China Suppliers Factory GR-3000LQ Small Parts Laser Quenching Equipment for Precision Surface Hardening
Core Technical Innovations
Utilizing a high-precision galvanometer scanner and specialized optics, the system delivers a laser spot size as small as 50μm, enabling localized hardening of delicate features such as micro-gears, connector pins, or surgical tool edges without affecting adjacent areas.
AI-powered software dynamically adjusts laser parameters (power, pulse frequency, scan speed) based on real-time thermal imaging, ensuring consistent hardness (55-62 HRC) and controlled case depth (0.1-1.5mm) for materials ranging from stainless steel to titanium alloys.
Quick-change clamping mechanisms and customizable jigs accommodate components as small as 1mm in diameter, reducing setup time by 70% for mixed-batch production.
The laser’s selective energy input eliminates mechanical stress and distortion, critical for preserving the dimensional stability of thin-walled or heat-sensitive parts.
Industry-Specific Applications
Harden micro-connectors, semiconductor tooling, or MEMS components to resist wear and corrosion in high-frequency operations.
Strengthen surgical blades, dental implants, or orthopedic screws with biocompatible coatings for enhanced durability.
Apply wear-resistant layers to miniature gears, escapement mechanisms, or luxury timepiece components.
Improve fatigue resistance of fuel injector nozzles, sensor housings, or transmission micro-gears.
Operational Advantages
Compact footprint (1.5m x 1m) allows integration into laboratory benches or small-scale production lines.
Low-power laser operation (100-500W range) reduces energy consumption by 40% compared to conventional hardening methods.
Eliminates quenching fluids and toxic chemicals, aligning with eco-friendly manufacturing standards.
Smart Automation & Future Readiness
The system features plug-and-play automation with IoT connectivity, enabling remote monitoring, predictive maintenance, and seamless integration into Industry 4.0 workflows. Machine learning algorithms optimize laser paths for complex 3D contours, ensuring uniform hardness even on freeform surfaces.
Sustainability & Cost Savings
By extending the lifespan of high-value micro-components and minimizing material waste, the equipment reduces replacement costs by up to 50%. Its compatibility with recycled alloys and additive repair workflows further supports circular economy initiatives.
Product Characteristics
- 3D CNC operating system
- Small-scale processing range
- Suitable for surface quenching and strengthening of small parts in batches
Product Parameters
| Small parts laser quenching equipment GR-3000LQ | |||
| Model | GR-2000LHD | GR-3000LHD | GR-4000LHD |
| Laser Power | 3kw | 4kw | 4kw |
| Fiber System | 600μm,20m | 600μm,21m | 600μm,20m |
| Laser Quenching lens | GR60LQ | GR60LQ | GR60LQ |
| Spot width | 5-20mm | 5-30mm | 5-40mm |
| Electrical system | Siemens1500 | Siemens1500 | Siemens1500 |
| Motion system | Three-dimensional numerical control | Three-dimensional numerical control | Three-dimensional numerical control |
Line of Production
Frequently Asked Questions
The system features Micro-Focused Laser Technology that delivers a laser spot size as small as 50μm, allowing for high-precision, localized hardening without heat-affecting adjacent areas.
With Adaptive Process Control, the system ensures a consistent hardness of 55-62 HRC and a controlled case depth of 0.1-1.5mm across various materials, including stainless steel and titanium alloys.
It features a Modular Fixturing System with quick-change clamping mechanisms and customizable jigs that can accommodate components as small as 1mm in diameter, reducing setup time by up to 70%.
No. The non-contact efficiency of the laser's selective energy input eliminates mechanical stress and structural distortion, which is essential for preserving the dimensional stability of thin-walled parts.
The system features a zero-waste process that eliminates quenching fluids and toxic chemicals. It operates on a low-power range (100-500W), reducing energy consumption by 40% and lowering replacement costs by up to 50% through extended tool lifespans.
Yes. It offers plug-and-play automation with IoT connectivity for remote monitoring and predictive maintenance. Machine learning algorithms also optimize laser paths for complex 3D contours.

