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Bending processing The working principle of
During the metal bending process, a metal plate is placed between the punch and the mold assembly. The punch presses the metal into the mold cavity, causing it to bend to conform to the shape of the mold. The key parameters in this process include bending angle, radius, and applied bending force, which can be adjusted to manipulate the final shape of the metal without significantly changing its thickness. The material properties such as ductility and thickness also play a key role in determining ideal bending conditions
This metal bending manufacturing technology is widely used due to its ability to efficiently produce sturdy and practical components. The application scope ranges from manufacturing small components such as brackets to large-scale building features. With the advancement of CNC technology, complex and high-precision bending tasks are now easier to achieve than ever before, resulting in greater design flexibility and faster production cycles. In addition, CNC systems are capable of handling large-scale production with minimal variation, ensuring consistent quality in mass production
Bending processing Advantages of
High process flexibility
Bending processing can create various shapes of metal products and can process various metal materials, including steel, aluminum alloys, copper alloys, etc.
Improve Material Performance
Cost Benefit Advantage
Product quality and appearance improvement
Bending processing Material Science
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Metals
Aluminum is lightweight and corrosion-resistant, making it an ideal choice for applications that require high strength to weight ratios. Aluminum sheet bending is a commonly used process for manufacturing aerospace and automotive parts due to its excellent machinability
Alloy
Aluminum 5052, Aluminum 5083, Aluminum 6061 (can be cut with a laser cutting machine, but cannot be cut with a bending machine.)
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