Zhejiang Kingstone Robot & Technology Co., Ltd.
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Fully Automatic Robotic Polishing Machine Multi Axis For Door Handle Mirror Finish

Fully Automatic Robotic Polishing Machine Multi Axis For Door Handle Mirror Finish
Place of Origin:CHINA
Brand Name:KINGSTONE
Certification:CE
Model Number:KS-50000
Minimum Order Quantity:1
Price:65000-98000 USD
Standard Packaging:WOODEN CASES
Delivery Time:90 WORKING DAYS
Payment Terms:L/C,D/A,D/P,T/T
Supply Ability:200-300 SETS PER YEAR
Product Details
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Fully Automatic Robotic Polishing Machine

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Robotic Polishing Machine for Door Handle

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Door Handle Automatic Polishing Machine

Efficiency: High Efficiency
Feature: Efficient And Flexiable
Robot Brand: FANUC/ABB
Speed: High Polishing Speed
Roughness:
Productname: Robotic Polishing Machine
Powersupply: 220V/50Hz
Application: Polishing
Weight: 350 Kg
Frequency: 50Hz/60Hz
Durability: Long-lasting Performance
Versatility: Can Polish Various Shapes And Sizes
Powerconsumption: 2.5 KW
Product Description
Detailed Specifications & Features
Fully Automatic Robotic Polishing Machine for Door Handle
Consistent Mirror Finish on Complex Geometries

Achieve uniform mirror finishes on lever necks, grips, and rosettes for zinc alloy, stainless steel, and brass door hardware, ready for chrome plating or PVD coating.

Fully automatic robotic polishing machine processing door handles
The Challenge of Door Handle Polishing

Door handles represent one of the most challenging components in architectural hardware to polish consistently. Unlike flat plates or round fittings, lever handles combine multiple complex geometries:

  • Long cantilevered grip sections
  • Tight curved transitions at the neck
  • Visible rosette face surfaces

These three distinct surface conditions exist on a single part, all of which customers interact with daily, making finish quality critically important.

Precision Robotic Solution

Our fully automatic robotic polishing machine is engineered specifically for door handle geometries. The robotic system follows the handle's contours with precisely controlled contact force, ensuring the curved neck receives the same finish quality as the flat grip face.

This eliminates the transition zone issues where manual polishing often leaves waves, flat spots, or burn marks. The result is a plating-ready surface, consistently reproduced part after part, shift after shift.

Diagram showing robotic polishing path on door handle geometry
Why Door Handles Fail at Polishing

Most rejects in door hardware production occur not in the plating tank, but during the polishing stage:

Neck Transition Complexity: Where the grip curves into the rosette or mortise base, the polishing wheel continuously changes contact angle. Manual operators compensate by feel, leading to inconsistent results between operators and throughout shifts.

Material Variation Challenges: Zinc alloy handles feature parting lines and gate residue with inconsistent heights. Fixed-pressure automation over-polishes some parts while under-polishing others. Compliant contact, not rigid contact, is required.

Labor Shortages: Manual polishing is dusty, repetitive work that's increasingly difficult to staff. Experienced polishers are the hardest position to replace in hardware factories, and their skill directly determines plating pass rates.

Close-up view of robotic polishing arm in operation
Frequently Asked Questions
We produce dozens of handle models. Do we need a fixture for every one?
Not necessarily. Models sharing similar geometries can often run on shared fixtures with adjustable locating elements. Send us your drawings and we will group them into the minimum viable fixture set.
Can it run brass and zinc on the same machine?
Yes, but they require different abrasive media and programming. If you regularly process both materials, we recommend configuring stations to minimize changeover time. Share your product mix and we'll propose the optimal layout.
Technical schematic of robotic polishing machine configuration
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