Welcome to www.cnctt.com official website!

Custom 303 stainless steel aerospace bracket for robotics – compound angles to 45 degrees, ±0.02 mm

Custom 303 stainless steel aerospace bracket for robotics – compound angles to 45 degrees, ±0.02 mm. 303 stainless steel, compound angles to 45 degrees, supplied to drawing with ±0.02 mm tolerance and

Get a Quote
Custom 303 stainless steel aerospace bracket for robotics – compound angles to 45 degrees, ±0.02 mm
Custom 303 stainless steel aerospace bracket for robotics – compound angles to 45 degrees, ±0.02 mm

Custom 303 stainless steel aerospace bracket for robotics – compound angles to 45 degrees, ±0.02 mm

Custom 303 stainless steel aerospace bracket for robotics – compound angles to 45 degrees, ±0.02 mm. 303 stainless steel, compound angles to 45 degrees, supplied to drawing with ±0.02 mm tolerance and

Contact Number: 18681062885
Product Details

Custom 303 stainless steel aerospace bracket for robotics – compound angles to 45 degrees, ±0.02 mm

A 303 stainless steel aerospace bracket is completed in fewer setups, which is the real advantage: feature relationships improve because the part is not re-fixtured between faces. 303 stainless steel aerospace bracket for robotics work is produced here with simultaneous five-axis machining with simulation and verified toolpaths. The sections below describe what is held on the drawing, how the part is made and what arrives with the shipment.

The parts that matter most are the interfaces: bores, sealing faces, threads and mounting patterns. Those are held to ±0.02 mm, verified against the drawing, and recorded before anything is packed.

Specification

ProcessSimultaneous five-axis machining with simulation and verified toolpaths
Material / configuration303 stainless steel
Size / capacitycompound angles to 45 degrees
Tolerance±0.02 mm
Surface finishas machined or polished, Ra 0.8 µm
Applicationaerospace bracket for robotics
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 303 stainless steel aerospace bracket for robotics – compound angles to 45 degrees, ±0.02 mm manufacturing detail

Manufacturing process

The operation sequence is decided before the first chip is cut: roughing to leave even stock, semi-finishing, then simultaneous five-axis machining with simulation and verified toolpaths as the final operation. That order is what keeps ±0.02 mm stable as the batch runs and the machine warms up.

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.

  • Aerospace structural fittings.
  • Impellers and bladed components.
  • Surgical instrument bodies.
  • Robot wrist and joint housings.
  • Optical and camera mounts.

Custom 303 stainless steel aerospace bracket for robotics – compound angles to 45 degrees, ±0.02 mm finished parts

Quality control and documentation

Every batch is measured against the drawing with calibrated equipment, and results are recorded against the part number rather than kept on a scrap of paper.

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

Quotations are returned within one working day of a complete drawing package. Lead time is quoted from drawing approval, not from the date of enquiry.

Custom 303 stainless steel aerospace bracket for robotics – compound angles to 45 degrees, ±0.02 mm inspection and packing

Frequently asked questions

When is five-axis worth the extra cost?

When a part needs three or more setups in three-axis work, or when a compound angle cannot be reached otherwise. Fewer setups also means fewer places for tolerance to accumulate.

How are toolpaths verified before cutting?

Every programme is simulated against the solid model, checking for collisions, holder clearance and gouges, then run with a reduced feed on the first part under a dry run.

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.

To discuss aerospace bracket requirements, send the model and the drawing with the quantities required. Feedback on manufacturability is given free of charge before any order is placed.