Automatic 1350mm Sheet Metal Deburring Machine | Burr Removal and Edge Rounding
Product Description
Automatic 1350mm Sheet Metal Deburring Machine | Burr Removal and Edge Rounding
Product Introduction
The Automatic 1350mm Sheet Metal Deburring Machine is designed for efficient burr removal, edge rounding and edge finishing of metal sheet parts.
With a maximum working width of 1350 mm, the machine is suitable for processing a wide range of sheet metal components produced by laser cutting, plasma cutting, flame cutting, punching and stamping.
The machine removes sharp edges, burrs and cutting imperfections while providing a smooth and consistent edge finish. The automatic processing system helps improve production efficiency, reduce manual grinding work and maintain consistent finishing quality.
It is an ideal solution for sheet metal fabrication companies looking to automate the deburring and edge finishing process.
Burr Removal and Edge Rounding
After laser cutting, plasma cutting, flame cutting or stamping, metal parts often have sharp edges and burrs that need to be removed before further processing.
The 1350mm Sheet Metal Deburring Machine combines burr removal and edge rounding in an efficient automatic process.
It can:
Remove sharp burrs from cut edges
Smooth rough metal edges
Round sharp edges
Improve edge consistency
Prepare parts for powder coating and painting
Improve operator safety
Reduce manual grinding operations
Suitable for Laser Cut Parts
The machine is particularly suitable for laser-cut sheet metal parts.
Laser cutting can produce fine burrs and sharp edges, especially on stainless steel, carbon steel and aluminum components. The automatic deburring process provides consistent edge finishing across the workpiece.
Typical applications include:
Laser-cut brackets
Mounting plates
Electrical cabinet panels
Machine covers
Automotive components
Metal frames
Flanges
Structural parts
Suitable for Plasma and Flame Cut Parts
The machine can also process parts produced by plasma and flame cutting.
Plasma and flame cutting may produce rough edges, burrs and cutting residues. The deburring and edge rounding process helps improve edge quality and prepares the parts for subsequent manufacturing processes.
Key Features
Maximum working width: 1350 mm
Automatic sheet metal deburring
Burr removal
Edge rounding
Sharp edge removal
Suitable for laser-cut parts
Suitable for plasma-cut parts
Suitable for flame-cut parts
Suitable for stamped and punched parts
Consistent edge finishing
Reduced manual labor
Improved production efficiency
Suitable for continuous production
Suitable Materials
The machine can be used for various metal materials, including:
Stainless Steel
Carbon Steel
Mild Steel
Aluminum
Galvanized Steel
Copper
Other Sheet Metal Materials
The abrasive configuration can be selected according to the material, thickness, burr condition and required finishing result.
Applications
The Automatic 1350mm Sheet Metal Deburring Machine is widely used in:
Sheet Metal Fabrication
Laser Cutting
Plasma Cutting
Flame Cutting
Metal Stamping
Automotive Parts Manufacturing
Electrical Cabinet Manufacturing
Machinery Manufacturing
HVAC Manufacturing
Metal Furniture
Kitchen Equipment
Construction Machinery
General Metal Fabrication
Advantages
Automatic Processing
Continuous automatic processing reduces repetitive manual grinding and deburring operations.
Consistent Edge Quality
The machine provides stable and uniform edge finishing for batch production.
1350mm Working Width
The 1350mm processing width allows the machine to handle a wide range of medium and large sheet metal components.
Improved Safety
Removing sharp edges and burrs makes metal parts safer to handle, transport and assemble.
Better Preparation for Coating
Smooth and rounded edges provide improved preparation for powder coating, painting, plating and other surface treatments.
Typical Production Process
Laser / Plasma / Flame Cutting → Deburring → Edge Rounding → Cleaning → Powder Coating / Painting → Assembly
Equipment Specifications and Structure
| Specification | Details |
|---|---|
| Processing Width | 450mm, 800mm, 1000mm, 1350mm, 1600mm |
| Processing Thickness | 0.5 – 80 mm |
| Minimum Processing Size | 50mm x 50mm |
| Power | 56.75KW |
| Sand Belt Size | Φ1910mm x 1350mm |
| Brush Size | Φ300mm x 400mm |
| Delivery Speed | 0.5 – 6 m/min (adjustable via frequency conversion) |
| Sand Belt Line Speed | 12 m/s |
| Brush Rotation Speed | 500 – 1400 r/min (frequency adjustable) |
| Brush Planetary Speed | 1 – 15 r/min |
| Brush Heads | 1 planetary revolution shaft, 8 planetary rotation heads |
| Control System | Servo-controlled adjustment with 0.01mm precision |
| Conveyor System | Options include strong permanent magnet for carbon steel or vacuum suction for non-magnetic materials |
| Dust Extraction | Wet vacuum cleaner or industrial pulse vacuum cleaner with a dust volume of 5000 m³/h |
| Machine Dimensions | Length 3250mm x Width 2300mm x Height 2150mm |
| Machine Weight | Approximately 3.5 tons |
Key Features
Flexible Processing: Accommodates both flat and 3D parts, with a minimum size of 50 x 50 mm. A powerful vacuum table ensures parts are held securely in place.
Effective Edge Rounding: Achieves a 2mm radius on edges for uniform rounding on all sides and holes, suitable for sharp edges from laser, plasma, and waterjet cutting.
Versatile Functionality: Equipped with a wide abrasive belt and multiple roller brushes for multi-directional deburring, grinding, and polishing, ensuring smooth edges without damaging coatings or films.
Efficient Dust Collection: Equipped with a high-flow wet or pulse vacuum cleaner to capture and filter grinding dust for a safer and cleaner work environment.
Benefits of the Equipment
Enhanced Productivity: Continuous feeding increases throughput and reduces processing times.
Improved Quality: Consistent and high-quality surface finishes surpass manual methods.
Cost-Effective: Reduces per-unit processing costs compared to manual labor.
Environmental and Operator Safety: Effective dust collection for a cleaner workspace, reducing health risks and allowing metal powder recycling.
This equipment is designed for comprehensive edge finishing, burr removal, and surface treatment of metal plates, ideal for a range of metal types, including carbon steel, stainless steel, aluminum, copper, and other non-ferrous materials.
I. Processing Scope
Materials: Works with various metals such as carbon steel, stainless steel, aluminum, copper, and other non-ferrous metals.
Functions:
Edge and Hole Deburring: Effective removal of burrs from all directions on edges and holes, leaving a clean, smooth R-arc effect.
Surface Treatment: Achieves metal plate hairline finishes, oxidation skin removal, and polishing.
Equipped with a combination of a dry sand belt and eight universal sand tablet roller brushes, it is optimized for:
Suitable for addressing burrs from processes like stamping, shearing, laser cutting, plasma cutting, and flame cutting.
II. Working Principle
Processing Stages:
Sand Belt Station: Removes large burrs and slag from the workpiece surface.
Universal Sand Tablet Roller Brush: The eight groups of roller brushes handle edge and inner hole deburring with high-speed centrifugal grinding, scraping, and filing. The process ensures smooth R-angle formation without affecting dimensional accuracy.
Independent Functionality:
Sand Belt Station: Can independently handle hairline finishing, polishing, and slag removal.
Sand Rolling Brush Station: Operates independently for 360-degree deburring, especially effective on coated sheet metal (e.g., laser-cut or CNC-punched parts), with minimal risk of damaging protective films or scratching surfaces. Soft abrasive wires are used to selectively target burrs without harming the coated surfaces.
Conveying and Dust Collection System:
Equipped with a vacuum negative pressure system to securely hold workpieces, even as small as 50mm x 50mm, allowing consistent machining.
Integrated wet vacuum dust collection system with a high-pressure fan, which safely absorbs and filters dust, improving the work environment by recycling metal powder.
III. Advantages of the Equipment
Efficiency: Continuous feeding enables high throughput, meeting the demands of large orders.
Quality Improvement: Ensures consistent surface treatment and finish quality superior to manual processing.
Cost Efficiency: Reduces per-unit processing costs compared to manual finishing.
Safety and Environmental Benefits: Provides a safer, cleaner working environment by controlling dust and enhancing operator safety.