| Productname | Robotic Surface Finishing System |
| Precision | ±0.1 mm |
| Robottype | 6-axis articulated robot |
| Dimensions | 2000 mm x 1500 mm x 1800 mm |
| Delivery Time | 90 working days |
| Safetyfeatures | Emergency stop, safety light curtains, collision detection |
| Powersupply | 220V AC, 50/60 Hz |
| Payment Terms | L/C,D/A,D/P,T/T |
| Softwarecompatibility | Supports integration with CAD/CAM systems |
| Finishingtools | Sanding pads, polishing wheels, abrasive brushes |
| Cycletime | Variable, typically 30-120 seconds per part |
| Materialcompatibility | Aluminum, steel, titanium, composites |
| Payloadcapacity | 10 kg |
| Supply Ability | 200-300 sets per year |
| Automationlevel | Fully automated with programmable recipes |
| Application | Surface finishing and polishing of metal and composite parts |
| Controlsystem | PLC with teach pendant interface |
| Packaging Details | wooden cases |
| Reach | 1500 mm |
| Model Number | KS-5000 |
| Certification | CE |
| Place of Origin | China |
| Brand Name | Kingstone |
View Detail Information
Explore similar products
Automated Surface Correction Robotic Grinding Polishing Deburring System
Digital Manufacturing Solution Robotic Surface Finishing System For Metal Parts
Automated Robotic Irregular Component Finishing System For Plumbing Fittings
Custom Design Robot Grinding Polishing Unit Automation Solution High Accuracy
Product Specification
| Productname | Robotic Surface Finishing System | Precision | ±0.1 mm |
| Robottype | 6-axis articulated robot | Dimensions | 2000 mm x 1500 mm x 1800 mm |
| Delivery Time | 90 working days | Safetyfeatures | Emergency stop, safety light curtains, collision detection |
| Powersupply | 220V AC, 50/60 Hz | Payment Terms | L/C,D/A,D/P,T/T |
| Softwarecompatibility | Supports integration with CAD/CAM systems | Finishingtools | Sanding pads, polishing wheels, abrasive brushes |
| Cycletime | Variable, typically 30-120 seconds per part | Materialcompatibility | Aluminum, steel, titanium, composites |
| Payloadcapacity | 10 kg | Supply Ability | 200-300 sets per year |
| Automationlevel | Fully automated with programmable recipes | Application | Surface finishing and polishing of metal and composite parts |
| Controlsystem | PLC with teach pendant interface | Packaging Details | wooden cases |
| Reach | 1500 mm | Model Number | KS-5000 |
| Certification | CE | Place of Origin | China |
| Brand Name | Kingstone | ||
| High Light | Flexible Robotic Surface Finish System ,Finish System for High Mix Manufacturing ,High Mix Robotic Surface Finish System | ||
The Flexible Robotic Surface Finish System is engineered for manufacturers who cannot afford to choose between versatility and precision. Purpose-built for high-mix, variable-volume production environments, this system delivers automated deburring, grinding, polishing, and surface conditioning across dozens of part families — without dedicated fixturing, manual reprogramming, or production interruptions between changeovers.
Where conventional robotic finishing cells are optimized for single-part high-volume runs, this system is architected from the ground up for complexity: multiple materials, multiple geometries, multiple surface specifications — all managed intelligently within one compact workcell footprint.
For job shops, contract manufacturers, Tier 2 automotive suppliers, industrial equipment makers, and precision component producers, this is the finishing system that scales with your order book, not against it.
Traditional finishing automation breaks down in high-mix environments because:
This system eliminates all four constraints through adaptive sensing, software-defined flexibility, and modular tooling architecture.
Onboard 3D vision scans each incoming part and generates or selects the optimal finishing path in real time. New part variants are onboarded via CAD import or teach-and-confirm — no full reprogram required. Path library scales to 500+ active part programs with instant recall.
Automatic tool selection and force profile switching based on detected part material and surface specification. The system distinguishes aluminum die-casting flash from forged steel burrs and adjusts spindle speed, feed rate, and contact force accordingly — within the same production sequence.
Pneumatic quick-change end-effector system achieves tool swap in under 6 seconds. Supports simultaneous mounting of up to 8 tool types (flap wheel, wire brush, abrasive belt, polishing pad, carbide burr) accessible within a single cycle without cell interruption.
With the offline programming module, a new part can be onboarded in 2-4 hours using its CAD model. Without offline programming, teach-and-confirm onboarding typically takes 4-8 hours for a new geometry family. Either way, no new fixtures or hardware changes are required.
Yes — this is precisely the design intent. The system's cost-per-part is driven by its consistent cycle time, not batch size. Small batches incur no changeover premium. Customers routinely run single-piece prototype finishing alongside production batches on the same shift.
Material-specific process parameters (spindle speed, force profile, tool type) are stored per part program and selected automatically via vision identification. The tool magazine holds multiple tool types simultaneously — the robot selects the correct tool as part of the programmed sequence with no operator input.
Company Details
Business Type:
Manufacturer
Year Established:
2010
Total Annual:
150000-1000000
Employee Number:
80~105
Ecer Certification:
Verified Supplier
/* Unique root class for encapsulation */ .gtr-container-kngstn1 { font-family: Verdana, Helvetica, "Times New Roman", Arial, sans-serif; color: #333; line-height: 1.6; padding: 16px; max-width: 960px; margin: 0 auto; box-sizing: borde... /* Unique root class for encapsulation */ .gtr-container-kngstn1 { font-family: Verdana, Helvetica, "Times New Roman", Arial, sans-serif; color: #333; line-height: 1.6; padding: 16px; max-width: 960px; margin: 0 auto; box-sizing: borde...
Get in touch with us
Leave a Message, we will call you back quickly!