After-sales Service: | Can Be Negotiated |
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Waterproof Rating: | IPX-0 |
Warranty: | 1-year |
Customization: |
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Shipping Cost:
Estimated freight per unit. |
about shipping cost and estimated delivery time. |
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Payment Method: | |
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Initial Payment Full Payment |
Currency: | US$ |
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Return&refunds: | You can apply for a refund up to 30 days after receipt of the products. |
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Hcgmt® 300KN 1600MM Two Axis Electric Bending Machine Technical Parameters | |||||||
Technical Parameter | Type | HC-8T/600 (One Axis) |
HC-15T/600 (One Axis) |
HC-20T/800 (Two Axis) |
HC-25T/1200 (Two Axis) |
HC-30T/1200 (Two Axis) |
HC-30T/1600 (Two Axis) |
Nominal Pressure | 80KN | 150KN | 200KN | 250KN | 300KN | 300KN | |
Workbench Length | 600MM | 600MM | 800MM | 1200MM | 1200MM | 1600MM | |
Column Distance | 550MM | 620MM | 740MM | 940MM | 940MM | 1340MM | |
Slider Stroke | 80MM | 80MM | 80MM | 90MM | 90MM | 90MM | |
Maximum Die Set Height | 330MM | 330MM | 330MM | 331MM | 331MM | 330MM | |
Maximum Throat Depth | 220MM | 220MM | 220MM | 280MM | 280MM | 280MM | |
Axes | 3(X,Y,R) | 4(Y1,Y2,X,R) | 4(Y1,Y2,X,R) | 4(Y1,Y2,X,R) | 4(Y1,Y2,X,R) | 4(Y1,Y2,X,R) | |
Slider Speed (No Load) | Down | 220MM/S | 220MM/S | 220MM/S | 220MM/S | 220MM/S | 220MM/S |
Work | 100MM/S | 100MM/S | 100MM/S | 100MM/S | 100MM/S | 100MM/S | |
Back | 150MM/S | 150MM/S | 150MM/S | 150MM/S | 150MM/S | 150MM/S | |
Slider Repositioning Accuracy | 0.01MM | 0.01MM | 0.01MM | 0.01MM | 0.01MM | 0.01MM | |
Back Gauge X Axis | Stroke Speed | 120MM | 120MM | 120MM | 200MM | 200MM | 200MM |
Maximum Moving Speed | 300MM/S | 300MM/S | 300MM/S | 300MM/S | 300MM/S | 300MM/S | |
Repositioning Accuracy | 0.02MM | 0.02MM | 0.02MM | 0.02MM | 0.02MM | 0.02MM | |
Machine Dimension | Length | 1000MM | 1150MM | 1150MM | 1300MM | 1300MM | 1400MM |
Width | 1000MM | 1150MM | 1150MM | 1300MM | 1300MM | 1700MM | |
Height | 2200MM | 2200MM | 2200MM | 2250MM | 2250MM | 2250MM | |
Note: All parameters are dynamic and for reference only. For more information, please contact customer service. |
Efficient Operating Electrical Double-Axis Bending Machine for Sheet Metal Processing
The Electrical Double-Axis Bending Machine (EDAB) is a crucial tool in the sheet metal processing industry, providing efficient and accurate bending capabilities. To maximize its performance and achieve efficient operation, it is essential to follow a structured approach.
1. Preparation and Set-Up
Before starting any bending operation, ensure that the EDAB is properly set up. This includes adjusting the bending tables to the correct height, calibrating the axes to ensure accurate positioning, and ensuring all safety features are in place.
2. Material Handling
Handle the sheet metal with care to prevent damage or contamination. Use appropriate clamping devices to securely hold the material in place during the bending process. Ensure that the sheet metal is aligned correctly with respect to the bending axes.
3. Programming and Bending Parameters
Program the EDAB with the correct bending parameters based on the type of material, desired angles, and bending speed. It is essential to understand the limitations and capabilities of the machine to achieve efficient bending operations. Adjusting these parameters can significantly impact the efficiency and quality of the final product.
4. Monitoring and Feedback
During the bending process, monitor the machine's performance closely. Regularly check for any issues or errors that may arise. Implement feedback loops to adjust the bending parameters in real-time based on actual results. This continuous monitoring and adjustment can help optimize the efficiency of the EDAB.
5. Preventative Maintenance
Regularly perform preventative maintenance on the EDAB to ensure its longevity and consistent performance. This includes cleaning, lubricating moving parts, checking for wear or damage, and replacing any worn components as necessary. Implementing a scheduled maintenance plan can help prevent downtime and extend the lifespan of the machine.
6. Operator Training and Skills Development
Provide regular training to operators on how to efficiently operate the EDAB. Train them on proper material handling techniques, understanding the machine's capabilities, and troubleshooting techniques. Encourage operators to document their experiences and share best practices within the team to improve overall efficiency.
In conclusion, achieving efficient operation of the Electrical Double-Axis Bending Machine requires a combination of careful preparation, appropriate material handling techniques, programming expertise, monitoring feedback loops, preventative maintenance, and operator training. By following these guidelines, sheet metal processing operations can achieve optimal efficiency and output quality using this valuable piece of equipment.
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