| Product Type | small home appliances |
| Delivery Time | 2.5 months |
| Versatility | Can Polish Various Shapes And Sizes |
| Condition | New |
| Payment Terms | T/T |
| Compact | Small And Space-saving Design |
| Control System | Programmable Logic Controller (PLC) |
| Safety | Safe Operation |
| Supply Ability | 5sets per month |
| Function | polishing |
| Application | Surface finishing and polishing of metal, plastic, and composite parts |
| Packaging Details | wooden cases |
| Model Number | KS |
| Certification | ce |
| Brand Name | Kingstone |
| Place of Origin | China |
View Detail Information
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Product Specification
| Product Type | small home appliances | Delivery Time | 2.5 months |
| Versatility | Can Polish Various Shapes And Sizes | Condition | New |
| Payment Terms | T/T | Compact | Small And Space-saving Design |
| Control System | Programmable Logic Controller (PLC) | Safety | Safe Operation |
| Supply Ability | 5sets per month | Function | polishing |
| Application | Surface finishing and polishing of metal, plastic, and composite parts | Packaging Details | wooden cases |
| Model Number | KS | Certification | ce |
| Brand Name | Kingstone | Place of Origin | China |
| High Light | Unmanned Buffing Production Line Robotic Machine ,Robotic Machine for Brass Hardware ,Brass Hardware Buffing Production Line | ||
The Unmanned Buffing Production Line Robotic Machine for Brass Hardware is an integrated finishing system designed for manufacturers moving from individual polishing stations toward highly automated production.
The line combines robotic buffing, automatic part handling, programmable processing, workpiece positioning, and production transfer into one coordinated system. It is particularly suitable for repetitive brass hardware production where manufacturers need continuous processing with less operator intervention.
Instead of manually loading, polishing, transferring, and unloading every component, the production line can automate multiple stages of the buffing workflow and create a more connected manufacturing process.
Traditional brass polishing factories often operate several independent buffing stations. Parts must be manually transported between processes, creating additional handling and waiting time.
An unmanned robotic line connects these operations into a continuous workflow: Automatic Feeding → Part Positioning → Robotic Buffing → Process Transfer → Finished Part Unloading
Depending on the project, the line can integrate:
The final configuration is developed according to the customer's brass hardware and production requirements.
The robotic buffing line can be customized for different brass components requiring decorative surface finishing. Typical applications include:
Different robotic programs can be developed according to product geometry and buffing areas. The system is especially valuable for factories producing standardized brass products in medium or large batches.
Traditional buffing requires experienced operators to continuously control the workpiece against the polishing wheel.
Solution: Robotic processing transfers repetitive buffing movements to programmable automation, allowing employees to focus on production supervision, inspection, material preparation, and equipment management.
Moving components manually between several finishing stations adds non-value-added work.
Solution: Automated transfer and handling systems can connect different processing stages and reduce unnecessary manual movement.
Adding more manual polishing capacity normally requires additional workers, machines, and floor space.
Solution: An integrated robotic production line provides a scalable approach for manufacturers planning higher-volume brass hardware production.
Buffing operations may generate dust, noise, and polishing compound residue.
Solution: Robotic cells can isolate more of the active buffing process within enclosed production areas and can be integrated with appropriate dust extraction equipment.
The value of an unmanned line comes from the coordination of the entire process rather than simply adding a robot to a polishing wheel. The production concept can be developed around:
This makes the system suitable for brass hardware manufacturers planning to build a more automated and digitally controlled finishing department.
The system can significantly reduce direct manual involvement in repetitive buffing and handling operations. However, operators are still normally required for production supervision, material replenishment, quality inspection, maintenance, tool replacement, and safety management.
The system can be developed for suitable door hardware, faucet components, valves, sanitary fittings, furniture hardware, locks, handles, and other repeat-production brass parts.
Yes. Depending on the product, multiple robotic buffing stations can be arranged for different finishing stages.
Transfer methods may include industrial robots, conveyors, rotary systems, automatic feeders, or customized handling mechanisms depending on the workpiece.
Automatic compound application can be integrated into suitable configurations to support continuous robotic buffing.
Company Details
Business Type:
Manufacturer
Year Established:
2010
Total Annual:
150000-1000000
Employee Number:
80~105
Ecer Certification:
Verified Supplier
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