Hydraulic Broaching Systems | Complex internal geometries (engine blocks, gears) | Cutting Force: 120 kN (Industry Standard) ▲150 kN (Our Base) ▲220 kN (Our Advanced, ISO 2372) Precision: ±0.1mm (Industry) ▲±0.05mm (Base) ▲±0.02mm (Advanced, ISO 2768) Noise Level: 85 dBA (Industry) ▲80 dBA (Base) ▲75 dBA (Advanced, ISO 11203) | High production efficiency, capable of intricate shapes, quieter operation (quieter than industrial drills) | Higher upfront cost, requires skilled setup, limited to specific geometries |
CNC Milling Machines | Precision 3D components (aerospace, molds) | Spindle Speed: 8000 RPM (Industry Standard) Tool Change Time: 5s (Industry) | Extreme flexibility, high accuracy (±0.01mm), automated workflows | High maintenance costs, requires skilled operators, slower for large batches |
Laser Cutting Machines | Sheet metal/plastic cutting (automotive, signage) | Cutting Speed: 2 m/min (Industry Standard) Accuracy: ±0.1mm (ISO 2768) | Minimal material waste, rapid setup (no tool changes), non-contact process | Limited to thin materials (<20mm), energy-intensive, reflective materials problematic |
Electric Discharge Machining (EDM) | Conductive materials (electrodes, dies) | Discharge Energy: 10 J/pulse (Industry) Surface Finish: Ra 1.6 μm (ISO 1302) | Works on hard materials (e.g., titanium), no mechanical stress | Slow process (hours/day), requires conductive materials, post-processing often needed |
Conventional Broaching Machines | Simple internal shapes (keyways, splines) | Cutting Force: 100 kN (Industry) Production Rate: 50 parts/hour (ISO 9283) | Lower cost, simpler operation, high volume production | Limited to basic geometries, less efficient for complex parts, tooling costs add up |
Modular Machine Tool Systems | Flexible manufacturing (automotive, electronics) | Modular Units: 5+ (Industry) Setup Time: 2 hours (Industry) | Rapid reconfiguration, reduced downtime, space-efficient layouts | Complex maintenance, higher initial investment, requires advanced planning |