OverviewThe IQIEGE 7185 is a large, fully automated metallographic specimen cutting machine designed for research and quality‑control laboratories. It sections metallic and non‑metallic samples (including ceramics and petrographic specimens) and accommodates oversized components thanks to an oversized cutting chamber (nominal pass‑through Φ190 mm). The system integrates PLC control with a touch HMI, automatic speed regulation, automatic shutdown and multiple safety protections. An 11 kW spindle with variable‑frequency stepless speed control provides high torque for large, high‑hardness or irregularly shaped materials. Interactive cutting and an intelligent current feedback system reduce scrap and protect the machine when processing costly or difficult specimens. Typical footprint: ~3 m².
Main Technical SpecificationsCutting Mode: Slash cutting; flat push cutting; interactive cutting
Feed Mode: Continuous feed; pulse feed; swing feed
Cutting speed: 0.03–1 mm/s (adjustment step: 0.01)
Variable‑frequency speed control: 0–1900 rpm
Maximum travel distance: Z-axis: 240 mm; Y-axis: 350 mm; X-axis: 260 mm
Cutting chamber dimensions: 680 mm × 1030 mm
Cutting Disc Specifications: 508 mm × 4 × 38.1 mm
Maximum passage diameter (overview): Φ190 mm
Maximum passage diameter (table): φ185 mm
Cutting power: 11 kW
Power supply: 380 V / 50 Hz
External dimensions (L×W×H): 2005 mm × 1475 mm × 2200 mm
Features / Technical Highlights- Oversized cutting chamber for large castings, profiles and laminated composites
- Multiple cutting modes (slash, flat push, interactive) to match specimen geometry
- Flexible feed options (continuous, pulse, swing) for controlled material removal
- High‑precision, low‑speed cutting range (0.03–1 mm/s, step 0.01) for microstructure preservation
- Variable‑frequency spindle (0–1900 rpm) with 11 kW motor for high torque operations
- PLC control with touch HMI, automatic speed regulation, auto shutdown and multiple safety protections
- Interactive cutting and intelligent current feedback to minimize scrap and prevent overload
- Large parameter memory for repeatable processes and complex specimen programs
- Footprint suitable for high‑end metallography and materials research laboratories (~3 m²)