High Pressure Robotic Waterjet Cutting System

High Pressure Robotic Waterjet Cutting System

It has the advantages of no HAZ(Heat Affected Zone), high precision, high flexibility,3D capability and no pollution.

There are various applications from different industries you can use it for, such as aerospace material processing, metal processing and automobile manufacturing, as well as stone, tile and glass.

Robot Flexible Architecture

Redefines the modularity and flexible structure of high-pressure robotic waterjet cutting machines.  

The hardware and software architecture design of the robot system is reconfigurable, scalable and adaptable, and can quickly respond to different task requirements or environmental changes through module replacement, parameter adjustment or functional reorganization.

Modularized Water Tank Design

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Robot+Additional Axis Expands Cutting Space

By adding 1-3 external additional axes to the standard 6-axis industrial robot, the cutting range can be expanded to achieve seamless cutting of oversized parts..

High Pressure Robotic Waterjet Cutting System

Configured with Different Waterjet Accessories

Automatic Continuous Abrasive Metering & Feeding System

The automatic continuous abrasive garnet metering feeding system consists of standard continuous garnet feeding and quantitative garnet feeding tanks, achieving continuous online garnet feeding work and efficiently and accurately completing cutting operations.

Abrasive and Water Separation System

To separate abrasive from the water during cutting, through gravity settling, centrifugal effect and filtration etc.

High Precision Accessory Equipment

The position of the cutting head can be monitored in real time by a magnetic scale to correct cutting errors; or a high-definition camera or laser scanner can be used to automatically identify the contour of the workpiece and adjust the cutting path.

On a Computer with the Advanced Offline Software

The offline programming function of high-pressure waterjet cutting refers to the pre completion of cutting path planning, process parameter settings, and other operations on a computer through dedicated software, generating processing programs that can be directly executed by waterjet cutting machines without relying on real-time on-site debugging.Offline programming would help you improve the efficiency and be able to cut parts of complex shapes.

Visual Recognition

Quickly generate models to optimize cutting paths and adapt to complex shapes

Characteristics of Robot Vision