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    C- BASE line presses - Technology
    Model CBL 250 CBL 400 Range of application Parts for the automotive, commercial vehicle and components industry, construction-related industry, domestic appliances industry, electrical and electronics components industry Press force 250 kN 400 kN Bed dimension 465 x 360 mm 650 x 480 mm Material feeding Manual operation Manual or automatic operation Drive Transverse shaft, 3-phase AC motor with ... last changed on: 29.10.2015 Search similar pages
    Stamping presses with servo drive - Technology
    Model MSP 200 Range of application Parts for the automotive, commercial vehicle and components industry, construction-related industry, domestic appliances industry, electrical and electronics components industry Press force 2,000 kN Bed dimension 1.100 x 1.800 mm Material feeding Automatic operation Drive Knuckle-joint drive with internal torque motor, oil- and play-free drive train Control ... last changed on: 18.08.2023 Search similar pages
    Hydraulic presses for forging ring blanks (MH series) - Technology
    Range of application forging ring blanks Press force 8.000 - 140.000 kN Drive hydraulic Material feeding robots Part transfer robots ... last changed on: 19.04.2010 Search similar pages
    Software solutions
    transfer sequences Simulation software DigiSim®: Easy and quick visual verification of how parts run through the press to detect failures and to optimize stroke rates. This tool is available either to buy or as an engineering service ... last changed on: 17.10.2019 Search similar pages
    Stamping & Cutting Technology
    Stamping and cutting systems from Schuler are used successfully in a very wide range of industries. They permit sheet metal parts to be produced flexibly and economically with the best quality, and overcome challenges such as large part quantities, complicated part geometries and processing high-strength materials. The breadth of our product range for economical series production of high-quality ... last changed on: 24.04.2023 Search similar pages
    Hydraulic press lines - flexible stamping
    Hydraulic press lines are mainly used to manufacture a wide variety of parts in small to medium lot sizes. Depending on the required forming operations, the line typically consists of four to six single presses. The production process is fully automated from the blank to the finished component. Depending on requirements, automation is provided by conventional robots or Crossbar Robots developed ... last changed on: 15.06.2015 Search similar pages
    High-speed blanking presses - Technology
    Range of application parts for the automotive, commercial vehicle and components industry, construction-related industry, domestic appliances industry, electrical and electronics components industry Bed dimensions (l x w) 1,000 x 700 mm up to 1,300 x 800 mm Press force 630 kN, 800 kN, 1,000 kN, 1,250 kN Drive  transverse shaft with intermediated gear, ABB frequency converter Clutch-brake ... last changed on: 25.02.2022 Search similar pages
    Servo presses in tie rod design - Technology
    Range of application manufacturing of stamped and formed parts for a wide range of industries Bed dimensions (l x w) 4,000 x 1,600 mm to 7,000 x 2,500 mm, depending on press model Press force 6,300 kN, 8,000 kN, 10,000 kN, 11,000 kN, 12,500 kN, 16,000 kN, 20,000 kN, 25,000 kN, 32,000 kN Drive eccentric drive with highly dynamic torque motors Material feeding with coil feeding line or blankloader ... last changed on: 15.04.2014 Search similar pages
    Stamping presses - Technology
    Applications parts for the automotive, commercial vehicle and components industry, construction-related industry, domestic appliances industry, electrical and electronics components industry Bed dimensions (l x w) depending on model 1,400 x 1,000 up to 3,000 x 1,400 mm Capacities  1,250, 2,000, 3,000, 4,000 and 5,000 kN Drive  transverse shaft wih intermediated gear, ABB frequency ... last changed on: 15.04.2014 Search similar pages
    Full Control
    The raw data collected here is essentially the same as the data used for condition monitoring, but with one difference: Collection takes place during the actual production process instead of in a test run. Are the quality and quantity of the acceptable parts exactly what was expected? Are the press force and vibration progression in order? Which parameters may need to be adjusted so that they are ... last changed on: 17.09.2018 Search similar pages