Ultra-high-pressure waterjet cutting system specifically engineered for universities, R&D centers, and material testing laboratories. Unlike traditional thermal cutting methods, our system utilizes Cold-State Cutting Technology, ensuring zero Heat Affected Zones (HAZ) and preserving the structural and chemical integrity of sensitive materials.
From advanced composites and aerospace alloys to fragile ceramics and bio-materials, the R-Series provides the micron-level accuracy required for the most demanding scientific research and prototyping.
Key Features
Cold Cutting Process: Eliminates thermal stress, warping, or hardening, making it the gold standard for preparing specimens for mechanical property testing (tensile, fatigue, etc.).
Micron-Level Precision: Equipped with high-resolution encoders and a rigid frame to achieve tight tolerances that meet industrial and academic standards.
Lab-Optimized Footprint: Designed to fit into standard laboratory environments with a fully enclosed splash guard and noise-reduction technology.
Material Versatility: Capable of cutting virtually any material—carbon fiber (CFRP), titanium, glass, rubber, and even layered "sandwich" structures without delamination.
Intelligent Software Interface: Open-architecture CNC control compatible with CAD/CAM files, allowing for rapid iteration of complex experimental geometries.
Category,Specification,Details
Working Area (X/Y/Z), 600mm x 600mm x 100mm,Customizable upon request
Positioning Accuracy ,± 0.01 mm,Precision ball screw / Linear motor
Repeatability, ± 0.005 mm,Ensures consistency across test batches
Max Operating Pressure, 420 MPa (approx. 60,000 PSI),Continuous ultra-high pressure
Pressure Range, 50 MPa – 420 MPa,Fully adjustable for delicate materials
Nozzle Orifice Size, 0.15 mm – 0.30 mm,Supports micro-fine abrasive cutting
Cutting Speed, 0.1 – 5,000 mm/min,Material and thickness dependent
Enclosure,Fully Enclosed IP54,Integrated noise & mist suppression
Abrasive Feed System,High-precision
Micro-Feeder,Compatible with 80/120/200 mesh garnet
Power Supply,3-Phase 380V / 220V,Lab-compatible power configurations
Primary Research Applications
Materials Science: Preparation of "dog-bone" specimens and cross-sections of CFRP/GFRP without fiber fraying or resin melting.
Aerospace Engineering: Precision machining of Superalloys and honeycomb structures.
Biomedical Research: Shaping of bio-ceramics, implants, and prosthetic materials (Hydroxyapatite).
Geological Studies: Non-destructive slicing of core samples, minerals, and fragile fossils.
For More Details Please Contact : +48409 : sale2hdwaterjet