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SLM + DED · FLUID CONTROL
UNMANNED · FLUID CONTROL

DED Technology

Laser cladding rebuilds locally damaged valve seats, sealing surfaces, shafts and stems while retaining a serviceable base.

Laser cladding rebuilds locally damaged valve seats, sealing surfaces, shafts and stems while retaining a serviceable base.

Repair the damaged region

Directed Energy Deposition (DED) adds metal precisely where wear, cavitation or local damage has occurred. A usable substrate is retained, and Stellite, Inconel or martensitic stainless steel can be evaluated for a wear- or corrosion-resistant surface.

DED and conventional welding
PropertyArc / conventional weldingDED
Heat-affected zone2–10 mm0.1–0.5 mm
Dilution10–30%1–5%
Bond / distortionFusion welding; greater distortion and cracking riskMetallurgical bond; reported shear strength >300 MPa
Heat input1.0–5.0 kJ/cm0.1–1.0 kJ/cm
Deposition accuracy / allowance±1.0 mm / 2–5 mm±0.1 mm / 0.2–0.5 mm
Finish machiningLarger allowanceMachining allowance reduced by 60–80%

Five steps from damaged part to service

  1. Diagnosis and reconstruction: 3D scanning and CAD reconstruction; PMI spectroscopy, hardness and metallography identify the base material and extent of cracks or wear.
  2. Process qualification: WPS / PQR for the substrate and powder combination; sample trials establish preheat, dilution and interpass temperature.
  3. Precision deposition: coaxial powder feed and a focused laser rebuild the damaged region layer by layer while monitoring melt-pool temperature and powder flow.
  4. Post-processing: specified annealing / ageing, turning, grinding and polishing restore dimensions, fit and surface finish.
  5. Inspection and delivery: nondestructive examination, coordinate measurement, hardness and metallography; inspection records accompany the part.

Economics for high-value parts

The largest benefit is often avoiding a long wait for a replacement. The proposal contrasts repair with imported replacement lead times of 12–18 weeks. Localised damage, access, component value and inspection scope determine whether repair is economical.

Typical high-value repair references
PropertyReference result
Repair / replacement cost15–40%
Material consumption vs replacement10–30%
Downtime reduction50–80%
Restored service life85–95%
Carbon footprint reduction60–70%
Typical repair time3–10 days; delivery scope agreed separately

Reference values from the technical proposal. Results depend on the material, component, processing condition and operating duty; the drawing and agreed acceptance plan govern each order.

For non-pressure-retaining wear parts: valve trim, seats and sealing surfaces. Pressure-retaining components require project-specific qualification before acceptance.

Application examples

UNMANNED

Start with the part. We will review the route.

Send the part type, material, damage and operating conditions. Our team will confirm suitability, the inspection plan and the delivery schedule.

Start Engineering Review