Zhejiang Kingstone Robot & Technology Co., Ltd.
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Fully Auto Robotic Deburring And Polishing Machine For Aluminum Chair Leg

Fully Auto Robotic Deburring And Polishing Machine For Aluminum Chair Leg
Place of Origin:China
Brand Name:Kingstone
Certification:ce
Model Number:KS
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
Highlight:

Fully Auto Robotic Deburring And Polishing Machine

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Deburring Polishing Machine for Chair Leg

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Aluminum Chair Leg Deburring Polishing Machine

Automationlevel: Fully Automated
Robottype: 6-axis Articulated Robot
Function: Automated Deburring And Polishing Of Metal Parts
Productname: Robotic Deburring And Polishing Machine
Deburringmethod: Abrasive Brush Or Grinding Wheel
Optionalfeatures: Vision System For Quality Inspection, Automatic Loading/unloading
Materialcompatibility: Steel, Aluminum, Stainless Steel, And Other Metals
Polishingmethod: Buffing Wheel With Polishing Compound
Safetyfeatures: Emergency Stop, Safety Light Curtains, Protective Enclosure
Product Description
Detailed Specifications & Features
Reduce Manual Rework Robotic Deburring And Polishing Machine For Aluminum Chair Leg
Automated Finishing with Less Secondary Rework

The Reduce Manual Rework Robotic Deburring and Polishing Machine for Aluminum Chair Legs is developed for furniture manufacturers that want to reduce repeated touch-up work after initial surface finishing.

Aluminum chair legs can contain burrs, rough edges, machining traces, joint marks, and localized surface imperfections. If these defects are not treated correctly during the first finishing stage, operators may need to inspect, re-grind, and re-polish the same component.

Robotic deburring and polishing helps create a defined finishing sequence so more parts can move directly to the next production stage.

Robotic deburring and polishing machine processing aluminum chair legs
Focus on First-Pass Finishing

Repeated manual correction increases production time without increasing output. The robotic system can combine several operations into a planned process, including:

  • Edge deburring
  • Sharp-edge refinement
  • Local defect treatment
  • Surface smoothing
  • Joint-area finishing
  • Fine polishing
  • Pre-coating preparation

By addressing known problem areas during the programmed cycle, manufacturers can reduce the amount of secondary touch-up required after inspection.

Designed for Aluminum Furniture Components

The machine is suitable for different aluminum furniture parts, including:

  • Chair legs
  • Table legs
  • Furniture frames
  • Aluminum supports
  • Armrest components
  • Outdoor furniture parts
  • Decorative aluminum profiles
  • Metal furniture accessories

Customized workholding can be developed for long, curved, tapered, or irregular chair-leg designs.

Reduce Common Causes of Rework
Residual Burrs

Missed burrs often require additional manual correction before coating or assembly. Robotic paths can target predefined edges and machining areas.

Uneven Joint Areas

Welded or connected sections may require localized finishing to create a smoother transition with surrounding surfaces.

Incomplete Surface Preparation

Selected areas can receive additional processing before powder coating, anodizing, painting, or decorative finishing.

Repeated Touch-Up

A structured deburring and polishing sequence helps move defect correction earlier in the process instead of relying heavily on final manual inspection and repair.

Close-up view of robotic deburring process on aluminum components
Improve the Furniture Finishing Workflow

The robotic cell can become part of a complete aluminum furniture manufacturing process:

Cutting / Forming → Welding or Machining → Robotic Deburring → Surface Polishing → Inspection → Coating / Anodizing → Assembly

For manufacturers producing repeated chair designs, product-specific programs can define which edges, joints, and surfaces require treatment.

This helps reduce unnecessary processing while focusing robotic finishing on areas most likely to generate rework.

Frequently Asked Questions
Can the machine deburr and polish in one system?

Yes. Different tools or processing stations can be integrated according to the required deburring and polishing sequence.

Can it process long aluminum chair legs?

Yes. Machine layout, fixture design, robot reach, and workpiece positioning can be selected according to the length and geometry of the chair leg.

Can it finish welded areas?

Suitable welded sections can be processed for blending and surface preparation. The exact process depends on weld size and required final appearance.

Is it suitable before powder coating or anodizing?

Yes. The machine can be used for suitable surface-preparation processes before downstream coating or finishing.

How does robotic processing help reduce rework?

Known defect-prone areas can be included directly in the programmed finishing sequence, helping reduce missed burrs and incomplete surface treatment that would otherwise require manual correction.

What information is required for evaluation?

Please provide chair-leg samples or drawings, aluminum grade, dimensions, burr locations, welded areas, current rework problems, required surface finish, and production volume.

Finished aluminum chair legs after robotic deburring and polishing
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