| Model | Performance Parameters |
| Power Options | 6KW |
| Fiber Interface | QBH |
| Spot Size | 2*20 |
| Outer Dimension(mm) | 1300*80*80 |
| Working Distance(mm) | ~18 |
| Operating Wavelength(nm) | 1080 |
| Cooling Type | Water cooling |
| Water Quality Requirements | Pure water |
Internal bores of hydraulic cylinders requiring increased wear resistance and longer service life.
Inner surfaces of bearing housings, bushings, and sleeves for improved hardness and fatigue strength.
Valve bores, pump housings, and mechanical cavities requiring localized laser hardening.
Internal sealing surfaces of oil & gas, chemical, and power equipment to reduce wear and extend maintenance intervals.
Precision inner diameters of molds, dies, and tooling components requiring minimal distortion and high dimensional accuracy.
Tubular and hollow components requiring selective internal surface hardening with low heat input and excellent process stability.
Q1: Can this laser hardening head perform both full-surface and selective area hardening on internal bores?
A1: Yes. The wide-beam configuration allows the beam width to be freely adjusted from 4 mm to 30 mm, enabling both full-surface hardening and selective area hardening on internal cylindrical surfaces. This
flexibility is ideal for components requiring targeted wear protection — such as hydraulic cylinder barrels, pipe interiors, and precision bores — without hardening unnecessary areas.
Q2: Why does laser hardening with this head require no water cooling, oil quenching, or post-hardening tempering?
A2: Unlike conventional induction or flame hardening, this head delivers highly concentrated laser energy with a minimal heat-affected zone (HAZ) . The rapid self-quenching effect of the surrounding base material
eliminates the need for external quenching media or water cooling. No tempering treatment is required after hardening, significantly simplifying production while preserving the component’s original dimensions,
surface roughness, and overall mechanical properties.
Aug 5, 2026
Apr 22, 2026
Apr 22, 2026