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| wave length(nm) | 915±10 |
| output unstablility(%) | <3 |
| Rate(Hz) | 50~5k |
| red light point power(mW) | 0.25~1 |
| laser head parameters | |
| output head mode | QBH |
| fiber core(μm) | 600 |
| Min bend semidiameter(mm) | ≥400 |
| Half angle of beam divergence(rad) | ≤0.22 |
| fiber length(m) | 20 |
| electronic parameters | |
| Voltage | AC380V±38V,50/60Hz, |
| control mode | RS-232/AD |
| other parameters | |
| size (W×H×D)(mm) | 650×950×980 |
| weight(Kg) | <150 |
| temperature(ºC) | 10~40 |
| Hunidity(%) | <70 |
| storage(ºC) | -10~60 |
| Cooling | Water cooling |
| Power consumption | 22KW |

1. The quenched parts are not deformed, the thermal cycle process of laser quenching is fast, medium carbon steel, large shafts
2. It hardly destroys the surface roughness and adopts a thin coating of anti-oxidation protection. Die steel and various dies
3. Laser quenching does not crack, precise and quantitative numerical control quenching, cold work die steel, mold, cutting tool
4. CNC quenching with precise positioning for local, groove and groove quenching Medium carbon alloy steel shock absorber
5. Laser quenching is clean and efficient No cooling medium such as water or oil is required Cast iron material Engine cylinder
6. The quenching hardness is higher than that of the conventional method. The quenched layer has fine structure and good strength and toughness. High carbon alloy steel Large roll
7. Laser quenching is rapid heating and self-excited cooling, without furnace heat preservation and cooling liquid quenching. It is a pollution-free green environmental protection heat treatment process, which can easily perform uniform quenching on the surface of large molds.
8. Because the laser heating speed is fast, the heat affected zone is small, and the surface scanning heating and quenching is used, that is, instantaneous local heating and quenching, so the deformation of the processed mold is small.
9. Due to the small divergence angle of the laser beam, it has a good directivity, and can perform precise local quenching on the surface of the mold through the light guide system.
10. The depth of the hardened layer of laser surface quenching is generally 0.3~1.5mm.
Laser quenching is a quenching technique that uses laser to heat the surface of a material above the phase transition point. As the material cools down, austenite transforms into martensite, thereby hardening the surface of the material. practical application Laser quenching technology can strengthen the surface of various guide rails, large gears, journals, cylinder walls, molds, shock absorbers, friction wheels, rollers, and roller parts. Suitable materials are medium to high carbon steel and cast iron.