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  • HEAD Robotic Waterjet Cutting System Waterjet Robotic Robot Water Cutting Machine
  • HEAD Robotic Waterjet Cutting System Waterjet Robotic Robot Water Cutting Machine
  • HEAD Robotic Waterjet Cutting System Waterjet Robotic Robot Water Cutting Machine
  • HEAD Robotic Waterjet Cutting System Waterjet Robotic Robot Water Cutting Machine
  • HEAD Robotic Waterjet Cutting System Waterjet Robotic Robot Water Cutting Machine
  • HEAD Robotic Waterjet Cutting System Waterjet Robotic Robot Water Cutting Machine
HEAD Robotic Waterjet Cutting System Waterjet Robotic Robot Water Cutting Machine

HEAD Robotic Waterjet Cutting System Waterjet Robotic Robot Water Cutting Machine

  • 1 - 1 Sets
    $55,000
  • >= 2 Sets
    $35,000

Customization:

Customized logo(Min.Order: 1 pieces)
Customized packaging(Min.Order: 1 pieces)
Graphic customization(Min.Order: 1 pieces)

HEAD Robotic Waterjet Cutting System Waterjet Robotic Robot Water Cutting Machine

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Precision Waterjet Cutting: Utilizes a six-axis robotic arm for high-accuracy waterjet cutting of metals, stone, composites, and other materials, with repeatability of 0.002mm (X/Y axis) and 0.01mm (Z axis).
  • Versatile Automation: Designed for industrial automation tasks such as material handling, complex contour cutting, and multi-axis surface processing, enabling seamless integration into production lines.

Key features

  • 1. Precision Material Construction for Industrial Durability

  • With a high-strength aluminum-and-steel alloy body, this robotic waterjet system ensures structural rigidity and corrosion resistance, outperforming plastic-based competitors in harsh industrial environments.

  • 2. Programmable Control Interface for Seamless Automation

  • Equipped with a multi-program preset control panel, you can automate complex cutting workflows with ease, reducing manual intervention compared to basic manual systems*.

  • 3. Ultra-High Precision Cutting for Critical Applications

  • Achieve repeatability as tight as 0.002mm (X/Y axes) and 0.01mm (Z axis), delivering 50% greater accuracy than standard CNC machines*, ideal for precision metal fabrication.

  • 4. Six-Axis Versatility for Diverse Industrial Tasks

  • With a 6-axis articulated design, adapt to intricate cutting, welding, and material-handling scenarios, making it suitable for both high-volume commercial production and small-batch customization.

  • 5. Global Compliance Certifications for Safe Deployment

  • Backed by CE, ISO, and TUV certifications, this system meets stringent safety and quality standards, ensuring reliable operation in global manufacturing ecosystems.

Product details

HEAD Robotic Waterjet Cutting System Waterjet Robotic Robot Water Cutting Machine

The Robotic Waterjet Cutting System combines precision engineering with advanced automation, featuring a six-axis articulated arm designed for industrial metal cutting tasks. Built with durable aluminum and steel components, it offers repeatability down to 0.002mm in the X-axis, ensuring accuracy in complex applications. Certified to global standards (CE, ISO, TUV), it integrates seamlessly into automated production lines for industries like aerospace, automotive, and manufacturing.

Technical specifications

FeatureSpecificationApplication Scenario
RepeatabilityX: 0.002mm, Y: 0.005mm, Z: 0.01mmPrecision cutting of aerospace components
CertificationsCE, ISO 9001, TUV, SGS, EACCompliance for EU and global industrial use
MaterialAluminum alloy (arm) and steel (base)Withstands heavy-duty industrial environments
Control SystemProgrammable with multi-axis interfaceAutomated assembly line integration
Warranty1 year (extendable via service plan)Coverage for critical system components

Customization guide

Adjustable parameters include:

  • End-effector compatibility (e.g., waterjet nozzle types) to suit material thickness or cutting speed needs.
  • Repeatability optimization via firmware upgrades for ultra-precise applications like medical device manufacturing.
  • Payload capacity adjustments (up to 20kg) for handling heavier tools or materials.

Get inspired

With sub-micron precision and six-axis flexibility, this system empowers industries to automate complex cuts in metals, composites, and ceramics. Whether trimming turbine blades or shaping automotive parts, the robotic arm reduces manual intervention while maintaining unmatched accuracy.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
X-Axis Repeatability0.002mm0.0015mm (+25%)0.001mm (+50%)*
Max Payload15kg20kg (+33%)25kg (+66%)
CertificationsCE, ISO 9001CE, ISO 9001, TUVAll certifications
Speed1m/s1.2m/s (+20%)1.5m/s (+50%)

Supplier's note

  1. Technical Breakthroughs:

    • The Pro Model’s 0.001mm X-axis repeatability (50% better than Base) enables ultra-precise cuts for semiconductor or medical tooling.
    • Aluminum alloy arms reduce weight by 20% compared to steel, enhancing agility without sacrificing durability.
    • TUV-certified safety protocols allow operation in hazardous environments, such as explosive atmospheres.
  2. Version Selection Guide:

    • Base Model: Ideal for SMEs needing cost-effective automation for standard metal fabrication (e.g., automotive panels).
    • Advanced Model: Targets medium-scale manufacturers requiring faster speeds (+20%) and TUV compliance for chemical-resistant environments.
    • Pro Model: Best for high-precision industries like aerospace or electronics, where 50% higher speed and 0.001mm accuracy are critical.

Example Use Case:
With the Pro Model’s 0.001mm repeatability, you can cut intricate turbine blade designs with minimal material waste. Its TUV certification ensures safe operation near flammable gases, while the 1.5m/s speed reduces downtime by 30% compared to traditional CNC systems.

Frequently asked questions

  • Which robotic waterjet cutting system model suits small workshops with limited space?

  • How to clean the waterjet nozzle to maintain precision in cutting tasks?

  • Stainless Steel vs Aluminum: Which cuts better with this robotic waterjet machine?

  • Can the robotic arm's end-effector be customized for specific cutting tasks?

  • Is the waterjet cutting system CE-certified for industrial safety compliance?

  • What's the repeatability accuracy of the robotic waterjet system for mass production?

  • What does the 1-year warranty cover for the robotic waterjet machine?

  • Can the six-axis robotic arm handle complex 3D cutting tasks like curved surfaces?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Precision & AccuracyHigh-precision manufacturing (e.g., aerospace components)Industry Standard: 0.02mm repeatabilityEnsures intricate cuts with minimal error (ISO 10360 compliant)Requires calibration for optimal performance
Our Base: 0.01mm repeatability (▲▲ vs Industry)Doubles precision for delicate tasks like medical device prototypingLimited to mid-tier accuracy demands
Our Advanced: 0.002mm repeatability (▲▲▲ vs Industry)Meets aerospace-grade tolerances (ASTM E543)Higher cost and maintenance complexity

| Certifications & Compliance | Export to EU markets requiring CE compliance | Industry Standard: CE certification only | Meets baseline safety/quality requirements (EU directives) | Limited to regions recognizing only CE standards |
| | | Our Base: CE + ISO 9001 (▲) | Adds international quality assurance for global supply chains | Certification fees increase costs |
| | | Our Advanced: CE + ISO 9001 + TÜV (▲▲) | Full compliance for high-risk industries (TÜV’s rigorous safety protocols) | Requires additional audits |

| Warranty Period | Long-term industrial use with minimal downtime | Industry Standard: 1-year warranty | Standard coverage for basic repairs | No extended support for critical failures |
| | | Our Base: 1-year warranty (same as Industry) | Matches industry norms for cost-sensitive buyers | No differentiation from competitors |
| | | Our Advanced: 2-year warranty (▲) | Doubles coverage for complex systems (e.g., 24/7 operation) | Higher upfront cost |

| Customization Options | Automotive assembly lines needing task-specific tools | Industry Standard: Limited end-effector choices | Cost-effective for standardized tasks | Inflexible for evolving production needs |
| | | Our Base: Modular tool attachments (▲) | Swap tools for welding/painting without full system reconfiguration | Requires basic operator training |
| | | Our Advanced: Fully programmable software (▲▲▲) | Custom algorithms for unique workflows (e.g., 3D contour cutting) | Needs advanced programming expertise |

| Load Capacity | Heavy-duty construction material cutting | Industry Standard: 10kg payload | Suits lightweight materials (e.g., plastics, thin metals) | Struggles with thick steel or composite materials |
| | | Our Base: 15kg payload (▲) | Handles medium-duty tasks (e.g., automotive panels) | Limited scalability for extreme loads |
| | | Our Advanced: 20kg payload (▲▲) | Processes heavy materials (e.g., aerospace alloys) | Larger footprint and higher energy consumption |

| Safety Features | High-risk environments with strict OSHA compliance | Industry Standard: Basic emergency stop sensors | Meets minimum safety requirements | Fails to prevent collisions or overheating |
| | | Our Base: Collision detection (▲) | Stops motion on proximity alerts (ISO 13849-1 compliant) | Requires manual system resets after triggers |
| | | Our Advanced: Real-time thermal monitoring (▲▲▲) | Predictive maintenance alerts and automatic shutdown protocols | Requires IoT infrastructure for data transmission |

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