| Workpiecesizerange | Suitable for various automotive parts |
| Delivery Time | 2.5 months |
| Polishingmethod | Mechanical polishing |
| Application | Automotive surface finishing |
| Automationlevel | Fully automated |
| Robottype | Industrial robotic arm |
| Payment Terms | T/T |
| Dimensions | Customizable based on application |
| Supply Ability | 5sets per month |
| Grindingmethod | Abrasive grinding |
| Precision | ±0.01 mm |
| Packaging Details | wooden cases |
| Operatingspeed | Adjustable, typically 0-1000 RPM |
| Productname | Robotic Automotive Grinding and Polishing Machine |
| Materialcompatibility | Metal, plastic, composite surfaces |
| Model Number | KS |
| Certification | ce |
| Brand Name | Kingstone |
| Place of Origin | China |
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Product Specification
| Workpiecesizerange | Suitable for various automotive parts | Delivery Time | 2.5 months |
| Polishingmethod | Mechanical polishing | Application | Automotive surface finishing |
| Automationlevel | Fully automated | Robottype | Industrial robotic arm |
| Payment Terms | T/T | Dimensions | Customizable based on application |
| Supply Ability | 5sets per month | Grindingmethod | Abrasive grinding |
| Precision | ±0.01 mm | Packaging Details | wooden cases |
| Operatingspeed | Adjustable, typically 0-1000 RPM | Productname | Robotic Automotive Grinding and Polishing Machine |
| Materialcompatibility | Metal, plastic, composite surfaces | Model Number | KS |
| Certification | ce | Brand Name | Kingstone |
| Place of Origin | China | ||
| High Light | Vehicle Component Grinding And Polishing Machine ,Polishing Machine for Vehicle Metal Parts ,Automotive Component Robotic Grinding Polishing Machine | ||
The Vehicle Component Processing Robotic Automotive Grinding and Polishing Machine for Metal Parts is designed for automotive manufacturers and Tier 1/Tier 2 suppliers that need automated surface treatment for production components.
The system combines robotic grinding and polishing technologies to process selected surfaces after casting, forging, welding, or machining. Different processing stations can be configured according to the component material, original surface condition, and downstream manufacturing requirements.
It provides a versatile finishing solution for automotive factories handling repetitive metal component production.
Automotive manufacturing involves many metal parts with different finishing requirements. The robotic system can be applied to suitable:
Applications can be developed for steel, stainless steel, aluminum, cast iron, and other suitable automotive metals.
Different stages of vehicle component production may leave different surface conditions. The robotic cell can be configured for operations such as:
Rough Grinding - removes unwanted material from selected areas.
Deburring - treats burrs remaining after machining or cutting.
Surface Blending - smooths transitions between adjacent areas.
Fine Finishing - prepares selected surfaces for downstream treatment.
Polishing - improves the appearance of visible automotive components.
The required operations can be combined according to the actual part instead of using the same process for every component.
Robotic finishing can be introduced at different points in the automotive production process. For example:
Casting / Forging → Machining → Robotic Grinding & Polishing → Cleaning → Inspection → Coating → Assembly
For welded components:
Forming → Welding → Robotic Finishing → Surface Treatment → Inspection
This allows manufacturers to place automated finishing exactly where secondary surface processing is required.
A suitable robotic finishing solution should consider more than the workpiece shape. During project evaluation, key factors include:
Based on this information, the robot, tooling, fixture, positioner, and processing sequence can be configured for the actual production environment.
The system can be evaluated for suitable chassis, drivetrain, engine, suspension, structural, decorative, and other automotive metal components.
Yes. Multiple tools or processing stations can be integrated when the component requires both material removal and finer finishing.
Yes. Suitable processes can be developed for aluminum components using appropriate abrasives, polishing media, and operating parameters.
Please provide part drawings or 3D models, material, dimensions, weight, current manufacturing process, areas requiring grinding or polishing, required finish, and target production capacity.
Company Details
Business Type:
Manufacturer
Year Established:
2010
Total Annual:
150000-1000000
Employee Number:
80~105
Ecer Certification:
Verified Supplier
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