OEM/ODM Supplier for Metal Forms Factory in Mexico

OEM/ODM Supplier for
 Metal Forms Factory in Mexico

Short Description:

Steel products can also be divided by their shapes. We can produce in the following shapes: Forged bars Length up to 16,000 mm Round from 80 to 1,200 mm Ø Square from 140 mm to 460 mm Flat from 30 x 25 mm to 2.000 x 600 mm(in case of a smaller width correspondingly thicker)             Shafts Barrel/flange diameter up to 1.600 mm Ø Length up to 15.000 mm Weight from 10 kg to 35.000 kg             Discs, pu...


  • Length: 3-5.8mm or Customization
  • Surface: black, peeled, or rough turned
  • Heat treatment: air-cooling, normalized, annealed, Q&T
  • Smelting process: EAF+LF+VD
  • Product Detail

    Product Tags

    abide by the contract", conforms to the market requirement, joins in the market competition by its high quality as well as provides more comprehensive and excellent service for clients to let them become big winner. The pursue of the company, is the clients' satisfaction for OEM/ODM Supplier for Metal Forms Factory in Mexico, We encourage you to make contact as we are looking for partners in our venture. We are sure you will find doing business with us not only fruitful but also profitable. We are ready to serve you with what you require.


    Steel products can also be divided by their shapes. We can produce in the following shapes:

    Forged bars

    Length up to 16,000 mm
    Round from 80 to 1,200 mm Ø
    Square from 140 mm to 460 mm
    Flat from 30 x 25 mm to 2.000 x 600 mm
    (in case of a smaller width correspondingly thicker)

    [Translate to English:] Geschmiedete Stäbe
               

    Shafts

    Barrel/flange diameter up to 1.600 mm Ø
    Length up to 15.000 mm
    Weight from 10 kg to 35.000 kg

    [Translate to English:] Wellen
               

    Discs, punched discs, hubs

    Diameter up to 1.200 mm
    (smaller dias correspondingly thicker)
    Thickness up to 600 mm

     

     

    [Translate to English:] Scheiben, Lochscheiben, Nabenscheiben
               

    Blocks, plates (forged three-dimensionally)

    Length max. 6.000 mm
    Width max. 1.800 mm
    Thickness max. 1.000 mm
    (in case of smaller thickness greater length and width)
    Weight max. 30.000 kg

     

     

    [Translate to English:] Blöcke, Platten
               

    Forged tubes, cylinders and other hollow forgings

    Inner diameter 160 mm to 600 mm
    Length up to 1,200 mm
    Weight up to 10.000 kg

     

     

    [Translate to English:] Geschmiedete Hohlstäbe, Zylinder
               

    Forged rings

    Outer diameter up to 2.400 mm
    Height up to 2.200 mm
    Weight up to 25.000 kg

    [Translate to English:] Geschmiedete Ringe
               

    Seamless rolled rings

    Outer diameter up to 3.500 mm
    Height up to 800 mm
    Weight 10 kg to 8.000 kg

    [Translate to English:] Nahtlos gewalzte Ringe
              

    We can also produce according to clients' designs. If you have your own design, just feel free to contact us.

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    Methods of Demagnetisation

    The magnetic property of the magnet can be totally or partially destroyed by rough handling, by heating, by induction or by passing electricity. Click on each method for more information.
    Hammering, dropping and rough handling of the magnet can be demagnetise the magnet.
    A magnet loses its magnetism if it is heated above a certain temperature called it’s ‘Curie point’. The curie point of iron is 770 degree celsius and that of the steel is 880 degree celsius, the curie point if nickel is 358 degree celsius and that for cobalt is 1121 degree celsius.
    If two magnets are placed side by side with similar poles together each induces opposite polarity in the other as a result the magnets lose magnetism to avoid the self demagnetisation the magnets are placed in pairs side by side with their unlike poles together as shown here
    By passing electricity place the given bar but has to be demagnetise inside a long coil of insulated copper wire in the east west direction. Connect the copper wire to a source of alternating current as shown here. Switch on the circuit. Now slowly reduce the current to 0.
    The magnet loses its magnetism as alternating current changes direction continuously. This change in direction of current disturbs the alignment of molecular magnets resulted in the demagnetisation.

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