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Plasma Cutting Apparatus

In manual plasma cutting in the installation kit includes torch, plasma torch (plasma cutter) and a power source (plasma cutting machine). Plasma-forming gas may come from the built-in compressor unit (compressed air), on line or tank (compressed air, nitrogen, etc.).

The vast majority of power supplies for plasma cutting is working on a direct current straight polarity (for DC plasma torches, the highest efficiency of power). Alternating current is used in some cases, eg for cutting aluminum and its alloys.

Plasma Cutting Machines to ensure maximum stability of the operating current for the voltage fluctuations. In this regard, they have a steep or vertical external current-voltage characteristic. Steep external characteristic, shown in the figure below, is formed by the use of choke saturation of the thyristor control circuits and circuits operating on the principle of resonance voltage three-phase circuits, so for plasma cutting in most cases using special straighteners.

Sources (rectifiers) Plasma divided into transformer and inverter. Transformer (traditional) units are so called due to their use in low-frequency transformers. They have a much greater mass and size, but it may also have higher power. Such devices are used for mechanized and manual cutting of different thicknesses.

Inverter plasma cutters have small weight and dimensions (because they do not apply heavier low-frequency transformers), low energy consumption, but at the same time, they are limited by the maximum power (current, typically less than 70-100 A). They are usually used for cutting relatively small thickness.

TABLE. Apparatus plasma cutting
Mark Appointment
Hypertherm Powermax 190c (with built-in compressor) Inverters manual air-plasma cutting
MULTIPLAZ-7500-15000 MULTIPLAZ
ESAB OrigoCut 35i, OrigoCut 36i, PowerCut 650, PowerCut 875, PowerCut 1500
Lincoln Electric Pro Cut 25, Pro Cut 55, Pro Cut 80, Invertec PC60, Invertec PC100
Telwin Tecnica Plasma 18, Plasma 31, Plasma 34 Kompressor (with built-in compressor), Technology Plasma 41, Technology Plasma 54 Kompressor (with built-in compressor), Superior Plasma 60HF, Superior Plasma 90HF 
Hypertherm Powermax 30 Manual plasma cutting inverter in an environment of compressed air or nitrogen
ESAB LPH 35 Handy Cut, LPH 50 Power Cut, LPH 80 Power Cut, LPH 120 Power Cut Apparatus manual air-plasma cutting
Telwin Superplasma 62/2, Superplasma 120/3 HF, Enterprise Plasma 160HF
APR 40 APR 60 APR 90 APR 91 APR 140, APR 150, Energocut-180, Energocut-320, Energocut-400 (Concern "Power Engineering") Apparatus and installation of air-plasma cutting (manual and mechanical)
PURM-140-160 PURM, PURM-180MA, PURM-320-PURM 320VA, 400VA, PURM (LLC "Factor")
DSS-51, DSS-1210
Cebora 3100, 6060 / T, 9060 / T, Prof70, Prof122, Prof162
Hypertherm Powermax 45, Powermax 1000, Powermax 1250, Powermax 1650 Inverter plasma cutting (manual and mechanical) in the medium of compressed air or nitrogen
Inverter ESAB rectifiers are designed for air-plasma cutting of steel, aluminum and other metals.
Inverter Plasma Cutters ESAB PowerCut 650 (left) and PowerCut 875 (right)
TABLE. Technical specifications of some models of inverter ESAB Cutting
Name Mark
OrigoCut 35i PowerCut 650 PowerCut 875 PowerCut 1500
Supply voltage (V / Hz) 230 / 50 230 / 50
400 / 50
230 / 50
400 / 50
400 / 50
Maximum current (A) / PV 35 / 35%
27 / 60%
21 / 100%
40 / 40% 60 / 60% 90 / 60%
The range of current adjustment (A) 15–35 10–40 20–60 20–90
The thickness of the cutting of carbon steel (mm) 10 (12) 16 (19) 22 (32) 38 (40)
The thickness of the cutting of stainless steel (mm) 6 (8) 12 (16) 15 (22) 20 (29)
The thickness of the cutting of aluminum (mm) 10 (12) 16 (20) 22 (32) 38 (40)
Weight (kg) 9 25 40 43
Inverter apparatus used for the Hypertherm plasma cutting of steel, aluminum and other materials.

TABLE. Specifications of some inverters Hypertherm Cutting
Inverter plasma cutting machines Hypertherm Powermax 30 (left) and Powermax 1250 (right) 
TABLE. Specifications of some inverters Hypertherm Cutting
Name Mark
Powermax 190c Powermax 30 Powermax 1250 Powermax 1650
Supply Voltage (V) 120, 60Hz, 1ph. 
230, 50/60 Hz, 1ph.
120-230, 50/60 Hz, 1ph. 200-600, 50/60 Hz, 1/3f. 
230-400, 50/60 Hz, 3 phase.
200-600, 50/60 Hz, 3 phase. 
230-400, 50/60 Hz, 3 phase.
Output Current (A) 12 15–30 25–80 30–100
Duty cycle at maximum current 35% 35% 115 
50% 230
60%, 230-600V, 3 phase.
60%, 480V, 1ph. 
50%, 200-208V, 3 phase.
50%, 240V, 1ph. 
40%, 200-208V, 1ph.
80%, 400-600V, 3 phase.
70%, 230-440V, 3 phase.
60%, 200-208V, 3 phase. 
Max.thickness of the manual cutting (mm) 5 10 29 38
Recommended thickness of hand-cut (mm) 3 6 22 32
Max. pierce with a mechanized cutting (mm) 16 19
Plasma-forming gas air from the built-in compressor  air or nitrogen air or nitrogen air or nitrogen
Dimensions (length x width x height) 400 x 216 x 305 356 x 168 x305 586 x 271 x 498 671 x 427 x 655
Weight (kg) 20.9 9 44 61
Apparatus APR (Energocut) Production Concern "Power Engineering" are intended for manual and mechanized air plasma cutting of various metals and their alloys (different conductive materials).
Plasma Cutting Machines APR-90 (left) and ACR-150 (right)
TABLE. Technical characteristics of machines and installations APR manufacturing concern "Power Engineering"
Apparatus and setup Voltage 
supply mapping
(B)
Cutting current (A) MF Max.thickness of cut (mm) Max.thickness of the qualities.cut (mm) Dimensions (length x width x height) Weight (kg)
APR-40 220 25 / 35 100 / 60 8 5 320 x 400 x 625 40
APR-60 380 40 / 60 70 / 60 18 12 535 x 320 x 625 60
APR-90 380 60 / 90 70 / 60 30 20 535 x 320 x 625 90
APR-91 380 60 / 100 80 / 80 35 25 550 x 420 x 820 100
APR-140 380 70 / 130 70 / 60 45 30 550 x 420 x 820 125
APR-150 380 50 / 100 / 150 100 / 100 / 85 50 35 640 x 420 x 820 150
Energocut-180m 380 180 100 56 40 560 x 620 x 980 240
Energocut-180MA 380 70-150 (continuously adjustable) 100 56 40 560 x 620 x 980 240
Energocut-320 380 160 / 320 100 80 (50 - autom. Cutting) 50 620 x 560 x 980 255
Energocut-320BA 380 70-280 (continuously adjustable) 80 80 (50 - autom. Cutting) 50 620 x 560 x 980 255
Energocut-400 380 180 / 360 100 100 (70 - autom. Cutting)  70 1020 x 600 x 940 500
Energocut-400BA 380 70-320 (continuously adjustable) 100 100 (70 - autom. Cutting)  70 1020 x 600 x 940 500

See also:
Plasma Cutter
Plasma Cutting
Plasma Cutting Machines
Plasma Cutting Technology
Plasma Welding

5 comments:

Anna Schafer said...

Once you have this set up, start up Inkscape and check under the Extensions menu for Gcodetools.Jay

Unknown said...

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kunal said...


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jackron said...
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