LiM-PWAAM1501

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LiM-PWAAM1501
LiM-PWAAM1501(1).png
  • LiM-PWAAM1501(1).png

Technical Parameters

Model

LiM-PWAAM1501

Build Envelope(L*W*H)

1500mm × 1500mm × 1000mm Customized

Power

Plasma Power (DC/AC) or Fronius CMT power

Building current

30-400A

Substrate Preheating

RT 20℃-200℃

Working gas

Ar

Oxygen Content

<100ppm

Positioning Accuracy

±0.05mm

Printing Accuracy

±0.5mm

Printing Speed

0-10mm/s

Working Chamber

Oxygen content analysis meter, easily oxidized metal(titanium alloy) can be printed when Argon replacement Oxygen content ≤100PPM

Material

Titanium Alloy, Aluminum Alloy, High Temperature Alloy, Stainless Steel, low carbon,steel etc.

Software

AM Slicer Pro, three axis (X,Y,Z)

Variable Layer Thickness

0.5-3.5mm

Feeding Speed

0.3-5m/min

Build Rate

0.3-5Kg/h

Dimension(L*W*H)

2.22m × 2.27m × 2.85m

Installation Size

5.2m × 5.2m × 3.5m

LiM-PWAAM501

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Equipment Advantages


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Low Cost, High Efficiency

The material utilization rate is more than 90%, and the printing efficiency can reach 550 cm³/h, which is more than 10 times that of SLM and more than 3 times that of LENS.

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High Performance, High Quality

The energy density of plasma arc is equivalent to that of laser, the forming grain is fine, the internal metallurgy is free of defects, and the performance is excellent.

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Automated, Multi-Functional

A piece of equipment with forming, repair, welding and other functions, high integration.

Related Cases


Plasma Arc Additive Manufacturing Printed Parts Show


Plasma arc wire feeding additive manufacturing (PAW,Plasma Arc Weld) uses plasma arc as a heat source to scan the forming path obtained by layering parts, forming a moving molten pool on the metal substrate, melting metal droplets formed by externally filled metal wires, continuously feeding them into the molten pool, and realizing the forming of parts by accumulating metal materials layer by layer on the forming path.

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