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Notching and Piercing Die for hardware and fastener manufacture – part accuracy of ±0.05 mm, ±0.05 mm

Notching and Piercing Die for hardware and fastener manufacture – part accuracy of ±0.05 mm, ±0.05 mm. D2 tool steel and wire cut sections, part accuracy of ±0.05 mm, supplied to drawing with ±0.05 mm

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Notching and Piercing Die for hardware and fastener manufacture – part accuracy of ±0.05 mm, ±0.05 mm
Notching and Piercing Die for hardware and fastener manufacture – part accuracy of ±0.05 mm, ±0.05 mm

Notching and Piercing Die for hardware and fastener manufacture – part accuracy of ±0.05 mm, ±0.05 mm

Notching and Piercing Die for hardware and fastener manufacture – part accuracy of ±0.05 mm, ±0.05 mm. D2 tool steel and wire cut sections, part accuracy of ±0.05 mm, supplied to drawing with ±0.05 mm

Contact Number: 18681062885
Product Details

Notching and Piercing Die for hardware and fastener manufacture – part accuracy of ±0.05 mm, ±0.05 mm

A Notching and Piercing Die turns flat strip into finished parts at rates no machining process matches, once a design and a volume justify the investment. This page covers a Notching and Piercing Die built in D2 tool steel and wire cut sections for hardware and fastener manufacture work: tool design with strip layout, wire cut detail and tryout on press. The tool is designed around the part and the volume rather than copied from a previous job.

In practice the difficulty is rarely the nominal size. ±0.05 mm is held on the features that locate the part in the assembly, and the process is set up so that the first piece and the five hundredth measure the same way.

Specification

ProcessTool design with strip layout, wire cut detail and tryout on press
Material / configurationD2 tool steel and wire cut sections
Size / capacitypart accuracy of ±0.05 mm
Tolerance±0.05 mm
Surface finishdeburred and hardened tool surfaces
Applicationnotching and piercing die for hardware and fastener manufacture
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

Notching and Piercing Die for hardware and fastener manufacture – part accuracy of ±0.05 mm, ±0.05 mm manufacturing detail

Manufacturing process

Production begins with a drawing and material review. Stock is certified, the operation sequence is fixed, and tool design with strip layout, wire cut detail and tryout on press is carried out on equipment maintained to hold ±0.05 mm over a full shift, not just on a first piece.

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.

  • Brackets and mounting plates.
  • Terminals and contacts.
  • Shielding cans and frames.
  • Washers and shims.
  • Hinges and clips.

Notching and Piercing Die for hardware and fastener manufacture – part accuracy of ±0.05 mm, ±0.05 mm finished parts

Quality control and documentation

Inspection is not a final formality. Dimensions are checked during the cycle and again at the end, so drift is corrected while there is still stock to remove.

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

Orders start from a single piece. Samples are quoted from the 3D model, and production pricing follows once quantity, finishing and inspection are agreed.

Notching and Piercing Die for hardware and fastener manufacture – part accuracy of ±0.05 mm, ±0.05 mm inspection and packing

Frequently asked questions

When is a progressive die worth the cost?

Above roughly 50,000 parts a year. Below that, laser cutting and bending usually costs less in total, even though the piece part price is higher.

How is burr formation controlled?

By correct die clearance, typically 5 to 10 per cent of material thickness per side, sharp punches and a scheduled regrind interval before the burr limit is reached.

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.

Send the drawing or the 3D model for a quotation. Include material, quantity, tolerance and finish, and a detailed quote with lead time is returned within one working day.