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Designing multi-anvil assemblies: The COMPRES cell assembly project

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... (cont.) Assembly Assembly (cont.) Results for three locked assemblies Calibration curves ... cut using wire EDM (Electrical Discharge Machining), ... – PowerPoint PPT presentation

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Title: Designing multi-anvil assemblies: The COMPRES cell assembly project


1
Designing multi-anvil assembliesThe COMPRES
cell assembly project
  • Kurt Leinenweber

2
(No Transcript)
3
Challenges
  • Thermocouple has to work well
  • Wide range of P and T desirable for each assembly
  • Easy to assemble
  • Not expensive
  • Specs have to be repeatable from year to year
    (well-documented)

4
  • Five sizes of octahedra - 8 mm, 10 mm, 14 mm, 18
    mm and 25 mm - used in the COMPRES assemblies.

5
The octahedra showing the sample holes already
molded in.
6
Gasketing
  • Gasket setup using pre-cut paper and pre-milled
    gaskets, shown on the bottom 4 cubes of the
    nest.

7
Gasketing (cont.)
  • Pre-cut paper that is used to position the
    gaskets.

8
Gasketing (cont.)
  • ASUs shop foreman, Rick Flubacher, and an
    automated mill.

9
Gasketing (cont.)
Trial milling of pyrophyllite gaskets on a
programmable mill.
10
Gasketing (cont.)
COMPRES machinist, Brian Nagy, and the COMPRES
automated lathe.
11
Assembly
Cutting thermocouple slots in a lanthanum
chromite sleeve for the 8/3 assembly on the
automated lathe.
12
Assembly (cont.)
Rhenium furnace (size 5.4 mm by 8 mm) cut using
wire EDM (Electrical Discharge Machining), for
the 8/3 assembly.
13
Assembly (cont.)
The 8/3 assembly with the lanthanum chromite
sleeve and the rhenium furnace in place.
14
Modification for x-ray
Beam path (green) through the 8/3 assembly
(courtesy of Emmanuel Soignard).
15
Modification for x-ray (cont.)
NEW Special rhenium furnace design for in-situ
x-ray experiments in the 8/3 assembly, including
a central slit for the x-ray beam.
16
Testing
COMPRES care packages ready for shipping.
17
Testing (cont).
Big blue multi-anvil at ASU (frame is from
Clifton Fluid Power, Inc. module made in-house).
18
Testing (cont).
14/8 G2 assembly after squeezing.
19
Results for three locked assemblies
  • Calibration curves
  • Success rates
  • Suitability for offline and in-situ work
  • (note because development of too many new things
    can be confusing, we lock certain designs so
    that they wont change, while we continue to
    develop others).

20
14/8 Caltech assembly
14/8 Caltech assembly (lanthanum chromite
step-heater)
21
14/8 Caltech assembly thermal profile
22
14/8 G2 assembly
23
8/3 assembly
24
8/3 assembly (cont) room temperature calibration.
25
8/3 assembly (cont.) Thermal profile.
26
8/3 assembly (cont.) Effect of temperature on
pressure.
27
10/5 Tami assembly
28
10/5 Tami assembly (cont.) Pressure calibration
29
10/5 assembly (cont.) Effect of temperature on
pressure
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