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® 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. |
Advantages of Pure Electric Servo-Driven Dual-Axis Bending Machines over Single-Axis Machines in Industry Applications
In the field of sheet metalworking, pure electric servo-driven dual-axis bending machines have gained popularity due to their distinct advantages over single-axis machines. These advantages translate into increased productivity, precision, and efficiency, making dual-axis machines a preferred choice for various industrial applications.
One of the key advantages of dual-axis bending machines is their ability to simultaneously bend two axes of a sheet of metal. This capability significantly reduces the time required for bending operations, as it allows for simultaneous bending of both axes, instead of sequentially bending each axis on a single-axis machine. This acceleration in the bending process leads to a significant increase in productivity, which is critical in high-volume production environments.
Furthermore, dual-axis bending machines offer improved precision compared to single-axis machines. By independently controlling the bending of both axes, dual-axis machines can achieve more accurate and consistent bending angles and shapes. This precision is crucial in industries that require high-quality components with strict tolerances, such as the aerospace and automotive industries.
Another advantage of dual-axis bending machines is their adaptability to different materials and thicknesses. These machines are designed to handle a wide range of materials, including steel, aluminum, and other alloys, with various thicknesses. This flexibility allows manufacturers to use the same machine for different applications, reducing the need for multiple machines and associated costs.
Moreover, pure electric servo-driven dual-axis bending machines offer consistent performance throughout the production cycle. The servo drives provide smooth and precise control over the bending process, ensuring consistent bending results with minimal material wear or damage. This consistency is crucial in maintaining high production quality and reducing downtime due to equipment failures or maintenance needs.
In conclusion, pure electric servo-driven dual-axis bending machines offer significant advantages over single-axis machines in terms of productivity, precision, adaptability, and consistency. These advantages translate into increased efficiency and cost-effectiveness in various industrial applications, making dual-axis machines an essential tool for sheet metalworking operations. As the demand for high-quality components continues to grow, pure electric servo-driven dual-axis bending machines are expected to play a pivotal role in meeting these requirements and driving innovation in the sheet metalworking industry.
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