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  2. Press brake - Wikipedia

    en.wikipedia.org/wiki/Press_brake

    A press brake bending a sheet of steel. A press brake is a type of brake, a machine used for bending sheet metal and metal plate. [1] It forms predetermined bends by clamping the workpiece between a matching top tool and bottom die. [2] Bending process A high-tonnage hydraulic press brake Liwei CNC 2000T 12M Heavy Duty model

  3. Hydraulic brake - Wikipedia

    en.wikipedia.org/wiki/Hydraulic_brake

    A hydraulic brake is an arrangement of braking mechanism which uses brake fluid, ... the slave piston will press with a force of 40 N.

  4. Brake (sheet metal bending) - Wikipedia

    en.wikipedia.org/wiki/Brake_(sheet_metal_bending)

    Manually driven bending brake Cornice brake Hydraulic press - 400T. A brake is a metalworking machine that allows the bending of sheet metal.A cornice brake only allows for simple bends and creases, while a box-and-pan brake also allows one to form box and pan shapes.

  5. Machine press - Wikipedia

    en.wikipedia.org/wiki/Machine_press

    Manual goldsmith press General-purpose hydraulic shop press Power press with a fixed barrier guard A HACO CNC hydraulic press brake A press brake bending a sheet of steel. A forming press, commonly shortened to press, is a machine tool that changes the shape of a work-piece by the application of pressure. [1]

  6. Hydraulic press - Wikipedia

    en.wikipedia.org/wiki/Hydraulic_press

    The hydraulic press depends on Pascal's principle.The pressure throughout a closed system is constant. One part of the system is a piston acting as a pump, with a modest mechanical force acting on a small cross-sectional area; the other part is a piston with a larger area which generates a correspondingly large mechanical force.

  7. Bending (metalworking) - Wikipedia

    en.wikipedia.org/wiki/Bending_(metalworking)

    Bending process. In press brake forming, the work piece is positioned over a die block and a punch then presses the sheet into the die block to form a shape. [1] Usually bending has to overcome both tensile stresses and compressive stresses.