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Plasma Transfer Arc Welding
Plasma Transferred Arc Machine
Product Brochure
Minimum Order Quantity | 1 Piece |
Voltage | 415 V |
Frequency | 50 Hz |
Phase | 3 Phase |
Technology | PTA technology |
Output Current | 100-200 A |
Weight | 125 Kg |
Brand | Arcraft plasma |
Plasma Gas Flow | 0 - 5 LPM |
Oscillation | 0 - 80 Per Minute |
Oscillation Width | 0 - 25 (mm) |
Max Installed Power | 24 hp |
Current Range | 5 - 400 (A) |
We are leading supplier of Plasma Transferred Arc Welding Machine. Plasma Transferred Arc Welding (PTAW) Machine is a high energy, inert gas welding process. PTA technology is particularly effective in protection against corrosion, thermal shock, and abrasion. A wide range of overlay alloys is available for practically any part. Some alloys are very hard; others are softer with hard abrasion-resistant particles dispersed in a matrix. Certain alloys are made to rebuild a part of required dimension while others are designed to be a final overlay that protects the work surface. Argon is basically used for arc plasma supply, powder transport, and molten material shielding. It produces a very high-quality deposit offering optimal protection with minimal dilution or deformation of the base material. It is a process that deposits very precise coatings of perfectly controlled alloys on mechanical parts that are subject to intense wear; significantly extending their service life.
Plasma Transferred Arc System
Technology | PTA technology |
Input Voltage | 415VAC / 50-60Hz / 3 ph |
Duty Cycle | 100 |
Brand | Arcraft plasma |
Current Range | 5 - 200 A |
Standard Torch cable length | 4 meters |
Pilot Arc Current | 10 - 25 A |
Max Installed Power | 11 HP |
- It is a process that deposits very precise coatings of perfectly controlled alloys on mechanical parts that are subject to intense wear; significantly extending their service life.
- PTA technology is particularly effective in protection against corrosion, thermal shock, and abrasion.
- A wide range of overlay alloys is available for practically any part.
- Some alloys are very hard; others are softer with hard abrasion-resistant particles dispersed in a matrix. Certain alloys are made to rebuild a part of required dimension while others are designed to be a final overlay that protects the work surface.