• Turret punch

    The servo press utilizes the power of the servo motor, various functions such as shifting and execution, and the characteristics of good controllability of the rotating speed. It directly drives the punching mechanism, adopts adaptive torque control technology and computer control technology, and utilizes digital technology and feedback. Control technology, control the operation of the servo motor, can accurately control the position of the punch head relative to the motor corner, and use the stamping mechanism to achieve a variety of stamping processes. Through the preparation of different procedures, the various stamping motion curves required for the process are realized, different workpiece deformation speeds are obtained, the workpiece quality is ensured, and the service life of the mold is improved. It is an environmentally-friendly and energy-saving press that realizes the mechanical press. The digital control makes the press truly enter the digital age.

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  • Laser Cutter

    Our NOKA team is now introducing its latest generation of pipe and profile processing technology - fiber laser tube cutting systems. Technological innovation has brought us the smart KJG series. With superior reliability and high beam quality, our fiber laser cutting machines continue to be the industry leader.

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  • Turret punch

    The hydroforming process has a wide range of applications in the automotive, aerospace, aerospace and pipeline industries. It is mainly suitable for: circular, rectangular or profiled hollow structural members that vary along the axis of the component, such as automotive exhaust system shaped pipe fittings; non-circular cross section Hollow frames, such as engine brackets, instrument panel brackets, body frames (about 11% to 15% of automotive mass); hollow shafts and complex fittings. Figure 2 shows some of the typical parts that the hydroforming process is used in the automotive industry.

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  • Press Brake

    Bending machines are divided into manual bending machines, hydraulic bending machines and CNC bending machines. The manual bending machine is further divided into a mechanical manual bending machine and an electric manual bending machine. The hydraulic bending machine can be further divided into: a torsion axis synchronization, a machine fluid synchronization, and an electro-hydraulic synchronization. The hydraulic bending machine can be divided into two types according to the movement mode: upper movement type and lower movement type.

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