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Fangen Sie an, gutes Geld zu verdienen mit unserer NEUEN WOBBLE-PRO-Plus-Serie

NEU und VIEL BESSER: Wobble 6-PRO-Plus

Wobble 6-PRO+: Unser BESTES Handheld-Laserschweißgerät mit voller Schweißkontrolle im Brenner


Leicht, universell und sehr flexibel

Ergonomischer Hand-Laserschweißbrenner mit einstellbarem Taumeldurchmesser von 0,2 - 3 mm


Der einfachste und leichteste Schweißbrenner mit Taumeldurchmesserverstellung.

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Unser bestes tragbares Laserschweißgerät

Advanced High Tech - 6 programmierbare Modi - 2 Servomotoren - volle Kontrolle über den Brenner


Einstellbarer Taumeldurchmesser von 0,2 - 4 mm


Einfach unser bestes und meistverkauftes Laserschweißgerät

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Erste voll einstellbare 2-Achsen-Taumel-Schweißbrenner

Intelligentes Laserschweißgerät



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Superior but affordable Handheld Fiber Laser Welding Machine

Lasermach Handheld Wobble Fiber Laser Welding Machine is a new type high-power, high-end continuous welding tool which adopts a high-quality fiber laser source to produce a stirring fiber optic beam. After transmission processing, the light is focused on the workpiece to achieve continuous welding. It avoids the two thresholds of thermal strain and post-treatment, and is environmentally friendly and pollution-free, greatly improving the joint strength and quality of welding.
Replacing the previously fixed light path with a hand-held type with wobbling function, not only facilitates the welding of molds, advertising characters, kitchen utensils, doors and windows, etc., but also makes laser welding possible in outdoor operations.

Wobble Laser Welding is SOO MUCH Better!

Although the laser was only invented in 1960, it quickly became established as a production process and by the 1980s was starting to be used in high volume manufacturing.  Recent advances which have improved the beam quality and efficiency of lasers, make the laser an even more advantageous solution to high volume or automated industrial joining.

Weld quality and consistency

Laser welding enables the quality and consistency of welding to be readily controlled and consistently maintained.  Since the laser head makes no contact with the workpiece and there is no electrode which can become worn, eroded or damaged there is no need for a tool change where the electrode needs to be reground or sharpened, as is the case with TIG.  The lack of electrode dressing in laser welding results in higher uptime and longer time between maintenance interventions.  Also, there is no risk of contamination of the weld material with Tungsten from the TIG electrode tip when striking the arc.

Lower heat input

With laser welding the heat input to the metal being welded is lower which means there is a smaller heat affected zone (HAZ) and the distortion of the assembly is vastly reduced making complex and accurate assembly more achievable, especially in an automated setting.  In addition, the lower heat input means that a weld can be placed close to sensitive electronics or other heat-sensitive materials without risk of damage or failure.  An example of this is in cardiac pacemakers and defibrillators where the external weld seam is directly above a heat-sensitive battery and micro-electronics which cannot withstand a temperature over 80 degrees C.

Throughput – higher welding speed

Weld speeds are generally higher with laser welding, especially with modern high power continuous wave (CW) fibre lasers.  A high welding speed sometimes means that the motion system, for example the CNC system or robot contouring speed, is the limiting factor on cycle time rather than the process.

Cost per metre of weld

In processes where throughput is high it is common to find that the laser solution is more efficient and results in a lower cost per metre of weld.  Interestingly, there are processes which our wobble welding achieves deeper penetration and higher welding speeds.  This Wobble process typically use a combination of laser welding to heat the metal efficiently to melting point and rotation of the welding beam to provide deposition of droplets into the weld pool and enhanced penetration and weld strength over either process as a stand-alone procedure.

No finishing of the weld

With inert gas shielding, a laser weld in stainless steel or aluminium normally requires no post-processing (grinding or dressing) after welding, the weld finish is bright and oxide free and can be typically coated or painted without further cleaning steps.

Access difficult areas

Since the laser beam is a “line of sight” process, the laser can pass through gaps in a structure to weld areas from the rear, where it would not be possible to introduce a TIG electrode.  Using a camera to view through the laser optics of robot or cobot versions, it is easy to align the beam to a precise feature and perform welds in difficult-to-reach parts of the structure.

What about gaps?

One disadvantage of laser welding is that it tends to rely on good contact and minimum gap between parts to be joined, but with the wobble solution, this disadvantage disappeared completely.  With our laser Wobble process there is no need anymore to ensure that gaps are minimised or avoided to ensure good results.  With in plus the addition of our digital wire feed, which adds a certain complexity to the process, it is possible to fill gaps or build up areas for additional strength.

Far More Cost-savings

Respect the enviroment better than any other welding machine

The small footprint design to make it a portable laser welder, but its electro-optical conversion efficiency is higher than 35%, and it is maintenance-free. ( laser source is designed to resist more than 100.000, hours lifetime) It is cost-effective and far superior to other types of lasers of the same power. Adopt international standard optical fiber QBH output head and international standard serial port controls.  The chiller is installed with a filter, which is safe and environmentally friendly, 4% more energy-saving and more durable, and stable working performance with longer service time than before.

Full CE Certified