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No Change, show open motor curve and talk about funny canted nozzles

Manufacturing

include drawings of all parts, where we get them from, and how to machine it

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Forward Retention

hei_fwd_retention.SLDDRW

  • Use the water jet cutter to radially drill the holes for the screws
  • Do not thread the screw holes, because the threads could mismatch with the ones in the forward closure

Igniter Nozzle

ig_nozz.SLDDRW

  • Put two pieces of phenolic on the lathe, use it to get their dimensions right.
  • Hand drill the canted holes in the nozzle
  • Glue the phenolic pieces together

Igniter Grain

bt_igniter_grain.SLDDRW

  • Cut the grain slowly with a drill by hand
  • Extremely important to go slowly so as to not ignite the grain

Igniter Liner

ig_liner.SLDDRW

  • Cut the liner to length with a saw

Phenolic Forward Closure

hei_fwd_closure.SLDDRW

  • Use the water jet cutter to drill the holes
  • Use the lathe for the grooves

Forward Closure

fwd_closure_hei.SLDDRW

  • Use the new digital lathes for the curve because they can do tapers and complex geometries
  • Put the closure on the mill for holes and bolts
  • Thread the scew holes

Phenolic for Forward Closure Insulation

Phenolic for forward closure.SLDDRW

  • Use the water jet cutter for the hole

Integration

Custom E-Matches

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  • Use redundant matches to avoid failed ignition

Safety

  • Be extremely careful when working with grains
  • Exercise caution with machining tools

R2E

  • Include R2E between the phenolic forward closure and the forward closure
  • Put it between the igniter nozzle and forward closure
  • Put it between the threaded rods and the phenolic closure