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Hybrid Servo Press Brakes: Key Features & Advantages

In industrial production, Hybrid Servo Press Brakes are widely used in braking applications that require high precision, high efficiency and high reliability. For example, in metal processing, stamping, bending and other processes, the brakes can provide stable and controllable braking force to ensure the accuracy and quality of workpieces during processing. In addition, in automated production lines, robotic systems and other advanced manufacturing fields, Hybrid Servo Press Brakes also play an important role, providing a strong guarantee for the fast and accurate braking of production equipment.

product ship to PA

Durmapress Ships Machines to Paraguay

Durmapress recently shipped three of its top-notch machines, the Hydraulic Bending Machine (WC67K-100T3200), Hydraulic Swing Beam Shears (QC12Y - 4X3200), and Combined Punching and Shearing Machine (Q35Y-20), to Paraguay. This collaboration was the result of multiple communications, factory visits, and a strong willingness to cooperate from both sides, culminating in a solid trust between the parties.

Mexico press brakeThumbnail

Durmapress Ships DP-ES Servo CNC Press Brake 4+1 axis to Mexico

On this sunny day, we are delighted to announce the shipment of a DP-ES Servo CNC Press Brake 4+1axis to Mexico on March 21st. This company has shown great interest in our product, and after multiple communications and on-site visits, we have reached this collaboration.

all elec press brake

Comparing Electric and Hydraulic Press Brakes: Which Is Right for You?

When discussing press brakes, two types often come into play: the electric press brake and the hydraulic press brake. These machines have distinct differences in principles, performance, and applicable scenarios. It's necessary to carefully consider their characteristics and advantages when choosing the appropriate press brake.

Bending and molding of sheet metal

A Comprehensive Guide to the 3200 Press Brake: Features, Benefits, and Applications

The 3200 Press Brake is renowned for its versatility in metalworking tasks, from delicate components to large parts. Its ample table size boosts productivity, accommodating various workpieces. With flexible configurations and a range of tools, including bending, drawing, and punching capabilities, it supports industries like aerospace and construction, advancing metal processing.

CNC PRESS BRAKE DA58T 4+1 (1)

Inspection and judgment of press brake working accuracy

At present, many companies do not pay attention to the daily management of equipment. Improper use and maintenance of equipment. Or the equipment is used excessively or the operator does not use the equipment according to the equipment operating procedures, resulting in serious loss of equipment accuracy. Some small and medium-sized enterprises will purchase some second-hand equipment, but lack the technology and methods to detect equipment accuracy.

Why is the prospect of press brake robots broad and unlimited?

What is a press brake robot The press brake robot is an industrial robot with high precision, high efficiency and high automation. It is mainly used for the press brake processing of metal sheets, and can realize the production of metal products of various complex shapes. The press brake robot integrates a variety of advanced technologies such as robotics, CNC technology, and sensor technology. It has powerful data processing and control capabilities and can accurately complete press brake operations. Basic… Read More »Why is the prospect of press brake robots broad and unlimited?

CNC Press Brake TP10S CNC Touch Screen Controller - User Guide

1 Overview.....................................................................................................................................3 1.1 Programming/running............................................................................................................3 1.2 More programming................................................................................................................3 1.3 Advanced parameters............................................................................................................. 4 1.4 Mode selection.......................................................................................................................5 1.5 System parameter...................................................................................................................6 1.6 Machine diagnosis................................................................................................................. 6 2.Debugging system................................................................................................................7 2.1 Valve settings.......................................................................................................................... 7 2.2 Coefficient.............................................................................................................................. 8 2.2.1 X axis....................................................................................................................................8 2.2.2 Y axis................................................................................................................................... 8 2.3 Angle Debugging.................................................................................................................... 9 2.3.1 Upper mold..........................................................................................................................9 2.3.2 Lower mold..........................................................................................................................9 2.3.3 Other parameter.................................................................................................................10 2.4 Angle calibration.................................................................................................................. 10 2.5 Length of calibration.............................................................................................................11 2.6 Frame strength......................................................................................................................12 2.7 Grid ruler.............................................................................................................................. 12 2.8 Mechanical compensation................................................................................................... 13 2.9 Great arc............................................................................................................................... 13 2.10 Y1-Y2 axis.............................................................................................................................14 3.User operation.....................................................................................................................14 3.1 Single… Read More »CNC Press Brake TP10S CNC Touch Screen Controller - User Guide

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