Why your GMAW machine has no amps knob

Interactive constant-voltage GMAW. Wire feed speed sets the current, voltage sets the arc length, and your hand sets the stick-out that quietly moves the amps. Modelled on 1.2 mm steel wire, Ar/10% CO2 shielding. Switch wire and gas in the sim below.
Fine tuning your amps live in your hand, not on the dial.

The machine

Three things control this arc. Two are knobs. The third is your hand. Move the sliders and watch what the amps do, because there is no amps knob on a GMAW set.

A CV power source holds terminal voltage nearly constant (curve slope around 2 to 3 V per 100 A). The welder presets voltage and wire feed speed. Current is an outcome: it settles wherever burn-off rate equals wire feed speed. Electrode extension is the hidden third input, set by the hand.

contact tip extension arc length CTWD
Wire
Gas
0
amps (outcome)
0
volts
0
arc length mm
Wire feed speed
(current)
Voltage
drag a knob to turn it. Scroll wheel and arrow keys work too
0
extension mm
0
current density A/mm²
0
deposition kg/hr (95%)
0
kJ/mm @ mm/min
spray

The event you just watched takes milliseconds on the real machine, faster than your eye. That is why the arc never looks like it is hunting. No verified published figure exists for the exact recovery time; it varies with current and wire.

For lecturers and industry trainers

This interactive dashboard is built to help you explain to boilermakers, apprentices and other welders how a constant-voltage GMAW machine really behaves. Work the controls in front of the class to show:

  • the effect of wire feed speed, which sets the welding current;
  • the effect of voltage, which sets the arc length;
  • the effect of stick-out, which raises the electrode resistance and drops the current, so small changes in stick-out give the welder fine control over amperage without touching a dial;
  • and how the shielding gas has a significant influence on the threshold current between dip, globular and spray transfer.
GMAW voltage and the self-adjusting arc · 260713 · Graham Fry, Technoweld
The 1.2 mm calibration is the verified baseline; the 1.0 mm and 0.9 mm calibrations are scaled or interpolated from it by wire cross-section and are typical rather than two-point verified. Current density J = I / A, where A is the wire cross-section (pi times r squared). Deposition rate is feed speed times cross-section times steel density times deposition efficiency (Ar/10% CO2 about 95 per cent, Ar/18% CO2 about 90 per cent from spatter losses). Shielding gas also lifts arc voltage and the spray transition current; the Ar/18% CO2 mix needs more volts and a higher current to reach spray than Ar/10% CO2. Gas modifiers are typical values, not two-point verified.