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Laser welding – advantages and disadvantages
Laser Cutting vs. Traditional Methods: When Is It Worth Investing in Modern Technology?
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Welding of electromagnetic sheets
In automotive technology, electric motors are increasingly taking over new functions, such as sliding in and out of on-board computer screens and navigation systems,
Protective glasses against laser radiation
Type of equipment: protective glasses against laser radiation Scope of protection: scattered laser radiation in all wavebands Aplications: cutting, welding, marking, engraving, ablation, surface
Laser cutting heads
Head type: laser cutting head Aplications: 2D cutting, 3D cutting, tube and profile cutting, micromachining Tasks: laser beam focusing, precise cutting thanks to head
Laser welding and surfacing heads
Head type: laser welding head Aplications: welding, surfacing Tasks: focusing the laser beam, inspecting the joint before, during and after the process Equipment: weld
Quality control systems
Head type: quality control systems Aplications: cutting, welding, laser surfacing Tasks: Control of head distance from workpiece, control of piercing and cutting process, control
Micromachining
Types of processing: ablation, microdrilling, perforation, structuring Machined materials: metals, plastics, ceramics, semiconductors, paper Advantages: high precision, accuracy, repeatability of machining, no damage to
Laser protection goggles
Type of equipment: laser protection goggles Scope of protection: direct and diffuse laser radiation in the full wavelength spectrum Aplications: cutting, welding, marking and
Smoke and laser dust filtration systems
Type of equipment: laser fume and dust extraction and filtration systems Performance: 80-5000 m3/h Aplications: cutting, welding, marking and engraving, ablation, surface treatment Advantages:
Marking
Types of processing: aser marking (engraving, decolorization, annealing) Machined materials: metals, plastics, ceramics, foils Advantages: ability to apply any shape, high speed and precision,