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8 mm ASA Storage Bins Vacuum Forming for Industrial Robotics

Vacuum formed storage bins are used across industrial robotics because they can be produced without the tooling spend of injection moulding and without the weight of sheet metal. This page covers how 8 mm ASA sheet is formed for industrial robotics, what tolerances are realistic, and what has to be on the drawing before tooling starts.

The route below is the one used for most of the storage bins shipped from this plant: sheet is heated on the forming machine, drawn over an aluminium or composite mould, cooled on a jig, then trimmed on a 5-axis router. For storage bins the sheet gauge is selected from the load case rather than from habit, and ASA is the material most often specified for this combination.

storage bins vacuum formed for industrial robotics

Typical specification

ItemValue
Part typestorage bins
Industryindustrial robotics
MaterialASA
Sheet thickness8 mm (1.5–12 mm available)
Maximum forming area3,000 × 2,000 mm
Typical tolerance±0.5 mm formed, ±0.2 mm on trimmed edges
Toolingaluminium for production, composite for samples
First article7–15 working days
Production lead time3–4 weeks after approval
Finishas formed, textured, painted or printed

Where these parts are used

  • cable trays for industrial robotics
  • teach pendant cases for industrial robotics
  • controller housings for industrial robotics
  • robot base covers for industrial robotics
  • storage bins in general industrial robotics builds

How the part is made

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

Material notes: ASA

ASA keeps its colour and surface under UV better than ABS, which suits outdoor covers that are not painted.

ASA sheet formed into storage bins

Design tips for this part

  • avoid sharp steps in the mould, which show as chill marks on the finished surface
  • call out the finish on the drawing: mould texture, paint, or as-formed gloss
  • use corner radii of at least three times the sheet thickness to avoid thinning
  • keep a draft angle of at least 3 degrees on vertical walls so the part releases cleanly
  • plan the trim line on a flat face so the router can hold tolerance

Quality and inspection

Batch releases carry a dimensional report, material certificate and, where agreed, PPAP or ISIR documentation. First article inspection covers critical dimensions, wall thickness, colour and texture against the approved sample.

Cost and lead time

Tooling is the main cost driver at low volume, so a 8 mm storage bins for industrial robotics is usually quoted with a composite or printed mould first and the aluminium tool cut once the design is frozen. That keeps the first article cost low and gives a real part to test before the production tool exists. The result is better appearance compared with the alternatives, and a piece price that stays stable across repeat releases.

  • Sample tooling: 7–15 working days
  • Production tooling: 3–4 weeks
  • Repeat orders run on stored tooling with no new proving run

Frequently asked questions

What do you need to quote?

A 3D file or drawing, the material if it is fixed, the annual quantity and the finish. Photos of the current part are enough for a first estimate.

How long does tooling take?

Sample and first article tooling is usually cut in 7 to 15 working days. Production aluminium tools take 3 to 4 weeks depending on size and cooling layout.

Can you match an existing part?

Yes. Send a sample or scan and the part can be reverse engineered, with the wall thickness and material measured from the sample.

Getting started

Send the drawing or a photo of the current storage bins with the quantity and the finish. The first reply is a manufacturability review with the wall thickness, material and a quotation, so the decision is made on facts rather than on a price alone.

vacuum forming production of storage bins

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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