A press brake using torsion bars to synchronize dual hydraulic cylinders, ensuring parallel ram movement. Ideal for medium-thick metal bending, offering mechanical simplicity, durability, and cost-effectiveness. Limited CNC precision but excels in high-load, low-complexity tasks.
TYPES OF TORSION AXIS PRESS BRAKE MACHINE FOR SALE
A press brake using torsion bars to synchronize dual hydraulic cylinders, ensuring parallel ram movement. Ideal for medium-thick metal bending, offering mechanical simplicity, durability, and cost-effectiveness. Limited CNC precision but excels in high-load, low-complexity tasks.
TYPES OF TORSION AXIS PRESS BRAKE MACHINE FOR SALE
TP10S
E21
HOW DOES A TORSION AXIS PRESS BRAKE WORK?
A torsion axis press brake is a machine used for bending metal sheets, utilizing a synchronized mechanical system to ensure precision. Its key component is a torsion bar (or shaft) connecting two hydraulic cylinders on either side of the machine. When activated, hydraulic pressure drives the cylinders upward, creating torque in the torsion bar. This torque forces the upper beam (ram) to descend uniformly, pressing the metal against a die to form a precise bend. The torsion bar mechanically synchronizes the cylinders, maintaining parallelism between the ram and the bed during operation. This design offers simplicity, durability, and cost-efficiency compared to CNC servo-driven models, making it ideal for repetitive bends in small-to-medium workshops. Adjustments are typically manual, focusing on bend angle and depth.
ADVANTAGES OF TORSION AXIS PRESS BRAKES
Torsion axis press brakes offer distinct advantages in metal fabrication. Their torsion bar synchronization mechanism ensures uniform force distribution across the ram, enabling high-precision bending with consistent angular accuracy (±0.5°), particularly beneficial for complex or long workpieces. This rigid construction minimizes deflection, maintaining parallelism between upper and lower dies even under heavy loads (up to 3000 tons). Operators benefit from simplified programming with angle-memory systems that automatically calculate required tonnage, reducing setup time by 30-40% compared to conventional presses. The direct-drive transmission eliminates hydraulic components, cutting energy consumption by 25% while achieving faster stroke cycles (15-20 RPM). Enhanced durability comes from reduced wear components, lowering maintenance costs by approximately 50% over hydraulic equivalents. These machines particularly excel in high-volume production of automotive chassis and architectural metalwork, where repeatable precision is critical.
A high-precision metal-forming machine powered entirely by electricity, offering energy efficiency, zero emissions, and low noise. Ideal for bending sheet metal in automotive, aerospace, and construction industries. Features servo motor control, CNC systems, and rapid response for consistent accuracy. Compact design, easy operation, and reduced maintenance costs enhance prod... morePURE ELECTRIC PRESS BRAKE https://www.miharting.com/products/pure-electric-press-brake/ #servo#electric#press#brake
A high-precision metal-forming machine powered entirely by electricity, offering energy efficiency, zero emissions, and low noise. Ideal for bending sheet metal in automotive, aerospace, and construction industries. Features servo motor control, CNC systems, and rapid response for consistent accuracy. Compact design, easy operation, and reduced maintenance costs enhance productivity and sustainability.
TYPES OF PURE ELECTRIC PRESS BRAKE FOR SALE
DA53T
DE15
INVOANCE
PURE ELECTRIC PRESS BRAKE WORKING PRINCIPLE
A pure electric press brake utilizes servo motors and ball screws instead of traditional hydraulic systems to generate bending force. The servo motors drive the ball screws, converting rotational motion into precise linear movement. This controls the vertical displacement of the ram (upper beam), which presses the metal sheet against the die (lower tool) to achieve the desired bend angle.
Key components include:
Servo Motors: Provide high-precision torque and speed control.
Ball Screws: Ensure accurate force transmission with minimal friction.
CNC System: Programs parameters like bend angle, depth, and speed.
Advantages include energy efficiency (no hydraulic oil), reduced noise, faster response, and minimal maintenance. The electric design eliminates oil leaks and ensures consistent repeatability (±0.01mm), ideal for complex or high-volume sheet metal fabrication in industries like automotive and aerospace.
PURE ELECTRIC PRESS BRAKE ADVANTAGES
Pure electric press brakes offer significant benefits over hydraulic counterparts. Energy efficiency stands out, consuming up to 60% less power by eliminating hydraulic pumps and oil. Precision and repeatability (±0.01mm) are achieved via servo motors and CNC systems, ideal for complex, high-tolerance bends. Faster cycle times and instant response enhance productivity. Maintenance is minimal due to no hydraulic oil, filters, or leak-prone components, reducing downtime and lifecycle costs. The eco-friendly design avoids oil waste and contamination, aligning with sustainability goals. Low noise operation (below 75 dB) improves workplace comfort. Flexibility in programming enables rapid adaptation to diverse part geometries. These features make electric press brakes ideal for automotive, aerospace, and electronics industries seeking speed, precision, and cost-effective production.
Sorting machinery is critical. The magnetic separator uses the principle of electromagnetic induction to build a strong magnetic field inside the device. When the mixed waste passes through the conveyor belt of the magnetic separator, the ferromagnetic material (such as scrap steel, etc.) is attracted by the magnetic field, deviates from the original conveying track... moreRecycling Equipment for Baled Scrap https://www.yuebangmachinery.com/recycling-equipment-for-baled-scrap/
Sorting machinery is critical. The magnetic separator uses the principle of electromagnetic induction to build a strong magnetic field inside the device. When the mixed waste passes through the conveyor belt of the magnetic separator, the ferromagnetic material (such as scrap steel, etc.) is attracted by the magnetic field, deviates from the original conveying track, and is adsorbed to the collection area of the magnetic separator to achieve the initial separation from other waste. The optical sorter has a high-resolution camera and a complex image recognition algorithm. The camera quickly scans the waste on the conveyor belt to obtain multidimensional information such as color, texture, and material reflectivity, and transmits the data to the central processor. After the algorithm analysis, it can accurately identify different kinds of materials, such as plastic, metal, glass, etc., and then control the high-pressure jet device, jet air to the target waste, blow it away from the main conveyor belt, complete accurate classification, and effectively improve the purity of recovery.
In the crushing equipment, the hammer mill shredder has a fixed jaw plate and a movable jaw plate, both in a V-shaped layout. When large pieces of waste enter the crushing chamber, the motor drives the eccentric shaft to rotate, so that the movable jaw plate does reciprocating movement, the waste is squeezed and split, and its size is reduced. A high-speed rotating rotor is installed inside the hammer mill shredder, and a plurality of hammer heads are fixed on the rotor. After the coarse crushed waste enters the crushing chamber, it is violently impacted and thrown by the high-speed rotating hammer head, and further refined by collision with the crushing chamber wall to meet the requirements of subsequent recycling and utilization of the material particle size.
Last posted by Prweb on December 12 2024 at 02:48 AM
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