Zhejiang Kingstone Robot & Technology Co., Ltd.
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Robotic Automotive Grinding Polishing Machine For Aluminum Die Cast Motor Housings

Robotic Automotive Grinding Polishing Machine For Aluminum Die Cast Motor Housings
Place of Origin:China
Brand Name:Kingstone
Certification:CE
Minimum Order Quantity:1
Price:65000-85000
Standard Packaging:wooden cases
Delivery Time:2.5 months
Payment Terms:T/T
Supply Ability:5sets per month
Product Details
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Automotive Parts Grinding Polishing Machine

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Aluminum Die Cast Grinding Polishing Machine

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Motor Housing Grinding And Polishing Machine

Application Industry: Automotive Parts Manufacturer
Material: Aluminum, Brass, Metal,Leatherl,etc
Key Selling Points: Easy To Operate, High Safety Level, Eco-Friendly, High Rigidity, High-Accuracy
Polishing Work Piece Material: Copper Parts,zinc Alloy, Aluminum Alloy, ABS Plastic
After-Sales Service Provided: Engineers,Online Support,Video Technical Support
Name: Robotic Deburring Machine
Application: Automotive Surface Finishing
Grinding Method: Abrasive Grinding
Polishing Method: Mechanical Polishing
Power Supply: AC 220V/380V
Product Description
Detailed Specifications & Features
Robotic Automotive Grinding And Polishing Machine For Aluminum Die-cast Motor Housings
Precision Redefined: 6-Axis Automatic Robotic Grinding & Deburring Solution for Automotive Castings
The Digital Artisan for High-Volume Production

Upgrade your automotive powertrain and structural production lines with the Delin Intelligent Robotic Grinding Cell. Specifically engineered for high-complexity metal castings—such as gearbox housings, transmission cases, and engine blocks—this system replaces inconsistent manual labor with the tireless precision of a "Digital Artisan."

In an industry where a single missed burr or a microscopic parting line irregularity can lead to assembly failure or compromised oil seals, our robotic solution delivers the deterministic quality required by Tier-1 suppliers and global OEMs like Stellantis and Nemak.


Core Technology: The Haptic Edge
  • Active Force Control (AFC): Unlike conventional "blind" robots following a static path, our system "feels" the metal surface. Using millisecond-level force feedback, it maintains a constant pressure (±0.1N), ensuring the complete removal of heavy flash and parting lines without gouging the sensitive aluminum or alloy substrate.
  • 6-Axis Dexterity: Integrated with industrial-grade arms (Fanuc/Kuka/ABB), the system effortlessly navigates the deep cavities, internal ribs, and complex 3D contours of modern automotive housings that manual tools simply cannot reach consistently.
  • Preston Equation Logic: Our path planning is rooted in the physics of material removal. By maintaining constant pressure and tangential velocity, the system ensures a perfectly homogeneous surface texture, vital for downstream sealing and aesthetic standards.
Robotic grinding machine processing automotive housing components
Key Benefits: Safety Meets Profitability
  • Unrivaled Consistency: Achieve a 100% uniform finish across every batch. The system eliminates the "Monday vs. Friday" quality gap, ensuring the 10,000th part is an identical clone of the first.
  • Eco-Friendly & Safe (HSE): Automotive grinding creates hazardous metallic dust and high-decibel noise. Our fully enclosed sanctuary features an integrated high-vacuum dust extraction system, capturing 99.5% of particles at the source to ensure a clean, breathable factory environment.
  • High ROI: One robotic cell typically replaces 3 to 5 skilled manual operators. With 24/7 autonomous capability and reduced scrap rates, the payback period is often achieved within 12 to 18 months.
Close-up view of robotic grinding process on automotive component
Technical Specifications
Feature Details
Robot Type 6-Axis Heavy-Duty Industrial Robot (Payload 20kg - 210kg)
Surface Finish Capable of Ra < 0.8μm (or specific deburring standards)
Control System PLC + Real-time Haptic Force-Feedback Logic
Tooling Multi-head Tool Changer (Milling, Grinding, Deburring)
Cycle Time 45 - 90 seconds (Highly dependent on part complexity)
Safety Standard CE Certified, ISO 9001, ATEX Optional (for explosive dust)
Finished automotive housing components after robotic grinding process
Strategic FAQ for Decision Makers
Q1: How does a robotic system handle the inconsistent flash found in raw castings?
A: This is where Active Force Control is superior. While a manual worker might over-grind or under-grind depending on fatigue, our robot senses the resistance of the flash. If the parting line is thicker than expected, the robot senses the extra resistance and adjusts its Z-axis depth in real-time to maintain a constant material removal rate (MRR).
Q2: Do we need specialized robotic engineers to program the machine for new housings?
A: No. We prioritize Operational Openness. We offer Offline Programming (OLP), allowing your engineers to generate polishing paths directly from CAD files (.STEP/.IGS). For minor adjustments, an intuitive "Teaching Mode" allows a standard technician to update the system in just a few days.
Q3: How does the system handle abrasive wear over a 24-hour shift?
A: We integrate Automatic Abrasive Wear Compensation. The system periodically measures the diameter of the grinding wheel or the thickness of the belt and automatically recalibrates the robot's path to compensate for the wear. This ensures the first part of the shift looks exactly like the last.
Q4: Can the cell handle "difficult" materials like Magnesium or Titanium?
A: Absolutely. We offer specialized configurations, including fire-suppression systems for flammable magnesium dust and high-torque spindles for tough titanium alloys, ensuring the highest level of industrial safety and finish quality.
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