel preparation ... Panel soldering: OK; Panel preparation: OK; WTM: OK; ... – PowerPoint PPT presentation

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Title: Status of LNF production


1
Status of LNF production
  • Emiliano Dané - Carlo Forti - Alessio Sarti
  • Chamber 48 closed yesterday
  • We think to produce 56 or 58 chambers

2
Production rate
  • Average production rate 2 chambers per week

3
Data of HV test in air
  • First measure of current
  • Last panels draw current

4
Panel cleaning
  • Lapping machine before HV bar gluing
  • Lapping machine before assembly
  • Use of brush with isopropylic
  • New lateral bars

5
Use of cover
  • Cover is positioned on panel just after gluing in
    the winding machine
  • Covers are useful to protect the wires during
    soldering and panel preparation
  • Cover in fixed on panels with an Aluminium
    sellotape to avoid that smoke from soldering goes
    on wires

6
HV test in air
  • Now the HV test in air is good
  • Slow current decrease
  • There is no evidence of a direct relation between
    the results of the HV test in air and the
    behavior of the same panel in the assembled
    chamber, with gas mixture
  • This test is useful in identifying big problems
  • Another table of HV test in air will be prepared.

7
The other stations
  • Winding machine OK
  • Panel soldering OK
  • Panel preparation OK
  • WTM OK
  • Chamber assembly the closing pressure was too
    low in chamber 45
  • Gas leakage see next slides
  • Source test see Carlo Fortis talk.

8
Production rate
  • 2 chambers closed last week

9
M3R3 end of production
  • The end of M3R3 producition is expected in the
    middle of September to produce 58 chambers
  • Third gluing machine will be ready in few days

10
End of total production
  • The end of all productions is expected in July
    of 2006
  • In this plot there are 7 weeks of holidays

11
Gas leakage test _at_ LNF
  • Scheme of the system
  • Picture of the system
  • Reference chamber measure
  • Measurement procedure and software
  • Measures

12
Scheme of the system
  • Overpressure is applied to two chambers
  • Isolated reference volume (for the absolute
    method)
  • Sensor of external parameter (Temperature and
    Pressure)
  • Difference of Sensor_1 and Sensor_2 by software
  • Second sensor is used in order to check the ref.
    chamber

13
Picture of the system
  • Chambers are put in a box in order to uniform the
    temperature
  • The box is in the clean room
  • In the clean room the temperature varies from 23
    C to 26 C

14
Reference Chamber
  • Measure of the reference chamber at constant
    temperature (23.80.1C) use the bottle and is
    not sensitive to the external pressure

15
Measurement procedure
  • Apply to the chambers (test and ref.) an
    overpressure of 5 mbar
  • Measure the drop of reference chamber and
    chamber to test
  • Test length 1 hour

Drop of chamber to test
Drop of reference chamber
External temp and pressure
Subtraction between test and reference
16
Measures
  • Estimated error 0.2 mbar
  • Measured chambers with leak problems 3, 22,34.

17
Conclusions
  • Problems with the HV test in air solved
  • New procedure to clean panels is good
  • Production rate is normalizing to 2 ch/week
  • Setup of gas leakage test is OK
  • No leak problem for last chambers

18
Measure repeatability
19
Influence of temperature on ?p
  • Measure without bottle
  • Same behavior of two chambers by temperature
    variations
  • In this measure the pressure was 9931 mbar

20
Temp and press of clean room
  • In the clean room the temperature has variation
    from 23 to 26 degree in 1 day
  • In 1 hour the temp varies sligthly

21
The Gay-Lussac law
A volume costante
  • Sperimentalmente 8.43 mbar/ C
  • Teorico 3.3 mbar/C
  • La differenza e dovuta allimprecisione dei
    sensori!
  • Il piu preciso e quello che misura il ?P
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