Choosing the right gas nozzle length for MIG (GMAW) welding

Welding ABC

Choosing the right gas nozzle length for MIG (GMAW) welding

7 November 2023

Gas nozzle length is an important feature in a MIG welding torch because nozzle length has an effect in contact tip heat load, contact tip spatter protection and welding current.

Visa-Valtteri Monto

If the distance between the contact tip and work piece is too short, the contact tip is prone to failure because of extreme radiation heat from the weld puddle and welding arc. The contact tip and gas nozzle are also prone to spatter sticking to them due to high heat, and spatter sticking to the contact tip hole can cause contact tip burnback. In general, if the contact tip to workpiece distance is too short, pulse welding processes might not work correctly.

A longer nozzle will extend the contact tip to workpiece distance, which leads to a decrease in welding current (most MIG welding processes are constant voltage processes, and therefore the power source will keep the voltage constant as the current is allowed to change). The reduction of welding current is greater if the welding wire has lots of electrical resistance, as is the case with stainless steel wires. On the other hand, aluminum and its alloys have low electrical resistance, and therefore electrode extension length has little effect in welding current.

Kemppi offers three gas nozzle lengths and you can choose the model that best suits your application. The short gas nozzle model extends 1.5 mm over the end of the contact tip, the medium nozzle extends 3.5 mm over the contact tip, and the long model has 5.5 mm of extension. The medium nozzle model comes as standard equipment on our torches.

Aluminum welding

Aluminum and its alloys have low electrical resistance and therefore extending the contact tip to workpiece distance does not decrease welding current significantly. Kemppi recommends using the long gas nozzle model for all aluminum welding applications to protect the contact tip from radiative heat and welding spatter.

Ferritic steel welding

Ferritic steel welding wires (also known as mild steels or structural steels) have more electrical resistance than aluminum wires, but not as much as stainless steel wires. When welding thin plates with thin wires, it is recommended to use the short gas nozzle or the medium nozzle model, depending on preference, to ensure good weld puddle control as contact tip to workpiece distance can be kept short and welding current is high.

For medium-power and all-round applications, the middle-length gas nozzle serves as a balancing point between spatter protection and heat protection for the contact tip. A long nozzle is recommended for high-power applications and flux core wire welding. The long nozzle model can also be beneficial in tack welding if the welder prefers to tack by pushing the gas nozzle to the plates in fillet welding. Flux cored wires require the stick out length to be long enough to pre-heat the wire to evaporate any moisture in the core and burn away any lubricants used in wire manufacturing.

Stainless steel welding

Stainless steel wires have high electrical resistance, which causes the welding current to decrease sharply when contact tip to work piece distance is increased. In low- to medium-power applications, a contact tip distance that is too long causes the weld puddle to not flow correctly, which compromises the weld bead appearance and weld penetration. The short gas nozzle model is recommended for most stainless steel welding for better weld puddle control. In high-power stainless steel welding, the medium gas nozzle model can be beneficial, as it provides better spatter and heat protection for the contact tip.

Take a look at the Flexlite welding torch range here

MIG/MAG welding torch consumables you are able to find here

Visa-Valtteri Monto
Author

Visa-Valtteri Monto

Welding Engineer, Kemppi Torches & Aftermarket. International Welding Engineer (IWE), who has experience in developing welding characteristics of GMAW welding machines and GMAW welding torches. Has been working with welding torch development and troubleshooting since 2019. Interested in helping out customers thrive by making Kemppi products even better.

More blog posts

The heat resistance of the HD welding gun makes a welder's work more efficient

The heat resistance of the HD welding gun makes a welder's work more efficient

When the workload gets heavy and the days get longer, both welders and their welding guns heat up. Emotions can be cooled down with a cup of coffee, but the welding gun only cools down by taking regular breaks. To keep these breaks as short as possible, optimizing the thermal conductivity and heat resistance of the welding gun are important in daily work.

Manual welding

MIG/MAG welding arc types

MIG/MAG welding arc types

In MIG/MAG welding, the mode of material transfer between the filler wire and the weld pool changes in line with the welding current.

Welding ABC

The best way to eliminate spatters

The best way to eliminate spatters

When it comes to welding gun performance, cooler is definitely better. But is there an optimal temperature for a water-cooled welding gun? And how do you keep the gas nozzle and contact tip spatter-free? Let's find out by answering a few questions.

Welding ABC

How Rapid Welding and Kemppi Built a Partnership That Lasts

How Rapid Welding and Kemppi Built a Partnership That Lasts

Rapid Welding has worked with Kemppi since the company opened in 1990. Co-founder and Managing Director Roy Edwards highlighted the principles behind that 36-year partnership, from choosing the right welding solution and supporting equipment throughout its life to addressing the skills shortage and finding the right place for automation and laser welding.

Welding automation, Manual welding, Welding ABC

Safety that keeps up with welders' challenges and changing risks

Safety that keeps up with welders' challenges and changing risks

Welding safety has become increasingly demanding. The hazards at the arc remain constant, but modern working conditions mean exposure can accumulate over longer shifts and in tighter indoor spaces. As a result, welding PPE needs to be treated as both protection for the welder and proof of compliance. At Kemppi, welding safety PPE is designed and validated in practice through clear requirements, welder-led feedback, and verified compliance with EU PPE Regulation 2016/425, CE marking processes, and relevant EN standards.

Safety, Welding ABC

Eurosatory 2026 And the Future of Defence Manufacturing

Eurosatory 2026 And the Future of Defence Manufacturing

Eurosatory 2026 highlighted a clear shift in modern defence manufacturing. While defence systems are becoming more digital, networked, and autonomous, their foundation remains physical. From armoured vehicles and artillery to industrial resilience, welding quality, steel structures, and production discipline remain paramount to defence readiness.

Digitalization, Innovation

Subscribe to our newsletter and be among the first to know the latest from Kemppi.

Select contact type

By subscribing, you agree to receive marketing emails from Kemppi.

The forerunners of arc welding

Kemppi is the design leader of the arc welding industry. Kemppi is the design leader in the arc welding industry. We are committed to boosting the quality and productivity of welding by continuous development of the welding arc and by working for a greener and more equal world. Kemppi supplies sustainable products, digital solutions, and services for professionals from industrial welding companies to single contractors. The usability and reliability of our products is our guiding principle. We operate with a highly skilled partner network covering over 70 countries to make its expertise locally available. Headquartered in Lahti, Finland, Kemppi employs over 650 professionals in 16 countries and has a revenue of 209 MEUR in 2023.

Kemppi – Designed for welders

Copyright © 2025 Kemppi Oy