0 Views 2026-09-17 09:08 PPOEM

Solar And Wind Energy Case: 10 mm PETG Hoods from Drawing to Production

This solar and wind energy project started with one question: could hoods be vacuum formed instead of produced as a fabricated PVC assembly? The answer was yes at 10 mm PETG, and the part went from drawing to approved sample in 4 weeks. Here is the route and the result.

hoods vacuum forming case for solar and wind energy

The starting point

  • Part: hoods for solar and wind energy
  • Existing route: a fabricated PVC assembly
  • Annual volume: 5000 pieces
  • Problems: high unit cost, long lead time, and variation between batches

What was wrong with the old route

The previous fabricated PVC assembly needed several operations to reach finished shape, and every operation added both cost and a chance for variation. Weight was higher than it needed to be, and design changes meant new fixtures each time. For a programme of 5000 pieces a year that is a poor fit.

What we built

ItemValue
Processthick gauge vacuum forming, 5-axis CNC trimming
MaterialPETG at 10 mm
Forming area usedup to 3,000 × 2,000 mm
Toolingaluminium production mould with a composite sample tool first
Finishtextured as formed
Batch size625 pieces per release
First article4 weeks from drawing release
Documentationdimensional report, material certificate, first article inspection

hoods formed from PETG

Process route

  1. Parts are inspected, fitted with inserts or hardware if required, packed and shipped.
  2. Drawings are reviewed and a manufacturability report is issued with wall thickness, draft and radii marked up.
  3. Sheet is dried when the material needs it, then heated to forming temperature on the machine.
  4. Tooling is cut: aluminium for production volumes, composite or printed moulds for samples and first articles.
  5. Trimming is done on 5-axis routers or with a dedicated trim fixture to meet the drawing.
  6. The sheet is formed over the mould with vacuum and, where the draw is deep, with plug assist.

Results

  • cut tooling cost by 60 percent
  • First article approved in 4 weeks
  • Tooling amortised inside the first production batch
  • Repeat releases match the approved sample: tooling and programmes are stored against the part number
  • 5000 pieces shipped to date with no dimensional escapes

Lessons from this project

  • The 10 mm was set from the load case, which avoided over specifying the sheet and paying for weight that was not needed
  • Draft and radii were checked before the tool was cut, so the first sample released without hand work
  • The trim line was placed on a flat face, which kept the router inside ±0.2 mm
  • Tooling and programmes are stored against the part number, so repeat releases need no new proving run

What the client said

“The sample arrived on the date we were given and it fitted the assembly on the first try. The hoods is lighter than the part it replaced and the finish holds up in the field. We now release the hoods against stored tooling and the paperwork comes with the shipment.”

Frequently asked questions

Could the same route work on a different part?

If the part is a shell, cover, tray or enclosure between 1.5 mm and 12 mm thick, it is almost always worth quoting. Send the drawing and the answer comes back with a material and a tooling plan.

How is the tooling handled between orders?

Tooling, trim fixtures and programmes are kept against the part number for the life of the programme, so a repeat release needs no new proving run.

finished hoods ready for shipment

Next step

Send the drawing or the existing hoods with the annual quantity. The reply is a manufacturability review, a material recommendation and a quotation within 24 hours.

Need a part like this?

Send the 3D file or drawing with your quantity — manufacturability review and quotation within 24 hours.

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