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Custom POM-C bushing for laboratory equipment – 100 × 60 × 25 mm envelope, ±0.05 mm

Custom POM-C bushing for laboratory equipment – 100 × 60 × 25 mm envelope, ±0.05 mm. POM-C, 100 × 60 × 25 mm envelope, supplied to drawing with ±0.05 mm tolerance and as machined or vapour polished fi

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Custom POM-C bushing for laboratory equipment – 100 × 60 × 25 mm envelope, ±0.05 mm
Custom POM-C bushing for laboratory equipment – 100 × 60 × 25 mm envelope, ±0.05 mm

Custom POM-C bushing for laboratory equipment – 100 × 60 × 25 mm envelope, ±0.05 mm

Custom POM-C bushing for laboratory equipment – 100 × 60 × 25 mm envelope, ±0.05 mm. POM-C, 100 × 60 × 25 mm envelope, supplied to drawing with ±0.05 mm tolerance and as machined or vapour polished fi

Contact Number: 18681062885
Product Details

Custom POM-C bushing for laboratory equipment – 100 × 60 × 25 mm envelope, ±0.05 mm

A POM-C bushing solves problems metal cannot: insulation, dry running bearings and chemical resistance without corrosion. Below is the practical detail on POM-C bushing supplied for laboratory equipment: machining of engineering plastics with sharp tooling and heat control, the tolerance that is held, the finish applied and the documents issued with the parts.

Tolerance is applied where it does work rather than across the whole drawing. Critical features are held to ±0.05 mm, non-critical dimensions follow the general machining tolerance, and the difference is stated in the quotation rather than discovered later.

Specification

ProcessMachining of engineering plastics with sharp tooling and heat control
Material / configurationPOM-C
Size / capacity100 × 60 × 25 mm envelope
Tolerance±0.05 mm
Surface finishas machined or vapour polished
Applicationbushing for laboratory equipment
InspectionDimensional report, material certificate, first article report on request
Lead time7–15 working days for samples, 3–4 weeks for production
Minimum order1 piece for prototypes, from 50 pieces for production pricing

Custom POM-C bushing for laboratory equipment – 100 × 60 × 25 mm envelope, ±0.05 mm manufacturing detail

Manufacturing process

Work is carried out with machining of engineering plastics with sharp tooling and heat control. Tooling, speeds and fixturing are recorded with the part number, so a repeat order starts from a proven process instead of a fresh setup.

Material is purchased against a certificate and checked on receipt, so the composition is known before any cutting starts. Work in progress is identified by part number and operation, and the finished parts are deburred, cleaned and protected before they leave the machine area.

Typical applications

Most of the work supplied in this category falls into the following examples.

  • Insulating bushes and washers.
  • Food contact wear parts.
  • Laboratory fluid manifolds.
  • Light duty gears and rollers.
  • Electrical enclosures.

Custom POM-C bushing for laboratory equipment – 100 × 60 × 25 mm envelope, ±0.05 mm finished parts

Quality control and documentation

Critical features are measured on calibrated equipment in a controlled room, and the results are filed with the job so that a repeat order can be compared with the first.

Material certificates to EN 10204 3.1, dimensional reports and first article inspection reports are issued with the shipment where the application requires them. Calibration dates and measurement uncertainty are recorded alongside every result.

Ordering, lead time and packaging

Packaging is specified by the part: individual protection for finished surfaces, separation for assemblies, and export crating with a packing list for shipment.

Custom POM-C bushing for laboratory equipment – 100 × 60 × 25 mm envelope, ±0.05 mm inspection and packing

Frequently asked questions

Do plastics hold tight tolerances?

They hold ±0.05 mm reliably, but dimensions move with temperature and with moisture in nylons, so parts are measured at 20 °C after conditioning.

Why machine plastic instead of moulding it?

Below a few hundred pieces, machining avoids tooling cost entirely and allows design changes between batches without altering a tool.

Do you keep tooling and programmes for repeat orders?

Fixtures, tool lists and verified CAM programmes are retained for the life of the part number, so a repeat release runs on the same setup as the first batch without a new proving run.

Drawings are reviewed for manufacturability before quotation, and any feature that adds cost without adding function is pointed out at that stage rather than after the parts are made.