To ensure our 3D printed parts meet the demanding standards of high-performance industries, PIAM3D offers an integrated, specialized post-processing facility. We bridge the gap between "as-printed" parts and functional, ready-to-use components through a rigorous suite multi stage of finishing technologies.

Sample size

  • Ø500 × 250 mm

Materials that can be treated

  • Titanium Alloys
  • Super Alloys – Inconel etc
  • Aluminum Alloys
  • SS Alloys

Variety of components

  • Turbofan engine (Nozzle Guide Vanes, Rotor, and Injector etc.)
  • Knee, Femur and other medical implants

Applications

  • Aerospace
  • Biomedical
  • Tooling and Automotive Industries
PIAM 3D

Abrasive Media

  • Silicon Carbide

Sample Size

  • Up to 1000mm, Ø6-30mm

Mode

  • One Way Abrasive Media Movement

Components that can be Treated

  • Valves, Manifolds, Impellers, Rotors, Intakes, Parts with Internal Channels, Hydraulic Components, etc.

Materials that can be Treated

  • SS Alloys, Inconel, Titanium and Nickel based Alloys, Aluminum and Copper.

Applications

  • Deburring and smoothing of internal channels
  • Flow Improvement for inner Channels.
  • Surface finishing of parts with intricate geometries
PIAM 3D

Dimensions

  • 900mm × 600mm × 1670mm

Working Cabin Size

  • 900mm × 600mm × 700mm

Compressed Air Source

  • Pressure: 5-7bar (kg/cm2)
  • Flow rate: 0.8-1.2m3/min, dry compressed air

Applications

  • Clean the rough surface, descaling, residual salt
  • Burr of forged castings, welding parts, heat treatment parts, stamping parts and machined parts
  • Used in the pretreatment process before spraying and electroplating
  • Used to spray glass shots to strengthen the surface of the light-finished parts.
PIAM 3D

PIAM 3D

Working Cabin Size

  • 960mm × 960mm × 760mm

Compressed Air Source

  • Pressure: 0.1-0.8bar (kg/cm2)
  • Power 600W, dry compressed air

Applications

  • Clean the powder adhesions from the SLS parts
  • Machine uses glass shots to strengthen the surface of the parts made with SLS printer
PIAM 3D

Tube Size

  • OD80 × 1000mm

Working Temperature

  • 1100 ℃

Maximum Temperature

  • 1200 ℃

Heating Zone

  • 300 mm

Temperature Control

  • 51 segment programmable and PID auto control

Heating Zone

  • 0Pa

Applications

  • Used for oxidation-free heat treatment, brazing, sintering, degassing, and stress relieving of high-precision and advanced material components.
PIAM 3D

Tube Size

  • 229 x 178 x 229 mm (Quartz)

Maximum Temperature

  • 1100 ℃

Temperature Uniformity

  • ± 8 °C

Applications

  • Used for high-temperature material processing such as sintering, calcination, annealing, thermal decomposition, chemical vapor deposition (CVD) and heat treatment under controlled atmosphere or vacuum conditions
PIAM 3D

Retort Volume

  • 174 liters

Internal Volume L x W x H (mm)

  • 350 x 400 x 550 mm

Applications

  • A high-temperature chamber furnace used for heat treatment, sintering, annealing, and material testing in laboratories and research facilities.
  • It is commonly applied in ceramics processing, metallurgy, additive manufacturing post-processing, and advanced materials R&D requiring controlled high-temperature environments
PIAM 3D

Type

  • Ultra Violet

Internal Chamber

  • 35 x 35 x 35 mm

Turntable Platen Diameter

  • 35mm

UV Source

  • TLK 30W

Application

  • Used for drying, curing, and heat-setting of coatings, adhesives, resins, polymers, and composite materials to achieve proper bonding, hardness, and mechanical strength
PIAM 3D

Machine Dimensions (mm)

  • 2070 × 1770 × 1790

Worktable Size (mm)

  • 596 × 880

Max Workpiece Height (mm)

  • 500

Application

  • It is used to separate the 3D printed part from the build plate.
  • It enables precise contour cutting of metal AM parts made from materials such as stainless steel, titanium, Inconel and super alloys.
PIAM 3D

Coming Soon